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IMT-DS FDD(WCDMA)系 3系 系系系系系系系系(RRC) IMT-DS FDD(WCDMA) System Radio Interface Layer3 Technical Specificaiton: RRC Protocol 20XX-XX-XX 系系 20XX- XX-XX 系系 系系系系系系系系系系系系系系系系系 系 系

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IMT-DS FDD(WCDMA)系统无线接口层 3 技术规范:无线资源控制协议(RRC)

IMT-DS FDD(WCDMA) System Radio Interface Layer3 Technical Specificaiton: RRC Protocol

20XX-XX-XX 发布 20XX-XX-XX 实施

中华人民共和国信息产业部科学技术司 印 发

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目 次目 次.......................................................................................................................................................................2

前 言....................................................................................................................................................................13

1 范围....................................................................................................................................................................14

2 引用标准............................................................................................................................................................14

3 定义和缩略语....................................................................................................................................................15

3.1 定义.............................................................................................................................................................153.2 缩略语.........................................................................................................................................................15

4 概述....................................................................................................................................................................17

5 RRC提供给高层的服务..................................................................................................................................20

6 期望的低层服务................................................................................................................................................20

6.1 期望来自层二的服务.........................................................................................................................206.2 期望来自层一的服务.........................................................................................................................20

7 RRC的功能......................................................................................................................................................20

8 RRC过程..........................................................................................................................................................21

8.1.RRC连接管理过程..........................................................................................................................218.1.1系统信息的广播..........................................................................................................................................218.1.2寻呼..............................................................................................................................................................348.1.3 RRC连接建立.............................................................................................................................................358.1.4 RRC连接释放.............................................................................................................................................398.1.5 RRC 连接重建立.........................................................................................................................................418.1.6 UE性能信息的传输....................................................................................................................................458.1.7 UE性能询问................................................................................................................................................468.1.8 初始直接传输..............................................................................................................................................478.1.9 下行链路直接传输......................................................................................................................................488.1.10 上行链路直接传输....................................................................................................................................498.1.11 UE专用寻呼..............................................................................................................................................508.1.12 安全模式控制............................................................................................................................................518.1.13 信令流释放过程........................................................................................................................................538.1.14信令连接释放请求过程............................................................................................................................548.1.15计数器检查................................................................................................................................................55

8.2. 无线承载控制过程.........................................................................................................................568.2.1 无线承载的建立..........................................................................................................................................568.2.2 重配置过程..................................................................................................................................................608.2.3 无线承载的释放..........................................................................................................................................688.2.4 传输信道重配置..........................................................................................................................................718.2.5 传输格式组合控制......................................................................................................................................718.2.6 物理信道的重配置......................................................................................................................................738.2.7 物理共享信道的分配 [仅用于 TDD模式]................................................................................................738.2.8 PUSCH容量请求 [仅用于 TDD模式]......................................................................................................748.2.9 下行链路外环控制......................................................................................................................................768.2.10 上行链路物理信道控制[仅用于 TDD]....................................................................................................778.2.11 物理信道重配置失败................................................................................................................................77

8.3、RRC连接移动性过程......................................................................................................................788.3.1 小区更新......................................................................................................................................................788.3.2 URA更新....................................................................................................................................................838.3.3 UTRAN移动性信息...................................................................................................................................868.3.4激活集更新..................................................................................................................................................878.3.5 硬切换..........................................................................................................................................................908.3.6 系统间切换到UTRAN...............................................................................................................................918.3.7 系统间切换来自UTRAN...........................................................................................................................92

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8.3.8 系统间小区重选到UTRAN.......................................................................................................................948.3.9 系统间小区重选来自UTRAN...................................................................................................................95

8.4、测量过程..........................................................................................................................................958.4.1 测量控制......................................................................................................................................................968.4.2 测量报告....................................................................................................................................................101

8.5. 常规过程.......................................................................................................................................1028.5.1 最初UE标识的选择.................................................................................................................................1028.5.2 从连接模式进入空闲模式的行为............................................................................................................1038.5.3 DPCCH建立时的开环功率控制..............................................................................................................1038.5.4 物理信道建立准则....................................................................................................................................1038.5.5 离开服务区的检测....................................................................................................................................1038.5.6 无线链路失败准则....................................................................................................................................1038.5.7 基于接收信息元素的一般状态转移规则................................................................................................1048.5.8 开环功率控制............................................................................................................................................1048.5.9 检测进入服务区(in service area).........................................................................................................1058.5.10 超帧号......................................................................................................................................................1058.5.11 START......................................................................................................................................................1058.5.12 完整性保护..............................................................................................................................................1058.5.13 测量时段的计算......................................................................................................................................1078.5.14 接入业务等级的建立..............................................................................................................................1078.5.15 接入级别到接入业务级别的映射..........................................................................................................1088.5.16 PLMN类型选择......................................................................................................................................1088.5.17 CFN的计算.............................................................................................................................................108

8.6 接收信息元素的一般行为...............................................................................................................1098.6.1 CN信息元素.............................................................................................................................................1098.6.2 UTRAN移动性信息元素.........................................................................................................................1108.6.3 UE信息元素..............................................................................................................................................1108.6.4 无线承载信息元素....................................................................................................................................1138.6.5 传输信道信息元素....................................................................................................................................1138.6.6 物理信道信息元素....................................................................................................................................1148.6.7 测量信息元素............................................................................................................................................1198.6.8 其他信息元素............................................................................................................................................121

9 协议状态..........................................................................................................................................................121

9.1.RRC状态和包括GSM的状态转移..............................................................................................1219.2.从空闲模式到UTRAN连接模式的转移......................................................................................122

9.2.1 对于紧急呼叫的转移................................................................................................................................1229.3.UTRAN连接模式状态及转移.......................................................................................................123

9.3.1 CELL_DCH状态......................................................................................................................................1239.3.2 CELL_FACH状态....................................................................................................................................1249.3.3 CELL_PCH状态.......................................................................................................................................1269.3.4 URA_PCH状态.........................................................................................................................................1279.3.5 在URA_PCH,CELL_PCH和 CELL_FACH状态下小区重选的状态和转移....................................129

9.4.支持 PSTN/ISDN业务的系统间切换...........................................................................................1299.5.支持 IP域业务的系统间切换.......................................................................................................1309.6.同时支持 IP和 PSTN/ISDN域业务的系统间切换......................................................................130

9.6.1从UTRAN到GSM/BSS的系统间切换..................................................................................................1309.6.2 从GSM/BSS到UTRAN的系统间切换..................................................................................................130

10 消息和信息元素功能性定义和内容....................................................................................................131

10.1 概述............................................................................................................................................13110.1.1 协议扩展...........................................................................................................................132

10.1.1.1 通过附加的值或选择对信息元素的扩展............................................................................13210.1.1.2 通过附加的信息元素对消息的扩展....................................................................................132

10.2 无线资源控制消息....................................................................................................................13410.2.1 ACTIVE SET UPDATE......................................................................................................13510.2.2 ACTIVE SET UPDATE COMPLETE................................................................................13610.2.3 ACTIVE SET UPDATE FAILURE.....................................................................................13610.2.4 CELL UPDATE.................................................................................................................13610.2.5 CELL UPDATE CONFIRM...............................................................................................13810.2.6 COUNTER CHECK...........................................................................................................13910.2.7 COUNTER CHECK RESPONSE......................................................................................13910.2.8 DOWNLINK DIRECT TRANSFER...................................................................................14010.2.9 DOWNLINK OUTER LOOP CONTROL..........................................................................140

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10.2.10 HANDOVER TO UTRAN COMMAND.............................................................................14210.2.11 HANDOVER TO UTRAN COMPLETE.............................................................................14410.2.12 INITIAL DIRECT TRANSFER...........................................................................................14410.2.13 INTER-SYSTEM HANDOVER COMMAND.....................................................................14510.2.14 INTER-SYSTEM HANDOVER FAILURE..........................................................................14510.2.15 MEASUREMENT CONTROL...........................................................................................14710.2.16 MEASUREMENT CONTROL FAILURE...........................................................................14810.2.17 MEASUREMENT REPORT...............................................................................................14810.2.18 PAGING TYPE 1................................................................................................................14810.2.19 PAGING TYPE 2................................................................................................................14910.2.20 PHYSICAL CHANNEL RECONFIGURATION................................................................15010.2.21 PHYSICAL CHANNEL RECONFIGURATION COMPLETE...........................................15110.2.22 PHYSICAL CHANNEL RECONFIGURATION FAILURE................................................15210.2.23 PHYSICAL SHARED CHANNEL ALLOCATION.............................................................15210.2.24 PUSCH CAPACITY REQUEST.........................................................................................15410.2.25 RADIO BEARER RECONFIGURATION..........................................................................15510.2.26 RADIO BEARER RECONFIGURATION COMPLETE....................................................15810.2.27 RADIO BEARER RECONFIGURATION FAILURE.........................................................15910.2.28 RADIO BEARER RELEASE..............................................................................................16010.2.29 RADIO BEARER RELEASE COMPLETE........................................................................16210.2.30 RADIO BEARER RELEASE FAILURE.............................................................................16310.2.31 RADIO BEARER SETUP..................................................................................................16410.2.32 RADIO BEARER SETUP COMPLETE.............................................................................16710.2.33 RADIO BEARER SETUP FAILURE..................................................................................16710.2.34 RRC CONNECTION RE-ESTABLISHMENT....................................................................16910.2.35 RRC CONNECTION RE-ESTABLISHMENT COMPLETE..............................................17110.2.36 RRC CONNECTION RE-ESTABLISHMENT REQUEST..................................................17210.2.37 RRC CONNECTION REJECT..........................................................................................17310.2.38 RRC CONNECTION RELEASE........................................................................................17410.2.39 RRC CONNECTION RELEASE COMPLETE..................................................................17510.2.40 RRC CONNECTION REQUEST.......................................................................................17510.2.41 RRC CONNECTION SETUP............................................................................................17610.2.42 RRC CONNECTION SETUP COMPLETE.......................................................................17710.2.43 RRC STATUS.....................................................................................................................17810.2.44 SECURITY MODE COMMAND.......................................................................................17910.2.45 SECURITY MODE COMPLETE.......................................................................................17910.2.46 SECURITY MODE FAILURE............................................................................................18010.2.47 SIGNALLING CONNECTION RELEASE.........................................................................18010.2.48 SIGNALLING CONNECTION RELEASE REQUEST.......................................................18010.2.49 SYSTEM INFORMATION.................................................................................................181

10.2.49.1 First Segment........................................................................................................................18210.2.49.2 First Segment (short)............................................................................................................18210.2.49.3 Subsequent Segment.............................................................................................................18310.2.49.4 Last Segment.........................................................................................................................18310.2.49.5 Last Segment (short).............................................................................................................18310.2.49.6 Complete SIB........................................................................................................................18310.2.49.7 Complete SIB (short)............................................................................................................18410.2.49.8 System Information Blocks..................................................................................................184

10.2.50 SYSTEM INFORMATION CHANGE INDICATION.........................................................19910.2.51 TRANSPORT CHANNEL RECONFIGURATION.............................................................20010.2.52 TRANSPORT CHANNEL RECONFIGURATION COMPLETE.......................................20210.2.53 TRANSPORT CHANNEL RECONFIGURATION FAILURE............................................20210.2.54 TRANSPORT FORMAT COMBINATION CONTROL......................................................20310.2.55 TRANSPORT FORMAT COMBINATION CONTROL FAILURE.....................................20410.2.56 UE CAPABILITY ENQUIRY..............................................................................................20410.2.57 UE CAPABILITY INFORMATION....................................................................................20410.2.58 UE CAPABILITY INFORMATION CONFIRM.................................................................20510.2.59 UPLINK DIRECT TRANSFER..........................................................................................20510.2.60 UPLINK PHYSICAL CHANNEL CONTROL....................................................................20610.2.61 URA UPDATE...................................................................................................................20610.2.62 URA UPDATE CONFIRM................................................................................................20710.2.63 UTRAN MOBILITY INFORMATION................................................................................208

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10.2.64 UTRAN MOBILITY INFORMATION CONFIRM.............................................................20810.2.65 UTRAN MOBILITY INFORMATION FAILURE...............................................................209

10.3 信息元素的功能性定义............................................................................................................21010.3.1 CN信息元素.....................................................................................................................210

10.3.1.1 CN domain identity.................................................................................................................21010.3.1.2 CN Domain System Information............................................................................................21010.3.1.3 CN Information info................................................................................................................21110.3.1.4 Flow Identifier.........................................................................................................................21110.3.1.5 IMEI........................................................................................................................................21110.3.1.6 IMSI (GSM-MAP)..................................................................................................................21110.3.1.7 Location Area Identification....................................................................................................21110.3.1.8 NAS message..........................................................................................................................21210.3.1.9 NAS system information (GSM-MAP)..................................................................................21210.3.1.10 Paging record Type identifier................................................................................................21210.3.1.11 PLMN identity......................................................................................................................21210.3.1.12 PLMN Type..........................................................................................................................21210.3.1.13 P-TMSI (GSM-MAP)...........................................................................................................21310.3.1.14 RAB identity.........................................................................................................................21310.3.1.15 Routing Area Code................................................................................................................21310.3.1.16 Routing Area Identification..................................................................................................21310.3.1.17 Service Descriptor.................................................................................................................21310.3.1.18 TMSI (GSM-MAP)..............................................................................................................214

10.3.2 UTRAN移动性信息元素..................................................................................................21410.3.2.1 Cell Access Restriction...........................................................................................................21410.3.2.2 Cell identity.............................................................................................................................21510.3.2.3 Cell selection and re-selection info for SIB3/4.......................................................................21510.3.2.4 Cell selection and re-selection info for SIB11/12...................................................................21710.3.2.5 Mapping Info...........................................................................................................................21810.3.2.6 URA identity...........................................................................................................................218

10.3.3 UE信息元素.....................................................................................................................21910.3.3.1 Activation time........................................................................................................................21910.3.3.2 Capability Update Requirement..............................................................................................21910.3.3.3 Cell update cause.....................................................................................................................21910.3.3.4 Ciphering Algorithm...............................................................................................................21910.3.3.5 Ciphering mode info...............................................................................................................22010.3.3.6 CN domain specific DRX cycle length coefficient.................................................................22110.3.3.7 CPCH Parameters....................................................................................................................22110.3.3.8 C-RNTI...................................................................................................................................22210.3.3.9 DRAC system information......................................................................................................22210.3.3.10 DRX Indicator.......................................................................................................................22210.3.3.11 Establishment cause..............................................................................................................22310.3.3.12 Failure cause and error information......................................................................................22310.3.3.13 Initial UE identity.................................................................................................................22410.3.3.14 Integrity check info...............................................................................................................22410.3.3.15 Integrity protection activation info.......................................................................................22510.3.3.16 Integrity protection Algorithm..............................................................................................22510.3.3.17 Integrity protection mode info..............................................................................................22510.3.3.18 LCS capability......................................................................................................................22610.3.3.19 Maximum bit rate..................................................................................................................22610.3.3.20 Measurement capability........................................................................................................22610.3.3.21 Number of RRC Message Transmissions.............................................................................22810.3.3.22 Paging cause.........................................................................................................................22810.3.3.23 Paging record........................................................................................................................22910.3.3.24 PDCP capability....................................................................................................................22910.3.3.25 Physical channel capability...................................................................................................23010.3.3.26 Protocol error cause..............................................................................................................23110.3.3.27 Protocol error indicator.........................................................................................................23110.3.3.28 Redirection info....................................................................................................................23210.3.3.29 Re-establishment timer.........................................................................................................23210.3.3.30 Rejection cause.....................................................................................................................23210.3.3.31 Release cause........................................................................................................................23210.3.3.32 RF capability.........................................................................................................................23310.3.3.33 RLC capability......................................................................................................................23310.3.3.34 RLC reset indicator...............................................................................................................23310.3.3.35 Security capability................................................................................................................23410.3.3.36 START..................................................................................................................................23410.3.3.37 Transmission probability......................................................................................................23410.3.3.38 Transport channel capability.................................................................................................235

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10.3.3.39 UE multi-mode/multi-RAT capability..................................................................................23610.3.3.40 UE radio access capability....................................................................................................23710.3.3.41 UE Timers and Constants in CELL_DCH............................................................................23810.3.3.42 UE Timers and Constants in connected mode......................................................................23910.3.3.43 UE Timers and Constants in idle mode................................................................................24110.3.3.44 URA update cause.................................................................................................................24110.3.3.45 U-RNTI.................................................................................................................................24110.3.3.46 U-RNTI Short.......................................................................................................................24110.3.3.47 UTRAN DRX cycle length coefficient.................................................................................24110.3.3.48 Wait time...............................................................................................................................242

10.3.4 RB信息元素.....................................................................................................................24210.3.4.1 Downlink RLC STATUS info.................................................................................................24210.3.4.2 PDCP info...............................................................................................................................24310.3.4.3 PDCP SN info.........................................................................................................................24410.3.4.4 Polling info..............................................................................................................................24410.3.4.5 Predefined configuration identity............................................................................................24410.3.4.6 Predefined configuration value tag.........................................................................................24510.3.4.7 Predefined RB configuration...................................................................................................24510.3.4.8 RAB info.................................................................................................................................24510.3.4.9 RAB info short........................................................................................................................24510.3.4.10 RAB information for setup...................................................................................................24610.3.4.11 RAB information to reconfigure...........................................................................................24610.3.4.12 RAB NAS Synchronization info...........................................................................................24610.3.4.13 RB activation time info.........................................................................................................24610.3.4.14 RB COUNT-C MSB information.........................................................................................24610.3.4.15 RB COUNT-C information...................................................................................................24710.3.4.16 RB identity............................................................................................................................24710.3.4.17 RB information to be affected..............................................................................................24710.3.4.18 RB information to reconfigure..............................................................................................24710.3.4.19 RB information to release.....................................................................................................24810.3.4.20 RB information to setup........................................................................................................24810.3.4.21 RB mapping info...................................................................................................................24910.3.4.22 RB with PDCP information..................................................................................................25010.3.4.23 RLC info...............................................................................................................................25110.3.4.24 Signalling RB information to setup......................................................................................25210.3.4.25 Transmission RLC Discard...................................................................................................253

10.3.5 传输信道信息元素...........................................................................................................25410.3.5.1 Added or Reconfigured DL TrCH information......................................................................25410.3.5.2 Added or Reconfigured UL TrCH information......................................................................25510.3.5.3 CPCH set ID..........................................................................................................................25510.3.5.4 Deleted DL TrCH information...............................................................................................25510.3.5.5 Deleted UL TrCH information...............................................................................................25510.3.5.6 DL Transport channel information common for all transport channels..................................25610.3.5.7 DRAC Static Information.......................................................................................................25610.3.5.8 Power Offset Information........................................................................................................25710.3.5.9 Predefined TrCH configuration...............................................................................................25810.3.5.10 Quality Target.......................................................................................................................25810.3.5.11 Semi-static Transport Format Information...........................................................................25910.3.5.12 TFCI Field 2 Information.....................................................................................................26010.3.5.13 TFCS Explicit Configuration................................................................................................26010.3.5.14 TFCS Information for DSCH (TFCI range method)............................................................26110.3.5.15 TFCS Reconfiguration/Addition Information......................................................................26210.3.5.16 TFCS Removal Information.................................................................................................26310.3.5.17 Transparent mode signalling info.........................................................................................26310.3.5.18 Transport channel identity....................................................................................................26310.3.5.19 Transport Format Combination (TFC)..................................................................................26310.3.5.20 Transport Format Combination Set......................................................................................26410.3.5.21 Transport Format Combination Set Identity.........................................................................26410.3.5.22 Transport Format Combination Subset.................................................................................26510.3.5.23 Transport Format Set............................................................................................................26610.3.5.24 UL Transport channel information common for all transport channels................................267

10.3.6 物理信道信息元素...........................................................................................................26810.3.6.1 AC-to-ASC mapping...............................................................................................................26810.3.6.2 AICH Info...............................................................................................................................26810.3.6.3 AICH Power offset..................................................................................................................26810.3.6.4 Allocation period info.............................................................................................................26810.3.6.5 ASC setting.............................................................................................................................26910.3.6.6 Block STTD indicator.............................................................................................................269

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10.3.6.7 CCTrCH power control info...................................................................................................26910.3.6.8 Cell parameters Id...................................................................................................................26910.3.6.9 Common timeslot info.............................................................................................................27010.3.6.10 Constant value.......................................................................................................................27010.3.6.11 CPCH persistence levels.......................................................................................................27010.3.6.12 CPCH set info.......................................................................................................................27110.3.6.13 CPCH Status Indication mode..............................................................................................27310.3.6.14 CSICH Power offset.............................................................................................................27510.3.6.15 Default DPCH Offset Value..................................................................................................27510.3.6.16 Downlink channelization codes............................................................................................27610.3.6.17 Downlink DPCH info common for all RL............................................................................27710.3.6.18 Downlink DPCH info common for all RL Post....................................................................27810.3.6.19 Downlink DPCH info common for all RL Pre.....................................................................27810.3.6.20 Downlink DPCH info for each RL.......................................................................................27910.3.6.21 Downlink DPCH info for each RL Post...............................................................................28010.3.6.22 Downlink DPCH power control information........................................................................28010.3.6.23 Downlink information common for all radio links...............................................................28010.3.6.24 Downlink information common for all radio links Post.......................................................28110.3.6.25 Downlink information common for all radio links Pre.........................................................28110.3.6.26 Downlink information for each radio link............................................................................28210.3.6.27 Downlink information for each radio link Post....................................................................28210.3.6.28 Downlink Outer Loop Control..............................................................................................28310.3.6.29 Downlink PDSCH information.............................................................................................28310.3.6.30 Downlink rate matching restriction information..................................................................28310.3.6.31 Downlink Timeslots and Codes............................................................................................28410.3.6.32 DPCH compressed mode info...............................................................................................28410.3.6.33 DPCH Compressed Mode Status Info..................................................................................28710.3.6.34 Dynamic persistence level....................................................................................................28710.3.6.35 Frequency info......................................................................................................................28810.3.6.36 Individual timeslot info.........................................................................................................28810.3.6.37 Individual Timeslot interference...........................................................................................28810.3.6.38 Maximum allowed UL TX power.........................................................................................28810.3.6.39 Midamble configuration.......................................................................................................28910.3.6.40 Midamble shift and burst type..............................................................................................29010.3.6.41 PDSCH Capacity Allocation info.........................................................................................29010.3.6.42 PDSCH code mapping (TDD)..............................................................................................29110.3.6.43 PDSCH info (TDD)..............................................................................................................29210.3.6.44 PDSCH Power Control info (TDD)......................................................................................29210.3.6.45 PDSCH system information..................................................................................................29310.3.6.46 PDSCH with SHO DCH Info...............................................................................................29310.3.6.47 Persistence scaling factors....................................................................................................29410.3.6.48 PICH Info..............................................................................................................................29410.3.6.49 PICH Power offset................................................................................................................29510.3.6.50 PRACH Channelization Code.............................................................................................29510.3.6.51 PRACH info (for RACH).....................................................................................................29610.3.6.52 PRACH partitioning.............................................................................................................29710.3.6.53 PRACH power offset............................................................................................................29810.3.6.54 PRACH system information list...........................................................................................29910.3.6.55 Predefined PhyCH configuration..........................................................................................30010.3.6.56 Primary CCPCH info............................................................................................................30010.3.6.57 Primary CCPCH info post....................................................................................................30010.3.6.58 Primary CCPCH TX Power..................................................................................................30110.3.6.59 Primary CPICH info.............................................................................................................30110.3.6.60 Primary CPICH Tx power....................................................................................................30110.3.6.61 Primary CPICH usage for channel estimation......................................................................30110.3.6.62 PUSCH info..........................................................................................................................30110.3.6.63 PUSCH Capacity Allocation info.........................................................................................30210.3.6.64 PUSCH power control info...................................................................................................30210.3.6.65 PUSCH system information..................................................................................................30210.3.6.66 RACH transmission parameters............................................................................................30310.3.6.67 Radio link addition information............................................................................................30310.3.6.68 Radio link removal information............................................................................................30310.3.6.69 SCCPCH Information for FACH..........................................................................................30410.3.6.70 Secondary CCPCH info........................................................................................................30510.3.6.71 Secondary CCPCH system information...............................................................................30610.3.6.72 Secondary CPICH info.........................................................................................................30610.3.6.73 Secondary scrambling code..................................................................................................30610.3.6.74 SFN Time info......................................................................................................................30710.3.6.75 SSDT cell identity.................................................................................................................307

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10.3.6.76 SSDT information.................................................................................................................30710.3.6.77 STTD indicator.....................................................................................................................30710.3.6.78 TFC Control duration............................................................................................................30710.3.6.79 TFCI Combining Indicator...................................................................................................30810.3.6.80 TGPSI...................................................................................................................................30810.3.6.81 Time info...............................................................................................................................30810.3.6.82 Timeslot number...................................................................................................................30810.3.6.83 TPC combination index........................................................................................................30810.3.6.84 TX Diversity Mode...............................................................................................................30910.3.6.85 UL interference.....................................................................................................................30910.3.6.86 Uplink DPCH info................................................................................................................31010.3.6.87 Uplink DPCH info Post........................................................................................................31110.3.6.88 Uplink DPCH info Pre..........................................................................................................31110.3.6.89 Uplink DPCH power control info.........................................................................................31210.3.6.90 Uplink DPCH power control info Post.................................................................................31210.3.6.91 Uplink DPCH power control info Pre...................................................................................31310.3.6.92 Uplink Timeslots and Codes.................................................................................................31410.3.6.93 Uplink Timing Advance........................................................................................................31510.3.6.94 Uplink Timing Advance Control...........................................................................................315

10.3.7 测量信息元素...................................................................................................................31510.3.7.1 Additional measurements list..................................................................................................31510.3.7.2 Cell info...................................................................................................................................31610.3.7.3 Cell measured results..............................................................................................................31710.3.7.4 Cell measurement event results...............................................................................................31710.3.7.5 Cell reporting quantities..........................................................................................................31810.3.7.6 CFN-SFN observed time difference........................................................................................31810.3.7.7 Event results............................................................................................................................31910.3.7.8 FACH measurement occasion info..........................................................................................31910.3.7.9 Filter coefficient......................................................................................................................32010.3.7.10 HCS Cell re-selection information.......................................................................................32010.3.7.11 HCS neighbouring cell information......................................................................................32010.3.7.12 HCS Serving cell information...............................................................................................32110.3.7.13 Inter-frequency cell info list..................................................................................................32110.3.7.14 Inter-frequency event identity...............................................................................................32110.3.7.15 Inter-frequency measured results list....................................................................................32210.3.7.16 Inter-frequency measurement...............................................................................................32310.3.7.17 Inter-frequency measurement event results..........................................................................32410.3.7.18 Inter-frequency measurement quantity.................................................................................32410.3.7.19 Inter-frequency measurement reporting criteria...................................................................32510.3.7.20 Inter-frequency measurement system information...............................................................32610.3.7.21 Inter-frequency reporting quantity........................................................................................32610.3.7.22 Inter-frequency SET UPDATE.............................................................................................32610.3.7.23 Inter-system cell info list......................................................................................................32710.3.7.24 Inter-system event identity....................................................................................................32710.3.7.25 Inter-system info...................................................................................................................32810.3.7.26 Inter-system measured results list.........................................................................................32810.3.7.27 Inter-system measurement....................................................................................................32910.3.7.28 Inter-system measurement event results...............................................................................32910.3.7.29 Inter-system measurement quantity......................................................................................33010.3.7.30 Inter-system measurement reporting criteria........................................................................33110.3.7.31 Inter-system measurement system information....................................................................33110.3.7.32 Inter-system reporting quantity.............................................................................................33210.3.7.33 Intra-frequency cell info list.................................................................................................33210.3.7.34 Intra-frequency event identity...............................................................................................33210.3.7.35 Intra-frequency measured results list....................................................................................33210.3.7.36 Intra-frequency measurement...............................................................................................33310.3.7.37 Intra-frequency measurement event results..........................................................................33310.3.7.38 Intra-frequency measurement quantity.................................................................................33410.3.7.39 Intra-frequency measurement reporting criteria...................................................................33510.3.7.40 Intra-frequency measurement system information...............................................................33710.3.7.41 Intra-frequency reporting quantity........................................................................................33710.3.7.42 Intra-frequency reporting quantity for RACH reporting......................................................33810.3.7.43 LCS Cipher GPS Data Indicator...........................................................................................33810.3.7.44 LCS Error..............................................................................................................................33910.3.7.45 LCS GPS acquisition assistance...........................................................................................34010.3.7.46 LCS GPS almanac................................................................................................................34110.3.7.47 LCS GPS assistance data......................................................................................................34210.3.7.48 LCS GPS DGPS corrections.................................................................................................343

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10.3.7.49 LCS GPS ionospheric model................................................................................................34410.3.7.50 LCS GPS measurement........................................................................................................34510.3.7.51 LCS GPS navigation model..................................................................................................34710.3.7.52 LCS GPS real-time integrity.................................................................................................34810.3.7.53 LCS GPS reference time.......................................................................................................34810.3.7.54 LCS GPS UTC model...........................................................................................................34910.3.7.55 LCS IPDL parameters...........................................................................................................34910.3.7.56 LCS measured results...........................................................................................................35010.3.7.57 LCS measurement.................................................................................................................35010.3.7.58 LCS measurement event results............................................................................................35110.3.7.59 LCS multiple sets..................................................................................................................35210.3.7.60 LCS OTDOA assistance data................................................................................................35310.3.7.61 LCS OTDOA assistance for SIB..........................................................................................35410.3.7.62 LCS OTDOA measurement..................................................................................................35510.3.7.63 LCS OTDOA measurement assistance data.........................................................................35610.3.7.64 LCS OTDOA reference cell for assistance data...................................................................35610.3.7.65 LCS position.........................................................................................................................35710.3.7.66 LCS reporting criteria...........................................................................................................35810.3.7.67 LCS reporting quantity.........................................................................................................35910.3.7.68 Maximum number of reported cells on RACH....................................................................36010.3.7.69 Measured results...................................................................................................................36010.3.7.70 Measured results on RACH..................................................................................................36110.3.7.71 Measurement Command.......................................................................................................36110.3.7.72 Measurement control system information............................................................................36210.3.7.73 Measurement Identity Number.............................................................................................36210.3.7.74 Measurement reporting mode...............................................................................................36310.3.7.75 Measurement Type................................................................................................................36310.3.7.76 Measurement validity...........................................................................................................36310.3.7.77 Observed time difference to GSM cell.................................................................................36310.3.7.78 Periodical reporting criteria..................................................................................................36410.3.7.79 Primary CCPCH RSCP info.................................................................................................36410.3.7.80 Quality measured results list.................................................................................................36410.3.7.81 Quality measurement............................................................................................................36510.3.7.82 Quality measurement event results (FFS).............................................................................36510.3.7.83 Quality measurement reporting criteria................................................................................36510.3.7.84 Quality reporting quantity.....................................................................................................36610.3.7.85 Reference time difference to cell..........................................................................................36610.3.7.86 Reporting Cell Status............................................................................................................36710.3.7.87 Reporting information for state CELL_DCH.......................................................................36810.3.7.88 SFN-SFN observed time difference......................................................................................36810.3.7.89 Time to trigger......................................................................................................................36810.3.7.90 Timeslot ISCP info................................................................................................................36810.3.7.91 Traffic volume event identity................................................................................................36810.3.7.92 Traffic volume measured results list.....................................................................................36910.3.7.93 Traffic volume measurement................................................................................................37010.3.7.94 Traffic volume measurement event results...........................................................................37010.3.7.95 Traffic volume measurement object.....................................................................................37110.3.7.96 Traffic volume measurement quantity..................................................................................37110.3.7.97 Traffic volume measurement reporting criteria....................................................................37210.3.7.98 Traffic volume measurement system information................................................................37210.3.7.99 Traffic volume reporting quantity.........................................................................................37310.3.7.100 UE internal event identity...................................................................................................37310.3.7.101 UE internal measured results..............................................................................................37410.3.7.102 UE internal measurement...................................................................................................37410.3.7.103 UE internal measurement event results..............................................................................37510.3.7.104 UE internal measurement quantity.....................................................................................37510.3.7.105 UE internal measurement reporting criteria.......................................................................37610.3.7.106 UE internal measurement system information...................................................................37610.3.7.107 UE Internal reporting quantity............................................................................................37610.3.7.108 UE Rx-Tx time difference..................................................................................................37710.3.7.109 UE Transmitted Power info................................................................................................377

10.3.8 其他信息元素...................................................................................................................37710.3.8.1 BCCH modification info.........................................................................................................37710.3.8.2 BSIC........................................................................................................................................37710.3.8.3 CBS DRX Level 1 information...............................................................................................37710.3.8.4 Cell Value tag..........................................................................................................................37810.3.8.5 Inter-System handover failure.................................................................................................37810.3.8.6 Inter-system message..............................................................................................................378

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10.3.8.7 MIB Value tag.........................................................................................................................37910.3.8.8 PLMN Value tag......................................................................................................................37910.3.8.9 Predefined configuration identity and value tag.....................................................................37910.3.8.10 Protocol error information....................................................................................................37910.3.8.11 References to other system information blocks....................................................................37910.3.8.12 Scheduling information.........................................................................................................38010.3.8.13 SEG COUNT........................................................................................................................38110.3.8.14 Segment index.......................................................................................................................38110.3.8.15 SIB data fixed.......................................................................................................................38110.3.8.16 SIB data variable...................................................................................................................38110.3.8.17 SIB type................................................................................................................................381

10.3.9 ANSI-41信息元素.............................................................................................................38210.3.9.1 ANSI 41 Core Network Information.......................................................................................38210.3.9.2 ANSI-41 Global Service Redirection information..................................................................38210.3.9.3 ANSI-41 NAS parameter........................................................................................................38210.3.9.4 ANSI-41 NAS system information.........................................................................................38210.3.9.5 ANSI-41 Private Neighbor List information...........................................................................38210.3.9.6 ANSI-41 RAND information..................................................................................................38310.3.9.7 ANSI-41 User Zone Identification information......................................................................38310.3.9.8 MIN_P_REV...........................................................................................................................38310.3.9.9 NID..........................................................................................................................................38310.3.9.10 P_REV..................................................................................................................................38310.3.9.11 SID........................................................................................................................................383

10.3.10 Multiplicity values and type constraint values..................................................................384

11 消息和信息元素抽象语法(ASN.1描述)........................................................................................386

11.1 一般消息结构............................................................................................................................38611.2 PDU的定义...................................................................................................................................38911.3 信息元素定义............................................................................................................................414

11.3.1 CN信息元素.....................................................................................................................41411.3.2 UTRAN移动性信息元素..................................................................................................41611.3.3 UE信息元素.....................................................................................................................41811.3.4 RB信息元素.....................................................................................................................42911.3.5 传输信道信息元素...........................................................................................................43711.3.6 物理信道信息元素...........................................................................................................44311.3.7 测量信息元素...................................................................................................................46411.3.8 其他信息元素...................................................................................................................49511.3.9 ANSI-41信息元素.............................................................................................................502

11.4 常量定义....................................................................................................................................50311.5 网络结点之间的 RRC 信息......................................................................................................504

12 消息传送语法........................................................................................................................................508

12.1 编码的 RRC消息的结构..........................................................................................................50812.2 用于 RRC的 ECN链路模块....................................................................................................50912.3 用于 RRC的 ECN模块............................................................................................................510

13 协议定时器,计数器和其它参数........................................................................................................511

13.1 用于UE的定时器.....................................................................................................................51113.2 用于UE的计数器.....................................................................................................................51213.3 UE常量和参数..............................................................................................................................51313.4 UE变量..........................................................................................................................................513

13.4.1 CIPHERING_STATUS......................................................................................................51313.4.2 COMPRESSED_MODE_ERROR.....................................................................................51313.4.3 DEFAULT_TFC_SUBSET.................................................................................................51313.4.4 DOFF...............................................................................................................................51313.4.5 ESTABLISHED_RABS.......................................................................................................51413.4.6 INTEGRITY_PROTECTION_INFO..................................................................................51413.4.7 MEASUREMENT_IDENTITY...........................................................................................51413.4.8 ORDERED_ASU...............................................................................................................51413.4.9 ORDERED_CONFIG........................................................................................................51513.4.10 PROTOCOL_ERROR_INDICATOR.................................................................................51513.4.11 PROTOCOL_ERROR_INFORMATION...........................................................................51513.4.12 PROTOCOL_ERROR_REJECT........................................................................................516

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13.4.13 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO................................................51613.4.14 SELECTED_PLMN...........................................................................................................51613.4.15 TGPS_IDENTITY..............................................................................................................51613.4.16 UE_CAPABILITY_TRANSFERRED..................................................................................51613.4.17 VALUE_TAG......................................................................................................................517

14 特定功能........................................................................................................................................................518

14.1 频率内测量.....................................................................................................................................51814.1.1 频率内测量的量......................................................................................................................................51814.1.2 FDD的频率内报告事件.........................................................................................................................51814.1.3 TDD的频率内报告事件.........................................................................................................................52214.1.4事件触发的周期性频率内测量报告......................................................................................................52314.1.5 改变频率内测量报告行为的可用机制..................................................................................................52414.1.6 报告量......................................................................................................................................................527

14.2.频率间测量..................................................................................................................................52814.2.1 频率间报告事件......................................................................................................................................528

14.3.系统间测量(inter-system measurement).................................................................................52914.3.1 系统间报告事件......................................................................................................................................530

14.4.业务量测量(traffic volume measurement)..............................................................................53114.4.1 业务量测量量..........................................................................................................................................53114.4.2 业务量报告事件......................................................................................................................................53114.4.3 业务量报告机制......................................................................................................................................53214.4.4 用户数据传输的中断..............................................................................................................................533

14.5.UE内部测量................................................................................................................................53314.5.1. UE内部测量量....................................................................................................................................53314.5.2. UE内部测量报告事件........................................................................................................................533

14.6.上行链路DCH的动态资源分配控制(仅适用于 FDD).......................................................53514.7.下行链路外环功率控制(Downlink outer loop power control)..............................................536

14.7.1 概述..........................................................................................................................................................53614.7.2 压缩模式中的下行链路功率控制..........................................................................................................536

14.8.传输格式组合计算(Calculated Transport Format Combination).........................................53714.9.在未使用频率上激活集的UE自主更新(仅适用于 FDD)..................................................53714.10 在网络节点间 RRC信息的提供和接收......................................................................................538

14.10.1 RRC信息,到目标 RNC......................................................................................................................53814.10.2 RRC信息,目标 RNC到源 RNC........................................................................................................54414.10.3 RRC信息,目标 RNC到源系统.........................................................................................................544

14.11 通用信道分配模式(VCAM)映射规则(仅适用 FDD)........................................................54514.12 LCS测量........................................................................................................................................54514.13 在UE和其它系统间传送的 RRC信息.......................................................................................545

14.13.1 RRC 信息, 另一个 RAT到UE.............................................................................................................54514.13.2 RRC 信息,UE到另一个 RAT............................................................................................................546

15 RRC和上层间的原语..................................................................................................................................547

16 未知的,不可预见的和错误协议数据的处理............................................................................................547

16.1 概述............................................................................................................................................54716.2 违背ASN.1或编码错误...........................................................................................................54816.3 未知或不可预见的消息类型....................................................................................................54816.4 未知或不可预见的信息元素值,强制性信息元素................................................................54816.5 条件信息元素错误....................................................................................................................54816.6 未知或不可预见的信息元素值,条件信息元素....................................................................54916.7 未知或不可预见的信息元素值,可选信息元素....................................................................54916.8 非期望的消息扩展....................................................................................................................549

17 SDL................................................................................................................................................................550

18 附录: 实施举例.............................................................................................................................................551

18.1 VCAM映射规则的例子...........................................................................................................551

附件A (INFORMATIVE): USIM参数...........................................................................................................553

A.1 简介................................................................................................................................................553A.2 加密信息........................................................................................................................................553A.3 频率信息........................................................................................................................................553

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A.4 多样性的值和类型约束的值........................................................................................................554

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前 言本通信标准参考性技术文件主要定义了 IMT-2000 DS系统 FDD模式(WCDMA)的 Uu接口

的内容,它是基于 3GPP 制定的 Release-99(2000 年 9 月份版本)技术规范,具体对应于TS25.331V3.4.1。

本通信标准参考性技术文件主要对 Uu接口技术规范中的无线资源管理协议(RRC)部分进行规定和说明。

本参考性技术文件由信息产业部电信研究院提出。本参考性技术文件由信息产业部电信研究院归口。本参考性技术文件起草单位:信息产业部电信传输研究所

上海贝尔有限公司 北京邮电大学

本参考性技术文件主要起草人:吴伟、卓天真、徐菲、徐京皓张建林、季利军、张义成崔春风、赵璨

本参考性技术文件 2001年 1月首次发布。本参考性技术文件委托无线通信标准研究组负责解释。

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通信标准参考性技术文件IMT-DS FDD(WCDMA)系统无线接口层 3 技术规范:

无线资源控制协议(RRC)IMT-DS FDD(WCDMA) System Radio Interface Layer3

Technical Specificaiton: RRC Protocol

1 范围 本参考性技术文件规定了第三代移动通信系统中用户设备(UE)与无线接入系统(UTRAN)之间,即 Uu接口的无线资源控制协议,是基于 3GPP制定的 Release-99(2000年 9月版本)技术规范,具体对应于 TS25.331V3.4.1。同时,它也包括了源 RNC与目标 RNC间,目标 RNC和其他系统间重选路由的透明传输部分的信息。

2 引用标准下列标准包含的条文,通过在本标准中引用而构成本标准的条文。本标准出版时,所示版本

均为有效。所有标准都会被修订,使用本标准的各方应探讨使用下列标准最新版本的可能性。[1] 3G TR 25.905: " 3GPP规范词汇表"

[2] 3G TS 25.301: "无线接口协议结构"

[3] 3G TS 25.303: "连接模式下层间过程"

[4] 3G TS 25.304: "UE在空闲模式下的过程和连接模式下小区重选过程"

[5] 3G TS 24.008: "移动无线接口层 3规范,核心网协议,阶段 3"

[6] 3G TS 25.103: "支持无线资源的射频参数"

[7] 3G TS 25.215: "物理层-统计测量(FDD)"

[8] 3G TS 25.225: "物理层-统计测量(FDD)"

[9] 3G TS 25.401: "UTRAN整体描述"

[10] 3G TS 25.402: "UTRAN中的同步,阶段 2"

[11] 3G TS 23.003: "编号,寻址,标识符"

[12] ICD-GPS-200: "Navstar GPS Space Segment/Navigation User Interface".

[13] RTCM-SC104: "RTCM Recommended Standards for Differential GNSS Service (v.2.2)".

[14] 3GPP TR 25.921: "Guidelines and Principles for protocol description and error handling".

[15] 3GPP TS 25.321: "MAC protocol specification".

[16] 3GPP TS 25.322: "RLC Protocol Specification".

[17] 3GPP TS 24.007: "Mobile radio interface signalling layer 3".

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[18] 3GPP TS 25.305: "Stage 2 Functional Specification of Location Services in UTRAN".

3 定义和缩略语3.1 定义本标准的名词定义都在[1]中。

3.2 缩略语ACK Acknowledgement 确认AICH Acquisition Indicator Channel 捕获指示信道AM Acknowledged Mode 确认模式AS Access Stratum 接入网络体系ASN.1 Abstract Syntax Notation.1 抽象语法符号集BCCH Broadcast Control Channel 广播控制信道BCFE Broadcast Control Functional Entity 广播多投控制功能体BER Bit Error Rate 误码率BLER BLock Error Rate 误块率BSS Base Station Sub-system 基站子系统CH Conditional on historyCV Conditional on value 条件CCPCH Common Control Physical Channel 公共控制物理信道CCCH Common Control Channel 公共控制信道CN Core Network 核心网CM Connection Management 连接管理CPCH Common Packet CHannel 公共报文信道C-RNTI Cell RNTI 小区无线网络临时标识DCA Dynamic Channel Allocation 动态信道分配DCCH Dedicated Control Channel 专用控制信道DCFE Dedicated Control Functional Entity 专用控制功能体DCH Dedicated Channel 专用控制DC-SAP Dedicated Control SAP 专用控制业务接入点DL Downlink 下行链路DRAC Dynamic Resource Allocation Control 动态资源分配控制DSCH Downlink Shared Channel 下行共享信道DTCH Dedicated Traffic Channel 专用业务信道FACH Forward Access Channel 前向接入信道FAUSCH Fast Uplink Signalling Channel 快速上行信令信道FDD Frequency Division Duplex 频分复用FFS For Further Study 再研究GC-SAP General Control SAP 通用控制业务接入点HCS Hierachical Cell Structure 层次小区结构

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ID Identifier 标识IETF Internet Engineering Task ForceIMEI International Mobile Equipment Identity 国际移动设备标识码IMSI International Mobile Subscriber Identity 国际移动用户标识码IE Information element 信息元素IP Internet Protocol 国际互联网协议ISCP Interference on Signal Code Power 信号码功率交调LAI Location Area Identity 位置域标识L1 Layer 1 层 1(物理层)L2 Layer 2 层 2(数据链路层)L3 Layer 3 层 3(网络层)MD Mandatory DefaultMP Mandatory Present 必须存在MAC Media Access Control 媒质访问控制MCC Mobile Country Code 移动国家码MM Mobility Management 移动性管理MNC Mobile Network Code 移动网络码MS Mobile Station 移动台NAS Non Access Stratum 非接入网络层Nt-SAP Notification SAP 通知业务接入点NW Network 网络O Optional 可选ODMA Opportunity Driven Multiple Access 时机驱动多址接入PCCH Paging Control Channel 寻呼控制信道PCH Paging Channel 寻呼信道PDCP Packet Data Convergence Protocol 报文集中协议PDSCH Physical Downlink Shared Channel 下行物理共享信道PDU Protocol Data Unit 协议数据单元PLMN Public Land Mobile Network 公共陆地移动网PNFE Paging and Notification Control

Functional Entity寻呼通知功能体

PRACH Physical Random Access Channel 随机接入物理信道P-TMSI Packet Temporary Mobile Subscriber

Identity报文临时移动用户标识

PUSCH Physical Uplink Shared Channel 上行共享物理信道QoS Quality of Service 业务质量RAB Radio access bearer 无线接入承载RAI Routing Area Identity 路由域标识RACH Random Access Channel 随机接入信道RB Radio Bearer 无线承载RFE Routing Functional Entity 路由功能体RL Radio Link 无线链路RLC Radio Link Control 无线链路控制RNTI Radio Network Temporary Identifier 无线网络临时标识RNC Radio Network Controller 无线网络控制器RRC Radio Resource Control 无线资源控制RSCP Received Signal Code Power 接收信号码功率RSSI Received Signal Strength Indicator 接收信号强度标识

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SAP Service Access Point 业务接入点SCFE Shared Control Function Entity 共享控制功能体SF Spreading Factor 扩频因子SHCCH Shared Control Channel 共享控制信道SIR Signal to Interference Ratio 信噪比SSDT Site Selection Diversity Transmission 空间分集S-RNTI SRNC – RNTI 服务无线网络临时标识符TDD Time Division Duplex 时分复用TF Transport Format 传输格式TFCS Transport Format Combination Set 传输格式组合集合TFS Transport Format Set 传输格式集合TME Transfer Mode Entity 传输模式实体TMSI Temporary Mobile Subscriber Identity 临时移动用户标识符Tr Transparent 透明的Tx Transmission 传输发送UE User Equipment 用户设备UL Uplink 上行链路UM Unacknowledged Mode 非确认模式UMTS Universal Mobile Telecommunications

System全球移动通信系统

URA UTRAN Registration Area UTRAN登录域U-RNTI UTRAN-RNTI UTRAN 无线网络临时标

识符USCH Uplink Shared Channel 上行共享信道UTRAN UMTS Terrestrial Radio Access Network UMTS地面无线接入网

4 概述RRC层的功能实体描述如下: 路由功能实体(RFE) 处理高层消息到不同的移动管理/连接管理实体(UE侧)或不

同的核心网络域(UTRAN侧)的路由选择。 广播控制功能实体(BCFE) 处理广播功能。该实体用于发送一般控制接入点(GC-

SAP)所需要的 RRC业务。BCFE能使用低层透明模式接入点(Tr-SAP)和非确认模式接入点(UM-SAP)提供的服务。

寻呼及通告功能实体(PNFE) 控制寻呼没有 RRC连接的UE。该实体用于发送通告接入点(Nt-SAP)所需要的 RRC业务。能使用低层 Tr-SAP和UM-SAP提供的服务。

专用控制功能实体(DCFE) 处理特定的一个 UE的所有功能。该实体用于发送专用控制(DC-SAP)所需要的 RRC业务。根据发送的消息和当前UE服务状态,DCFE可使用低层 Tr-SAP和UM/AM-SAP提供的服务。

共享控制功能实体(SCFE) 控制 PDSCH 和 PUSCH的分配。该实体使用低层 Tr-SAP和UM-SAP提供的服务。SCFE用于 TDD模式下,协助专用控制功能实体。

传输模式实体(TME) 处理RRC层内不同实体和RLC提供的接入点之间的映射。 注:在 RRC子层功能实体内也存在逻辑信息的交换。大部分是依赖于具体实现的,不在规范中做详细描述。图 1给出了UE端的 RRC模型,图 2a和 2b给出了UTRAN端的 RRC模型。注:图中仅表示了所用到的 SAP。Tr-SAP,UM-SAP和 AM-SAP的多个实例是可能的。特别

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地,不同的功能实体使用不同的 SAP类型实例。

图 1 UE 侧 RRC 模型

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图 2.1 UTRAN 侧 RRC 模型 (DS-MAP 系统)

图 2.2 UTRAN 侧 RRC 模型 (DS-41 系统)

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5 RRC提供给高层的服务RRC层提供给高层以下服务,这些服务的描述和原语见[2]和[17]: 一般控制 通告 专用控制

6 期望的低层服务6.1 期望来自层二的服务

层二提供的服务见[2],[15]和[16]。6.2 期望来自层一的服务

层一提供的服务见[2]。

7 RRC的功能 RRC执行以下功能:

广播由非接入层(核心网)提供的信息 广播与接入层相关的信息 建立、维持及释放UE和UTRAN之间的一个 RRC连接 建立、重配置及释放无线承载 分配、重配置及释放用于 RRC连接的无线资源 RRC连接移动功能 为高层 PDU选路由 控制所需的QoS UE测量的报告和对报告的控制 外环功率控制 加密控制 慢速动态信道分配 寻呼 初始小区选择和重选 上行链路DCH上无线资源的仲裁 RRC消息完整性保护 定时提前(TDD模式) CBS控制

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8 RRC过程8.1.RRC连接管理过程

8.1.1系统信息的广播

图 3:系统信息的广播

8.1.1.1概述该过程用于在一个小区内从UTRAN向UE广播系统信息。

8.1.1.1.1系统信息结构系统信息元素在系统信息块中广播。一个系统信息块由同类型的系统信息元素组成。不同的

系统信息块有不同的特征,例如它们的重复率和对UE重读这些系统信息块的要求。系统信息程树形结构。在一个小区中,主信息块指出其他一些系统信息块的信息,包括这些

系统信息块的调度信息。系统信息块包含实际的系统信息并/或通过调度信息指向其他系统信息块。被指向的系统信息块应和其父系统信息块有相同的广播范围和更新机制。一些系统信息块可能以不同的内容出现多次。在这种情况下,对每次系统信息块的出现都进

行调度。这种选择仅适用于系统信息块类型 16。图 4指出了在一个小区中,主信息块和系统信息块之间的关系。

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图 4:系统信息的整体结构

8.1.1.1.2系统信息块表 1.1指出了系统信息块及它们的特征。区域范围栏指出了一个系统信息块的有效区域。若范围是小区,UE应只认为所读小区的系统

信息快是正确的。若为该小区预先存贮了系统信息块,UE应检查所进入小区的系统信息块值标记是否与存贮的不同。若范围是 PLMN,UE应在选择新的小区时检查该系统信息块的值标记。若新的小区中系统信息块的值标记与UE所存贮的系统信息块值标记不同,UE应重读该系统信息块。一些系统信息块会多次出现,这些系统信息块都有各自独立的值标记。若该次出现的值标记

同UE中所存贮的相比改变了,UE应重读该系统信息块。UE模式/状态栏规定了在何种 UE模式或 UE状态下系统信息块中的信息元素有效。或者说一

旦改变成一个这里不包含的模式/状态时指定的系统信息块变为不正确。附加需求栏指出了满足这些附加需求的 FDD UE应在 CELL_DCH状态使用系统信息块给出的信息元素。传输信道栏指出了系统信息块广播的信道。若传输信道是 BCH,UE应在一个 BCH传输信道上读系统信息块。若传输信道是 FACH,UE应在一个 FACH信道上读系统信息。调度信息栏指出了系统信息块的位置和重复周期。系统信息修改栏指出了某一系统信息块适用的更新机制。对有值标记的系统信息块,UE应根据 8.1.1.4.1 或 8.1.1.4.3更新信息。对有超时定时器的系统信息块,UE应根据 8.1.1.4.2更新信息。

表 1.1: 系统信息块特征规定

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System information

block

Area scope

UE mode/state

Transport channel

Scheduling information

Modification of system information

Additional requirements

Master information block

Cell Idle mode,CELL_FACH,CELL_PCH, URA_PCH

BCH

SIB_POS = 0 SIB_REP = 8 (FDD) SIB_REP = 8, 16, 32 (TDD)SIB_OFF=2

Value tag

CELL_FACH FACH Scheduling not applicable

Value tag

System information block type 1

PLMN Idle mode BCH Specified by the IE "Scheduling information"

Value tag

System information block type 2

PLMN CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 3

Cell Idle mode, (CELL_FACH, CELL_PCH, URA_PCH)

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 4

Cell CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag If System information block type 4 is not broadcast in a cell, the connected mode UE shall read System information block type 3

System information block type 5

Cell Idle mode, (CELL_FACH, CELL_PCH, URA_PCH)

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 6

Cell CELL_FACH, CELL_PCH, URA_PCH, CELL_DCH (TDD only)

BCH Specified by the IE "Scheduling information"

Value tag If system information block type 6 is not broadcast in a cell, the connected mode UE shall read System information block type 5.

If some of the optional IEs are not included in System information block type 6, the UE shall read the corresponding IEs in System information block type 5

System information block type 7

Cell Idle mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Expiration timer = SIB_REP

System information block type 8

Cell CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 9

Cell Connected mode

BCH Specified by the IE "Scheduling information"

Expiration timer = SIB_REP

System information block type 10

Cell CELL_DCH FACH Specified by the IE "Scheduling information"

Expiration timer = SIB_REP

This system information block shall only be acquired by UEs with support for simultaneous reception of one SCCPCH and one DPCH.

If the system information block is not

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broadcast in a cell, the DRAC procedures do not apply in this cell. This system information block is used in FDD mode only.

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System information block type 11

Cell Idle mode (CELL_FACH, CELL_PCH, URA_PCH)

BCH Specified by the IE "Scheduling information"

Value tag This system information block is used in FDD mode only.

System information block type 12

Cell CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag If some of the optional IEs are not included in System information block type 12, the UE shall read the corresponding IEs in System information block type 11. This system information block is used in FDD mode only.

System information block type 13

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 13.1

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 13.2

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 13.3

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 13.4

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 14

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH, CELL_DCH

BCH Specified by the IE "Scheduling information"

Expiration timer = SIB_REP

This system information block is used in TDD mode only.

System information block type 15

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 15.1

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 15.2

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 15.3

Cell Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag

System information block type 16

PLMN Idle Mode, CELL_FACH, CELL_PCH, URA_PCH

BCH Specified by the IE "Scheduling information"

Value tag For this system information block there may be multiple occurrences

System information block type 17

Cell CELL_FACH, CELL_PCH, URA_PCH , CELL_DCH

BCH Specified by the IE "Scheduling information"

Expiration timer = SIB_REP

This system information block is used in TDD mode only.

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8.1.1.1.3系统信息块的分段和链接 一个 SYSTEM INFORMATION消息一般用于在 BCCH上传送系统信息块。一个给定的 BCCH可能映射在 BCH或 FACH传输信道上。SYSTEM INFORMATION消息的大小应适合一个 BCH或FACH传输块的大小。 UTRAN中的 RRC层对编码后的系统信息块进行分段和链接。若一个系统信息块大于 SYSTEM INFORMATION消息的大小,应对其进行分段并在几个消息中传输。若一个系统信息块小于SYSTEM INFORMATION消息的大小,根据下文的规定,UTRAN可能在同一消息中链接几个完整的(或部分的)系统信息块,或第一段,或最后段。四个不同段类型定义如下: 第一段 随后段 最后段 完整段前三种段类型用于传输一个主信息块或系统信息块的分段。完整段用于传输一个完整的主信

息块或系统信息块。每个段由一个报头和一个数据字段组成。数据字段携带编码的系统信息元素。报头包含以下

参数: 系统信息块中段的数量(SEG_COUNT)。该参数仅在“第一段”的报头中存在。 SIB类型。该参数唯一标识一个主息块或一个系统信息块。 段索引。该参数仅存在于“随后段”或“最后段” 的报头中UTRAN可能在同一 SYSTEM INFORMATION消息中组合一个或几个变长的段。以下组合是

允许的:1.无分段2.第一段3.随后段4.最后段5.最后段 + 第一段6.最后段 + 一个或多个完整段7.最后段 + 一或多个完整段+ 第一段8.一个或多个完整段9.一或多个完整段+ 第一段 ……

“无分段(No segment)”组合用于某一特定 BCH传输块中没有预定的主信息块或系统信息块时。不要求UE支持接收一个 SYSTEM INFORMATION消息中某系统信息块类型的多次出现。注:既然该系统信息块的每次出现 SIB类型都是相同的,UE不知道这些出现的顺序。因此,

UE不能确定哪个调度信息,即值标记,与系统信息块的哪次出现是相关的。8.1.1.1.4段的重组

UE的 RRC层应执行段的重组。属于同一主信息块或系统信息块的段应根据段索引按升序进行组合。当收到一个主信息块或一个系统信息块的全部段后,UE应执行对完整主信息块或系统信息块的解码。对使用了多个事件的系统信息块,对每个事件独立重组。8.1.1.1.5 系统信息的调度

UTRAN的 RRC层执行系统信息的调度。若使用分段,应能分别调度每个段。为允许短重复周期的系统信息块和多帧分段的系统信息块的混合传输,UTRAN可能复用不同

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系统信息块的段。复用和解复用由 RRC层完成。在一个 BCH传输信道广播的每个系统信息块的调度由以下参数定义: 段的数目(SEG_COUNT) 重复周期(SIB_REP)。此值对所有段相同。 第一段在小区系统帧号( Cell System Frame Number)一个循环周期中的位置(SIB_POS)。由于系统信息块以周期 SIB_REP重复,对于所有的段,SIB_POS必须小于SIB_REP。 随后段的偏移按升序索引顺序(SIB_OFF(i), i=1,2,…SEG_COUNT-1), 随后段的位

置按公式进行计算:SIB_POS(i)= SIB_POS(i - 1)+ SIB_OFF(i) 调度基于小区系统帧号(SFN)。一个系统信息块的特定段(i)产生所在的帧定义如下: SFN mod SIB_REP = SIB_POS (i)在 FDD和 TDD模式,主信息块的调度是固定的,见表中定义。对于 TDD,UTRAN可以应用四种允许的主信息块重复周期中的一种。UTRAN使用的值并未告知,UE 只能通过试验和错误来确定。

8.1.1.2 启动系统信息根据每个系统信息块的调度信息的规则持续重复广播。UTRAN可能发送不属于调度的信息块。

8.1.1.3 UE对 SYSTEM INFORMATION消息的接收UE应在空闲模式及 CELL_FACH、CELL_PCH和 URA_PCH状态下读取 BCH传输信道上广

播的 SYSTEM INFORMATION消息。而且,UE应在 CELL_FACH状态下读取 FACH传输信道上广播的 SYSTEM INFORMATION消息。另外,支持同时接收 SCCPCH和DPCH信息的 UE,可在CELL_DCH状态下读取 FACH传输信道上广播的 SYSTEM INFORMATION消息。空闲模式和连接模式的 UE可能获得系统信息块的不同组合。在每次获取前,UE应识别它所

需要的系统信息块。UE能存贮不同小区和不同 PLMN的系统信息块(包括它们的值标记),以便 UE返回到这些

小区时使用。UE应认为系统信息块在接收后 6小时内有效。另外,UE应认为所有存贮的系统信息块在UE关机后无效。当在当前使用的 PLMN中选择一个新的小区时,UE应认为所有小区区域范围的当前系统信息

块是无效的。若UE新选的小区存贮了有效的系统信息块,则可能将其设为当前系统信息块。当选择一个新的 PLMN之后,UE认为所有当前系统信息无效。若 UE已经存贮了关于该

PLMN的被选小区的有效系统信息,UE应设其为当前系统信息块。当 UE选择新的 PLMN后,应在变量 SELECTED_PLMN中存贮有关该 PLMN的所有信息元素。8.1.1.3.1 对 BCH传输信道上广播的 SYSTEM INFORMATION消息的接收当选择一个新的小区时,UE应读主信息块。UE使用预定的安排信息在小区中定位主信息块。一旦接收到主信息块,UE应 若变量 SELECTED_PLMN中“PLMN type”的值为“GSM-MAP”,且信息元素“PLMN

Type”的值为“GSM-MAP”或“GSM-MAP and ANSI-41”,UE将检查主系统信息块的信息元素“PLMN identity”,证实它是所选的 PLMN,并将它存入变量 SELECTED_PLMN的“PLMN identity” 中。

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若变量 SELECTED PLMN中“PLMN type”的值为“ANSI-41” ,且信息元素“PLMN Type”的值为“ANSI-41”或“GSM-MAP and ANSI-41”,则 UE将存贮包含在主信息块中的ANSI-41信息元素并执行ANSI-41初始化过程。

存贮主信息块的“value tag”值到变量VALUE_TAG中。 对于 PLMN区域范围所有使用值标记的系统信息块,检查值标记,并将其存贮在变量

VALUE TAG中。若对任何系统信息块,其值标记与变量 VALUE_TAG中该系统信息块的值不同或没有存贮相应的系统信息块的信息元素,UE应读取并存贮该系统信息块的信息元素。

对于小区区域范围所有使用值标记的系统信息块,检查值标记,并将其存贮在变量VALUE TAG中。若对任何系统信息块,其值标记与变量 VALUE_TAG中该系统信息块的值不同或没有存贮相应的系统信息块的信息元素,UE应读取并存贮该系统信息块的信息元素

对多次出现的系统信息块,每次出现都检查并存贮值标记。若系统信息块的一次出现,其值标记与变量 VALUE_TAG 中存贮的对应该系统信息块的同一出现的值不同,或没有存贮相应系统信息块的该次出现的信息元素,UE应读取并存贮该系统信息块的信息元素。

读取并存贮UE将使用的小区区域范围的全部不使用值标记的系统信息块的信息元素。UE应根据包含在主信息块和其他系统信息块中的调度信息定位每个获取的系统信息块。当然,

UE也应当能够接收不同于调度信息所指定的系统信息块。接收到系统信息块后,UE应执行 8.1.1.5节所述的动作。

8.1.1.3.2 对 FACH传输信道上广播的 SYSTEM INFORMATION消息的接收一些系统信息块可能在 FACH上广播,见表中的规定。在小区中使用了多个 FACH的情况,

系统信息块在 FACH上广播并试图到达所有处于 CELL_FACH状态的UE,例如,主信息块应在所有的 FACH上广播。主信息块在 FACH上的广播不是有规律的。在 FACH上的主信息块指示在BCH上广播的系统信息块内容的变化。当在 FACH上接收到系统信息块后,UE应执行 8.1.1.5节所述的动作。

8.1.1.4 系统信息的修改更新不同类型的系统信息块有不同的规则。若系统信息块在主信息块或高层系统信息块中有

一个值标记, UTRAN应通过改变相应值标记的值指示有信息元素被修改。。另外,还存在一类系统信息块,其中的信息元素变化过于频繁无法用值标记的改变指示。这类系统信息块并不与主信息块或高层系统信息块中的值标记关联。当 UE断电后,应认为全部存贮的系统信息块无效。对于多次出现的系统信息块,UE应按照前面的规定单独处理每一次出现,即每一次出现都作为单独的系统信息块。8.1.1.4.1 使用值标记修改系统信息块当系统信息被修改,UTRAN应执行以下操作向UE指示该变化: 在相应系统信息块中更新实际的系统信息。 若更新的系统信息与一个高层系统信息块关联,使用被修改的系统信息块的值标记更新

高层系统信息块。 使用被修改的系统信息块的值标记更新主信息块或高层系统信息块,并改变主信息块的

值标记。 开始在映射为 BCH的 BCCH上发送第一个新的主信息块替换旧的主信息块,随后在

BCCH上发送更新后的系统信息块代替旧的系统信息块。

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在所有的 FACH 上,在映射为 FACH 的 BCCH 上发送新的主信息块,使处于CELL_FACH状态的 UE能接收到。UTRAN可能在所有 FACH上重复新的主信息块以增加所有需要该信息的UE正确接收的几率。

在 PCCH上发送 PAGING TYPE 1消息,使处于空闲模式及连接模式 CELL_PCH状态和URA_PCH 状态下的 UE 能接收到。在 PAGING TYPE 1 消息的信息元素“BCCH Modification Information”中,UTRAN应指示主信息块新的值标记。PAGING TYPE 1消息应在所有寻呼时段发送。

注:为适当操作在 PCH上发送的“BCCH Modification Information”, 系统信息不应变换过于频繁,以适应基站对UTRAN支持的最大非连续接收(DRX)循环长度的操作。当接收到 PAGING TYPE 1 消息后,UE应 检查信息元素“BCCH Modification Information”中指示的主信息块的值标记。若值标记与

变量VALUE_TAG存贮的不一致,UE应读新的主信息块。当接收新的主信息块时(在映射到 BCH或 FACH的 BCCH上接收),UE应 存贮新的值标记到主信息块的变量VALUE_TAG中。 检查 UE使用的全部系统信息块的值标记。若系统信息块中的值标记与其 VALUE_TAG

中存贮的不同,UE则读取该系统信息块。对于多次出现的系统信息块,UE应按照前面的规定单独处理每一次出现,即每一次出现都作为单独的系统信息块。当接收到修改后的系统信息块后,UE应执行 8.1.1.5节所述的动作。

8.1.1.4.2 没有值标志时对系统信息的修改当UE获取一个不与值标记关联的系统信息块时,将启动一个定时器,其值应与该系统信息块

的重复周期(SIB_REP)相同。当定时器超时,认为该系统信息块中携带的信息无效,UE在捕获该系统信息块之后才能使用其系统信息元素。当接收到修改后的系统信息块后,UE应执行 8.1.1.5节所述的动作。8.1.1.4.3 由时间决定的系统信息块的修改对于一些系统信息元素的改变,如信道的重配置,UE获得其变化发生的确切时间是非常重要

的。在这种情况下,UTRAN执行以下动作向UE指示产生的变化: 在 PCCH上发送 PAGING TYPE 1 消息,使处于空闲模式及连接模式 CELL_PCH状态和

URA_PCH 状态下的 UE 能接收到。在 PAGING TYPE 1 消息的信息元素“BCCH Modification Information”中,UTRAN应指示变化发生的 SFN和变化发生后分配给主信息块的值标记。PAGING TYPE 1消息应在所有寻呼时段发送。

在所有的 FACH 上,在映射为 FACH 的 BCCH 上发送 SYSTEM INFORMATION CHANGE INDICATION 消息,使处于 CELL_FACH 状态的 UE 接收到。在“BCCH Modification Information”中,UTRAN应指示变化发生的 SFN和变化发生后分配给主信息块的值标记。UTRAN可能在所有的 FACH上重复 SYSTEM INFORMATION CHANGE INDICATION消息,以增加需要该信息的全部UE的接收几率。

在相应的系统信息块中更新实际的系统信息。 若更新的系统信息块与一个高层系统信息块相关联,使用被修改的系统信息块的值标记

更新高层系统信息块。 使用被修改的系统信息块或更高层系统信息块的值标记更新主信息块,并改变主信息块

的值标记。 在指定的 SFN,开始在映射为 BCH的 BCCH上发送新的主信息块和更新后的系统信息块

以代替旧的系统信息块。当接收到 PAGING TYPE 1或 SYSTEM INFORMATION CHANGE INDICATION消息后,UE应

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等待至信息元素“BCCH Modification Information”中所指示的开始时间,UE读取新的主信息块。

当接收新的主信息块时,UE应 为主信息块存贮新的值标记。 检查 UE 使用的全部系统信息块的值标记。UE 应读取每个值标记不同与变量

VALUE_TAG中存贮值标记的系统信息块。当接收到修改后的系统信息块时,UE应执行8.1.1.5节所述的动作。

若UE不能找到主信息块,则认为发生了物理重配置,并执行新的小区搜索。

8.1.1.5 接收系统信息块的动作

8.1.1.5.1 系统信息块类型 1

在空闲模式下,如果变量 SELECTED_PLMN 中“PLMN Type”的值为“GSM-MAP”,且主信息块中信息元素“PLMN type”的值为“GSM-MAP”或“GSM-MAP and ANSI-41”, UE应存贮该系统信息块包含的全部信息元素,同时应

向信息元素“CN domain identity”指示的非接入层实体传递信息元素“NAS system info”的内容。

使用信息元素" CN domain specific DRX cycle length coefficient "为寻呼时段和寻呼指示计算帧号,见[4]。

存贮信息元素"UE Timers and constant used in CELL_DCH"中的定时器和常量值。这些值在UE处于 CELL_DCH状态时使用。

对于相关的定时器和计数器,使用信息元素"UE Timers and constants in idle mode"的值。若在连接模式下,UE应不使用该系统信息块中信息元素的值(除了在信息元素"UE Timers

and constant used in CELL_DCH"中给出的定时器和常量的值)。。8.1.1.5.2 系统信息块类型 2

若在连接模式下,UE应存贮该系统信息块包含的全部信息元素,同时应 若在 CELL_FACH或 CELL_PCH状态下,开始使用信息元素"UE timers and constants"中

的信息执行周期性小区更新。 若在 URA_PCH状态下,开始使用信息元素"URA identity" 和 "UE timers and constants"中

的信息执行周期性的URA更新。若在空闲模式下,UE应不使用该系统信息块中信息元素的值。

8.1.1.5.3系统信息块类型 3

UE应存贮该系统信息块包含的全部信息元素,同时应 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包

含的调度信息所规定的操作相类似。8.1.1.5.4系统信息块类型 4

若在连接模式下,UE应存贮该系统信息块包含的全部信息元素,同时应 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包

含的调度信息所规定的操作相类似。若在空闲模式下,UE应不使用该系统信息块中信息元素的值。

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8.1.1.5.5系统信息块类型 5

UE应存贮该系统信息块包含的全部信息元素,同时应 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包

含的调度信息所规定的操作相类似。 若传输信道具有与UE中所存贮的相同的传输信道标识,替换该传输信道的 TFS。 若 UE处于 CELL_FACH状态,将信息元素"PRACH info"给定的 PRACH物理信道作为

上行链路的缺省物理信道。 当使用分配的 PRACH时,用"AICH info"给出的参数开始接收AICH物理信道 若 UE处于空闲模式或 CELL_PCH或 URA_PCH状态,使用"PICH info"给出的参数开始

接收 PICH物理信道。 若UE处于空闲模式或 CELL_PCH或URA_PCH状态,开始检测 PICH上的寻呼时段。 若 UE处于 CELL_FACH状态,使用"Secondary CCPCH info"给出的参数,开始接收次

CCPCH物理信道。 在 TDD模式下,使用信息元素"Midamble configuration"配置接收机。

8.1.1.5.6系统信息块类型 6

若在连接模式下,UE应存贮该系统信息块包含的全部信息元素,同时应 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包

含的调度信息所规定的操作相类似。 若传输信道具有与UE中所存贮的相同的传输信道标识,替换该传输信道的 TFS。 若 UE处于 CELL_FACH状态,将信息元素"PRACH info"中给出的物理信道类型 PRACH

作为上行链路缺省物理信道。若不包含信息元素"PRACH info",UE应读取系统信息块类型 5中的相关信息元素,并使用该信息配置 PRACH。

当使用相关的 PRACH时,根据信息元素"AICH info"给出的参数开始接收AICH物理信道。若不包含信息元素"AICH info",UE应读取系统信息块类型 5中的相关信息元素,并使用该信息。(FDD模式)。

若 UE处于 CELL_PCH或 URA_PCH状态,使用信息元素"PICH info"给出的参数开始接收 PICH物理信道。若不包含信息元素"PICH info",UE应读取系统信息块类型 5中的相关信息元素,并使用该信息。

若UE处于 CELL_PCH或URA_PCH状态,开始检测 PICH上的寻呼时段。 若UE处于 CELL_FACH状态,使用信息元素"Secondary CCPCH info" 给出的参数开始接

收次 CCPCH物理信道。若不包含信息元素"Secondary CCPCH info" ,UE应读取系统信息块类型 5中的相关信息元素,并使用该信息。

若在空闲模式下,UE应不使用该系统信息块中信息元素的值。8.1.1.5.7系统信息块类型 7

UE应存贮该系统信息块包含的全部信息元素,同时应 启动一个定时器,其值与该系统信息块的重复率(SIB_REP)相等。

8.1.1.5.8系统信息块类型 8

该系统信息块类型仅用于 FDD模式。若在连接模式下,UE应存贮该系统信息块包含的全部信息元素。若在空闲模式下,UE应不使用该系统信息块中信息元素的值。

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8.1.1.5.9系统信息块类型 9

该系统信息块类型仅用于 FDD模式。若在连接模式下,UE应存贮该系统信息块包含的全部信息元素,同时应 启动一个定时器,其值与该系统信息块的重复率(SIB_REP)相等。若在空闲模式下,UE应不使用该系统信息块中信息元素的值。

8.1.1.5.10系统信息块类型 10

该系统信息块类型仅用于 FDD模式。若在 CELL_DCH状态下,UE应存贮该系统信息块包含的全部信息元素,同时应 启动一个定时器,其值与该系统信息块的重复率(SIB_REP)相等。 对上行链路的DCH进行DRAC(动态资源分配管理)。若在空闲模式、CELL_FACH、CELL_PCH和 URA_PCH状态下,UE应不使用该系统信息块

中信息元素的值。8.1.1.5.11系统信息块类型 11

UE应存贮该系统信息块包含的全部信息元素,同时应 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包

含的调度信息所规定的操作相类似。 对每种测量类型,使用该测量类型的信息元素集开始测量。 将每个测量与信息元素"Measurement identity number"所给出的标识号相关联。 如果包含信息元素 "Intra-frequency reporting quantity"和 "Intra-frequency measurement

reporting criteria"或"Periodical reporting criteria",存贮以备进入 CELL_DCH状态时激活报告。

如果包含信息元素"Use of HCS",这意味着使用HCS,UE应: 若信息元素"Intra-frequency Cell Information"的首次出现不包括"HCS neighbouring cell

information",UE将该小区的信息元素"HCS neighbouring cell information" 指定为缺省值。

若信息元素"Intra-frequency Cell Information"的其他出现不包括"HCS neighbouring cell information",UE将之前出现的信息元素"Intra-frequency Cell Information"相同的参数用于该小区。

若信息元素"Inter-frequency Cell Information"的首次出现不包括"HCS neighbouring cell information",UE将该小区的信息元素"HCS neighbouring cell information" 指定为缺省值。

若信息元素"Inter-frequency Cell Information"的其他出现不包括"HCS neighbouring cell information",UE将之前出现的信息元素"Intra-frequency Cell Information"相同的参数用于该小区。

若信息元素"Inter-system Cell Information"的首次出现不包括"HCS neighbouring cell information",UE将为该小区的信息元素"HCS neighbouring cell information" 指定为缺省值。

若信息元素"Inter-system Cell Information"的其他出现不包括"HCS neighbouring cell information",UE将之前出现的信息元素"Intra-frequency Cell Information"相同的参数用于该小区。

8.1.1.5.12系统信息块类型 12

若在连接模式下,UE应存贮该系统信息块包含的全部信息元素,同时应

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若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包含的调度信息所规定的操作相类似。

对每种测量类型,使用该测量类型指定的信息元素集开始(或继续)测量。 在系统信息块类型 11指定的频内小区列表中,根据信息元素"Removed intra-frequency

cells"删除频内小区,并根据信息元素"New intra-frequency cells"添加相应的频内小区到该列表中。

下列信息元素"Intra-frequency measurement quantity", "Intra-frequency reporting quantity for RACH reporting", "Maximum number of reported cells on RACH"及"Reporting information for state CELL_DCH"中,若有其中之一在系统信息块中不存在,UE应在系统信息块类型 11中读取相应信息元素,并在频率内测量中使用该信息。

若在该系统信息块或系统信息块类型 11 中包含信息元素 "Intra-frequency reporting quantity" "Intra-frequency measurement reporting criteria" 或"Periodical reporting criteria",存贮信息元素以备进入 CELL_DCH状态后激活报告。

从系统信息块类型 11 指定的频间小区列表中删除信息元素"Removed inter-frequency cells"给出的频间小区。将信息元素"New inter-frequency cells"中给出的频间小区增加到系统信息块类型 11中指定的频间小区列表中。

若系统信息块中不包含信息元素"Inter-frequency measurement quantity",UE应在系统信息块类型 11中读取相应信息元素,并在频间测量中使用该信息。

从系统信息块类型 11 指定的系统间小区列表中删除信息元素 "Removed inter-system cells"给出的系统间小区。将信息元素"New inter-system cells"中给出的系统间小区增加到系统信息块类型 11中指定的系统间小区列表中。

若系统信息块中不包括信息元素"Inter-system measurement quantity",UE应读取系统信息块类型 11中相应的信息元素,并在系统间测量中使用该信息。

若在 CELL_FACH状态,根据信息元素"Traffic volume measurement reporting quantity"开始进行指定的业务量测量报告。

将每个测量与信息元素"Measurement identity number"给出的标识号相关联。 若包含信息元素 "Use of HCS", 指示使用HCS,UE应:

若在信息元素 "Intra-frequency Cell Information"首次出现中不包含信息元素 "HCS neighbouring cell information",UE应对该小区使用信息元素"HCS neighbouring cell information"指定为缺省值。

若在信息元素 "Intra-frequency Cell Information"其他出现中不包含信息元素 "HCS neighbouring cell information",UE 将之前出现的信息元素 "Intra-frequency Cell Information"相同参数用于该小区。

若在信息元素"Inter-frequency Cell Information"第一次出现中不包含信息元素"HCS neighbouring cell information",UE应对该小区使用信息元素"HCS neighbouring cell information"指定为缺省值。

若在信息元素 "Inter-frequency Cell Information"其他出现中不包含信息元素 "HCS neighbouring cell information",UE 将之前出现的信息元素 "Inter-frequency Cell Information"相同参数用于该小区。

若在信息元素 "Inter-system Cell Information"第一次出现中不包含信息元素 "HCS neighbouring cell information",UE应对该小区使用信息元素"HCS neighbouring cell information"指定为缺省值。

若在信息元素"Inter-system Cell Information"其他出现出现中不包含信息元素"HCS neighbouring cell information" , UE 将之前出现的信息元素 "Inter-system Cell Information"相同参数用于该小区。

若在空闲模式下,UE应不使用该系统信息块中信息元素的值。

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8.1.1.5.13系统信息块类型 13

若在空闲或连接模式下,UE应存贮该系统信息块包含的全部信息元素,除了" CN domain specific DRX cycle length coefficient ", "UE timers in idle mode" 和 "Capability update requirement",这些信息元素仅在空闲模式下存贮。UE仅当变量 SELECTED_CN 中"PLMN Type"的值为"ANSI-41"并且主信息块中"PLMN Type"的值为"ANSI-41" 或"ANSI-41 and GSM-MAP"时读系统信息块类型 13及其相关系统信息块类型 13.1,13.2,13.3,13.4。UE还应

向“CN domain identity”指示的非接入层实体传递“NAS (ANSI-41)system info”的内容。 使用" CN domain specific DRX cycle length coefficient "计算寻呼时段和寻呼指示的帧号。

8.1.1.5.14系统信息块类型 14

该系统信息块类型仅用于 TDD模式。UE应存贮该系统信息块包含的全部信息元素,同时: 使用信息元素 "Primary CCPCH Tx Power", "UL Interference","PRACH Constant value",

"DPCH Constant value" 和"PUSCH Constant value"计算 PRACH/DPCH/PUSCH发送功率,用于 TDD上行链路开环功率控制。

8.1.1.5.15系统信息块类型 15

若UE处于空闲模式或连接模式,并且支持 GPS定位业务和/或OTDOA定位业务,UE应存贮该系统信息块中包含的全部相关信息元素。同时:

若信息元素包含其他系统信息块的调度信息,UE对它们的操作应与主信息块中包含的调度信息所规定的操作相类似。

若包含信息元素"LCS Cipher GPS Data Indicator",并且UE有一个完整或简化的复杂 GPS接收器功能:存贮该信息元素中包含的相关参数(详见 10.3.7.43),并用于系统信息块类型15.1,15.2,15.3所包含的广播 LCS GPS信息的解密。

若包含信息元素"LCS OTDOA assistance for SIB":存贮相关信息。(详见 10.3.7.61)8.1.1.5.15.1系统信息块类型 15.1

UE应存贮该系统信息块中包含的全部相关信息元素。同时: "UTRAN Time Flag"值为"1"表示存在 UTRAN定时信息值(SFN),"0"表示味仅提供参考GPS TOW字段值。

"NODE B Clock Drift Flag"值为"1"表示存在 NODE B时钟偏移信息,"0"表示没有提供该信息元素的值。

若包含信息元素"NODE B Clock Drift":将其作为NODE B时钟相对GPS时间偏移率的估计

若不包含该信息元素:设其值为 0。

使用"Reference Location" 作为UE大约位置的预先知识。 若包含 SFN:将其作为GPS时间与服务小区中NODE B传输的空中接口定时之间的关系。

使用"Reference GPS TOW"作为从 SFN=0帧开始的GPS 周时间(GPS Time of Week)。 使用"Status/Health" 指示差异更正状态。 对信息元素组"DGPS information"使用与[13]相同的方法操作,除了 PRC与 RRC的衡量尺度因素不同。另外,DGPS信息的信息元素还包含 Delta PRC2 和 Delta RRC2。Delta PRC2 是 IODE识别的卫星 ephemeris和 两个版本之前的 IODE-2的先前的 ephemeris在

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pseudorange correction 上的区别。Delta RRC2则是 IODE和 IODE-2识别的卫星 ephemeris在 pseudorange rate-of-change correction 上的区别。这两个附加的信息元素应将 raw ephemeris data 的生命扩展到 6小时。

8.1.1.5.15.2系统信息块类型 15.2

UE应存贮该系统信息块中包含的全部相关信息元素。同时: 认为信息元素"Transmission TOW"是对当前时间的一个粗略估计,如当消息广播时大概的

GPS周时间。 认为信息元素"SatID"是从中获得该消息数据的卫星 ID。 其余信息元素的处理与[12]相同。此外,UE可利用这些信息元素进行 GPS时间的分发和

灵敏度的改进。8.1.1.5.15.3系统信息块类型 15.3

UE应存贮该系统信息块中包含的全部相关信息元素。同时: 认为信息元素"Transmission TOW"是对当前时间的一个粗略估计,如当消息广播时大概的

GPS周时间。 认为信息元素"SatMask"是包含该消息中广播的寻呼的卫星。 认为信息元素"LSB TOW"是 TOW的最低位 8比特。 认为信息元素"SFIO"是子帧(SF)ID的最低位比特,适用随后的第 3字到第 10字。”0”指示子帧 ID=4,”1”指示子帧 ID=5。

认为信息元素"Data ID"是指示子帧中包含的数据 ID字段,第 3个字最高 2比特。 认为信息元素"Page No"是指示子帧中的寻呼 ID,适用随后的第 3字到第 10字。 根据[12]所述操作其余信息元素,除了非信息比特,字 3的"Data ID"和"SV ID"(剩余 16比特),字 10的 2比特"t"(22比特剩余)。字 4到字 9有 24比特剩余。此外,UE可利用这些无信息比特进行GPS时间的分发和灵敏度的改进。

8.1.1.5.16系统信息块类型 16

对于 SIB16,可能使用多次出现,每个预定义的配置出现一次。为了表示不同的预定义,系统信息块类型 16的调度信息包含了信息元素"Predifined configuration identity and value tag",而不是通常使用的信息元素"PLMN value tag"。

UE应存贮该系统信息块中包含的全部相关信息元素。同时: 若存在包含其他系统信息块的调度信息的信息元素,UE对它们的操作应与主信息块中包含的调度信息所规定的操作相类似。

对于具有相同预定义配置标识的 SIB的出现,针对每一个预定义的配置,将所存贮的预定义配置的值标记(若存在)和包含在信息元素"Predifined configuration identity and value tag"中的预配置值标记进行比较。

若UE没有存贮相同标识的预定义配置或预定义配置值标记不同时:存贮预定义配置信息及其标识和值标记,以备后用,如在到UTRAN的切换。若UE存贮有相同标识的预定义配置:用读取到的系统信息中的新配置覆盖旧的配置,以备后用,如在到UTRAN的切换。

以上处理无论存贮的预定义配置信息是从UTRA还是从另一 RAT获得均适用。在启动 RRC连接建立前,不要求UE完成对全部出现的系统信息块类型 16的读取。

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8.1.1.5.17系统信息块类型 17

该系统信息块类型仅用于 TDD。

8.1.2寻呼

图 5:寻呼

8.1.2.1概述该过程用于在寻呼控制信道(PCCH)上给选定的处于空闲模式、CELL_PCH或 URA_PCH

状态下的 UE传输寻呼信息。网络高层可能要求寻呼,例如建立一个信令连接。UTRAN能在CELL_PCH或 URA_PCH状态下启动寻呼以触发 UE状态转移。另外,UTRAN能在空闲模式、CELL_PCH或URA_PCH状态下启动寻呼来触发UE读取更新后的系统信息。

8.1.2.2启动UTRAN通过在 PCCH上适当的寻呼时段发送 PAGING TYPE 1消息启动寻呼过程。UTRAN可能在几个寻呼时段向 UE重复发送一个 PAGING TYPE 1消息,以提高寻呼可靠接

收的几率。UTRAN通过在给每个 UE的 PAGING TYPE 1消息中包含一个信息元素"Paging record",能够

在同一寻呼时段寻呼几个 UE。通过在 PAGING TYPE 1 消息的信息元素 "BCCH modification information"中包含主信息块的值标记,UTRAN也可指示系统信息的更新。在这种情况下,UE 忽略信息元素"Paging record"。

8.1.2.3 UE对 PAGING TYPE 1消息的接收UE应在空闲模式、CELL_PCH和URA_PCH状态接收它所监听的寻呼时段内的寻呼信息。对

一个空闲模式的 UE,寻呼时段在 [4] 中规定,并依赖信息元素 "CN domain specific DRX cycle length coefficient",见 8.6.1.1规定。对处于 CELL_PCH和URA_PCH状态的 UE,寻呼时段亦依赖于信息元素"UTRAN DRX Cycle length coefficient"及"DRX indicator",分别见 8.6.3.2和 8.6.3.3规定。当UE收到 PAGING TYPE 1消息,应检查信息元素"Paging record"的每次出现。对于所包含的每个寻呼记录,UE应根据以下方式比较其中的标识和UE的标识:处于空闲模式的UE应:

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若信息元素"paging originator"为 CN,则比较其中包含的 CN UE标识类型的标识和所有其分配的 CN UE标识;

若相匹配,向信息元素"CN domain identity"所指示的高层实体发送标识及寻呼原因; 若信息元素"paging originator"为UTRAN,忽略该寻呼记录。处于连接模式的UE应: 若信息元素"paging originator"为UTRAN,比较其中包含的"Connected mode identity"和分

配的U-RNTI。 若相匹配,执行小区更新过程,设定原因为"paging response"。(见 8.3.1.2) 若信息元素"paging originator"为 CN,忽略该寻呼记录。若包含信息元素"BCCH modification info",UE应执行 8.1.1节所述动作。

8.1.3 RRC连接建立

图 6: RRC 连接建立,网络接收 RRC 连接

图 7:RRC 连接建立,网络拒绝 RRC 连接

8.1.3.1 概要 该过程是为建立一个 RRC连接。

8.1.3.2 启动UE的非接入层可能请求建立最多一个 RRC连接。在启动该过程时,UE应设置变量 PROTOCOL_ERROR_INDICATOR为 FALSE。

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根据 8.5.17,设置当前小区 SFN相关的 CFN。 UE应在上行链路 CCCH上发送一个 RRC CONNECTION REQUEST消息,重置计数器 V300,并启动定时器 T300。

UE应根据 8.5.15的规定执行从接入类到接入业务类的映射,并在接入 RACH时使用给定的接入业务类。

UE应根据更高层的指示设置信息元素"Establishment cause"。UE应根据 8.5.1节设定信息元素"Initial UE identity"。UE应设置信息元素"Protocol error indicator"为变量 PROTOCOL_ERROR_INDICATOR的值。UE应包含一个测量报告,其规定如系统信息块 11中的信息元素"Intra-frequency reporting

quantity for RACH reporting" 及 "Maximum number of reported cells on RACH"。

8.1.3.3 UTRAN对 RRC CONNECTION REQUEST消息的接收接受到 RRC CONNECTION REQUEST消息之后,UTRAN应: 在下行链路 CCCH上发送 RRC CONNECTION SETUP消息,或 在下行链路 CCCH上发送 RRC CONNECTION REJECT 消息。在 RRC CONNECTION

REJECT消息中,可能指示 UE接入其他 UTRA或其他系统。当 RRC CONNECTION REJECT消息发送后,在UTRAN中删除所有关于该UE的上下文。

8.1.3.4 UE对 RRC CONNECTION SETUP消息的接收UE应比较接收的 RRC CONNECTION SETUP消息中信息元素"Initial UE identity"的值与 UE

最近发送的 RRC CONNECTION REQUEST消息中信息元素"Initial UE identity"的值。若两值不同,UE应忽略消息剩余的部分。若两值相同,UE应: 停止定时器 T300,并根据收到的信息元素按照 8.6的规范进行动作,除了下面有另外的说明; 存贮信息元素"New U-RNTI"; 根据信息元素"RB mapping info"初始化信令链路参数; 若不包含信息元素"PRACH info (for RACH)"及"Uplink DPCH info",UE应

将系统信息中给出的 PRACH物理信道作为缺省 RACH上行链路; 若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",UE应

将系统信息中给出的辅助 CCPCH物理信道作为缺省 FACH下行链路; 根据 8.5.7节进入一个状态; 在上行链路 DCCH上发送 RRC CONNECTION SETUP COMPLETE消息,其内容符合下

文的规范; UE应包含 START[TS33.102]值,用于对每一个 CN进行加密和完整性保护;

若在 RRC CONNECTION SETUP消息的信息元素"Capability update requirement"中有要求,UE应在信息元素"UE radio capability"中包含其UTRAN特有的性能;

若在 RRC CONNECTION SETUP消息的信息元素"Capability update requirement"中有要求,UE应在信息元素"UE system specific capability"中包含其系统间性能。

当 RRC CONNECTION SETUP COMPLETE消息的成功发送被 RLC确认,UE应根据它发送给 UTRAN 的性能更新变量 UE_CAPABILITY_TRANSFERRED,设置变量 INTEGRITY_ PROTECTION_INFO中"Status"为"Not started",过程结束。

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8.1.3.5 物理信道失败或 T300超时当定时器 T300超时,或若 UE无法根据 8.5.4建立 RRC CONNECTION SETUP消息中指示的

物理信道,UE应: 检查V300的值; 若 V300 等于或小于 N300, UE 应在上行链路 CCCH 上发送一个新的 RRC

CONNECTION REQUEST 消息,重启动 T300并增加计数器 V300;根据 8.1.3.2 设定RRC CONNECTION REQUEST消息中的信息元素。

若 V300大于 N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

8.1.3.6 无效的 RRC CONNECTION SETUP消息当UE在下行链路 CCCH上接收到 RRC CONNECTION SETUP消息, 若消息中信息元素 "Initial UE identity"的值与 UE 最近发送的 RRC CONNECTION

REQUEST消息中信息元素"Initial UE identity"的值相同, 但 RRC CONNECTION SETUP 消 息 中 包 含 一 个 协 议 错 误 , 致 使 变 量

PROTOCOL_ERROR_REJECT的值被置为 TRUE,UE应执行以下对错误的处理:UE应检查V300的值,并 若 V300 等于或小于 N300, UE 应在上行链路 CCCH 上发送一个新的 RRC

CONNECTION REQUEST 消息,设置变量 PROTOCOL_ERROR_REJECT 的值为TRUE,重启动 T300 并增加计数器 V300,根据 8.1.3.2 设定 RRC CONNECTION REQUEST消息中的信息元素。

若V300大于N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

8.1.3.7 UE对 RRC CONNECTION REJECT消息的接收当 UE在下行链路 CCCH上接收到 RRC CONNECTION REJECT消息,应将接收到的 RRC

CONNECTION REJECT 消息中信息元素 "Initial UE identity"的值与 UE 最近发送的 RRC CONNECTION REQUEST消息中信息元素"Initial UE identity"的值进行比较:

若两值不同,UE应忽略消息剩余的部分。 若两值相同,UE应停止定时器 T300,并执行以下操作:若信息元素"wait time" <> '0',并且若存在信息元素"frequency info" 若 V300 等于或小于 N300,UE应在指定的 UTRA载频上启动小区选择。选择并驻

留一个小区后,UE应重新启动 RRC连接建立过程。UE应延迟小区重选到原来的载频,直到信息元素"wait time"中所述的时间。

若在指定 UTRA载频上的小区选择失败,UE应等待信息元素"wait time"中的时间,并在原服务小区上行链路 CCCH上发送一个新的 RRC CONNECTION REQUEST 消息,重新启动定时器 T300 并增加计数器 V300 的值,根据 8.1.3.2 设置 RRC CONNECTION REQUEST 消息中的信息元素。

若 V300大于 N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

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若存在信息元素"inter-system info" 若 V300 等于或小于 N300,UE应在指定的系统启动小区选择。选择并驻留一个小区后,UE应重新启动 RRC连接建立过程。UE应延迟小区重选回到原系统,直到信息元素"wait time"中所述的时间结束。

若在指定系统的小区选择失败,UE应等待信息元素"wait time"中的时间,并在上行链路 CCCH上发送一个新的 RRC CONNECTION REQUEST 消息,重启动 T300并增加计数器 V300,应根据 8.1.3.2设置 RRC CONNECTION REQUEST 消息中的信息元素。

若 V300大于 N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

若不存在信息元素"frequency info"和"inter-system info" 若 V300 等于或小于 N300, UE应等待信息元素"wait time"中的时间,并在上行链路 CCCH上发送一个新的 RRC CONNECTION REQUEST 消息,重新启动定时器T300并增加计数器 V300的值,根据 8.1.3.2设置 RRC CONNECTION REQUEST 消息中的信息元素。

若 V300大于 N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

若信息元素"wait time" = '0',UE应: 若进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

8.1.3.8 无效的 RRC CONNECTION REJECT消息 若UE收到的 RRC CONNECTION REJECT消息中信息元素"Initial UE identity"的值与UE最近发送的 RRC CONNECTION REQUEST 消息中信息元素 "Initial UE identity"的值相同,但 RRC CONNECTION REJECT消息包含一个协议错误,致使变量 PROTOCOL_ERROR_REJECT 的值被置为 TRUE,UE应执行以下错误处理操作:若信息元素"wait time" is <> 0,且 若 V300 等于或小于 N300, UE应等待信息元素"wait time"中的时间,并在上行链路

CCCH上发送一个新的 RRC CONNECTION REQUEST 消息,重新启动定时器 T300并增加计数器 V300的值。UE应根据 8.1.3.2设置 RRC CONNECTION REQUEST 消息中的信息元素。

若V300大于N300,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

若信息元素"wait time" = '0',UE应: 若进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

8.1.3.9 UTRAN对 RRC CONNECTION SETUP COMPLETE消息的接收当UTRAN收到 RRC CONNECTION SETUP COMPLETE消息,在UTRAN侧过程结束。

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8.1.4 RRC连接释放

图 8:RRC 连接释放过程,在 DCCH 上

图 8:RRC 连接释放过程,在 CCCH 上

8.1.4.1 概述 该过程为释放 RRC连接,包括 UE和UTRAN之间的信令链路和全部无线承载。所有建立的信令流和信令连接将被释放。

8.1.4.2 启动当 UE处于 CELL_DCH或 CELL_FACH状态,UTRAN可能通过发送一个使用非确认模式的

RRC CONNECTION RELEASE消息,在任何时间启动一个 RRC连接释放。当 UTRAN发送一个RRC CONNECTION RELEASE消息作为 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息 ( 8.1.5),CELL UPDATE消息(8.3.1)或 URA UPDATE消息(8.3.2)的响应时,应使用下行链路CCCH发送。其他的情况应使用下行链路DCCH,即使下行链路 CCCH也可能被使用。

UTRAN可能发送多个 RRC CONNECTION RELEASE消息,以增加 UE正确接收消息的几率。重发消息的数目及消息间的时间间隔是一个网络选项。

8.1.4.3 UE对 RRC CONNECTION RELEASE消息的接收UE在 CELL_DCH和 CELL_FACH状态下应能接收 RRC CONNECTION RELEASE消息,并

对其进行操作。而且该过程能中断上述状态下UE的任何正在进行的过程。当UE收到第一个 RRC CONNECTION RELEASE消息,应 当处于 CELL_DCH状态:

使用信息元素"Number of RRC Message Transmissions"初始化计数器 V308的值,它

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指示了发送 RRC CONNECTION RELEASE COMPLETE消息的次数; 在 DCCH 上使用非确认模式向 UTRAN 发送 RRC CONNECTION RELEASE COMPLETE消息; 启动定时器 T308。

当处于 CELL_FACH状态: 在 DCCH 上 使 用 确 认 模 式 向 UTRAN 发 送 RRC CONNECTION RELEASE COMPLETE消息。

当处于 CELL_FACH状态,并且若 RRC CONNECTION RELEASE消息在 CCCH上接收,UE应不发送 RRC CONNECTION RELEASE COMPLETE消息。

UE随后收到的任何 RRC CONNECTION RELEASE消息应被忽略。UE应给非接入层一个释放指示。UE 应向非接入层指示释放全部当前的信令流和无线接入承载,并将从接收的 RRC

CONNECTION RELEASE消息中的信息元素"Release Cause"值传递给非接入层。从向非接入层指示释放的时间,直到 UE进入空闲状态,任何非接入层建立一个新的 RRC连

接的请求都应排队。新的请求只能在进入空闲模式之后才能处理。当处于 CELL_FACH状态,并且若 RRC CONNECTION RELEASE消息在 CCCH上接收,UE

应释放所有的无线资源,进入空闲模式,并且在 UE侧过程结束。UE进入空闲模式的动作见8.5.2。

8.1.4.4 无效的 RRC CONNECTION RELEASE消息若 RRC CONNECTION RELEASE 消 息 包 含 一 个 协 议 错 误 , 致 使 变 量

PROTOCOL_ERROR_REJECT的值被置为 TRUE,并且若 PROTOCOL_ERROR_INFORMATION中的"Protocol error cause"设为除了"ASN.1 voilation or encoding error"之外的任何原因,UE应执行以下错误处理操作:

忽略造成错误的所有信息元素,并根据 8.1.4.3认为 RRC CONNECTION RELEASE消息的其余部分正常;

若 RRC CONNECTION RELEASE消息是在DCCH上收到的: 将 信 息 元 素 "Error indication" 包 含 在 消 息 RRC CONNECTION RELEASE

COMPLETE中;以及 信息元素"Failure cause",设为原因值"Protocol error"; 信 息 元 素 "Protocol error information" , 设 为 变 量

PROTOCOL_ERROR_INFORMATION的值。8.1.4.5 定时器 T308超时,非确认模式传输当处于 CELL_DCH状态且 T308超时,UE应将 V308 减一。若 V308等于或小于 N308,UE

应重发 RRC CONNECTION RELEASE COMPLETE消息。若 V308大于 N308,UE应释放全部无线资源,进入空闲模式,在UE侧过程结束。

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8.1.4.6成功发送 RRC CONNECTION RELEASE COMPLETE消息,确认模式传输当使用确认模式且 RLC已确认 RRC CONNECTION RELEASE COMPLETE消息的发送,应释

放全部无线资源,进入空闲模式,在UE侧过程结束。8.1.4.7 UTRAN对 RRC CONNECTION RELEASE COMPLETE消息的接收当 UTRAN接收到 RRC CONNECTION RELEASE COMPLETE消息,释放全部 UE专用资源,

UTRAN侧过程结束。8.1.4.8 状态不成功发送 RRC CONNECTION RELEASE COMPLETE消息,确认模式传输当使用确认模式传输且没有成功发送 RRC CONNECTION RELEASE COMPLETE消息,应释

放全部无线资源,进入空闲模式,在UE侧过程结束。8.1.4.9 在 CELL_DCT状态UTRAN检测到专用物理信道丢失若释放由 CELL_DCT 状态下执行,并且 UTRAN 根据 8.5.6 检测到专用物理信道丢 失,

UTRAN可能释放全部UE专用资源,甚至没有收到 RRC CONNECTION RELEASE COMPLETE消息。8.1.4.10 UTRAN没有收到 RRC CONNECTION RELEASE COMPLETE消息若 UTRAN没有收到 RRC CONNECTION RELEASE COMPLETE消息,应释放全部 UE专用

资源。

8.1.5 RRC 连接重建立

图 9:RRC 连接重建立,成功实例

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图 10:RRC 连接重建立,失败实例

8.1.5.1 概述 该过程是对一个丢失的 RRC连接进行的操作。

8.1.5.2 启动当一个 UE在 CELL_DCH状态下丢失无线连接,例如由于无线链路失败(见 8.5.6),检测到

RLC不可恢复的错误(RESET PDU重发数量达到Max DAT的值并且没有收到 ACK),UE可能通过转移到 CELL_FACH状态启动一个新的小区选择。若定时器 T314=0 和 T315=0,UE应: 进入空闲模式。过程结束,并向非接入层指示连接失败。其他操作与 UE从连接模式进

入空闲模式的操作相同,具体见 8.5.2。若定时器 T314=0,UE应: 释放本地所有与 T314相关的无线承载,除了信令无线承载。向非接入层发送指示。若定时器 T315=0,UE应: 释放本地所有与 T315相关的无线承载。向非接入层发送指示。若 T314>0,UE应重新启动定时器 T314。若 T315>0,UE应重新启动定时器 T315。一旦启动该过程,UE应设置变量 PROTOCOL_ERROR_INDICATOR为 FALSE。当UE检测到在信令链路的 AM RLC实体中不可恢复的错误(RESET PDU重发数量达到Max

DAT的值并且没有收到 ACK),UE应设置信息元素"AM_RLC error indication (for c-plane)"。当UE 检测到在用户平面链路的 AM RLC 实体中不可恢复的错误,UE 应设置 "AM_RLC error indication (for u-plane)"。

UE应在 RRC CONNECTION RE-ESTABISHMENT REQUEST消息中包含来自每个 CN域的START值。

UE应根据 8.5.17设置当前小区 SFN相关的 CFN。8.1.5.3 "in service area"的检测若UE检测到"in service area"(见 8.5.9),UE应: 设置信息元素"U-RNTI"值为UE内存贮的值。 若变量 PROTOCOL_ERROR_INDICATOR的值为 TRUE,设置信息元素"Protocol error

indicator"为 TRUE,并包含设置为变量 PROTOCOL_ERROR_INFORMATION的值的信息元素"Protocol error information"。

若变量 PROTOCOL_ERROR_INDICATOR的值为 FALSE,设置信息元素"Protocol error

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indicator" 为 FALSE。 根据系统信息块 12中信息元素"Intra-frequency reporting quantity for RACH reporting" 及

"Maximum number of reported cells on RACH",设置包含一个信息元素"Measured Results on RACH"。

在上行链路 CCCH上发送 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息并启动定时器 T301。

8.1.5.4 UTRAN对 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息的接收

UTRAN应 启动 RRC连接重建立过程并在映射为 FACH的下行链路 DCCH或 CCCH上发送 RRC

CONNECTION RE-ESTABLISHMENT消息,或 在映射为 FACH的下行链路 CCCH上发送 RRC CONNECTION RELEASE消息,启动

RRC 连接释放过程。当 UTRAN检测到 AM RLC不可恢复的错误(RESET PDU重传数量达到Max DAT的值并且

没有收到 ACK),UTRAN将等待 UE发送 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息,当 UTRAN收到该消息时,通过发送 RRC CONNECTION RE-ESTABLISHMENT消息命令UE重置所有的AM RLC实体。8.1.5.5 UE对 RRC CONNECTION RE-ESTABLISHMENT消息的接收当接收到 RRC CONNECTION RE-ESTABLISHMENT消息,UE应停止定时器 T301,根据 8.6

的规定使用 RRC CONNECTION RE-ESTABLISHMENT消息的内容,除了下文另有规定: 对每个配置的无线承载,根据信息元素"RB mapping info",使用适用于传输信道所用的

映射选项; 为使用适当的传输信道,若有必要,配置MAC复用; 在MAC选择 TFC时,使用MAC逻辑信道优先级。若不包含信息元素"PRACH info"及 "Uplink DPCH info",UE应: 应使用系统信息块类型 6中给定的 PRACH物理信道作为上行链路缺省信道。若系统信息

块类型 6在小区中不存在,UE应使用系统信息块类型 5中给定的 PRACH物理信道作为上行链路缺省信道。

若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",UE应: 开始接收系统信息给定的辅助 CCPCH物理信道。UE应选择适用于所用物理信道类型的传输信道。若 UE中没有为该传输信道包含及预先存贮

信息元素"TFS",UE应: 使用系统信息给定的 TFS。若存贮的 TFS与物理信道都不兼容,UE应: 删除存贮的 TFS,并使用系统信息给定的 TFS。若包含信息元素"New C-RNTI",UE应: 在当前小区内使用 RACH、FACH和 CPCH公共传输信道时采用该 C-RNTI。若包含信息元素"New U-RNTI",UE应更新它的标识。若包含信息元素"CN domain identity" 和 "NAS system information",UE应: 向信息元素"CN domain identity"指示的非接入层实体发送"NAS system information"的内容。

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UE应根据 8.5.7进入某一状态。在成功的状态转移之后,UE应: 检查是否设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO。若是,则

包含信息元素"Radio bearer uplink ciphering activation time info",并设置为该变量的值; 在上行链路 DCCH上使用 AM RLC发送一个 RRC CONNECTION RE-ESTABLISHMENT

COMPLETE消息。当 RLC证实了 RRC CONNECTION RE-ESTABLISHMENT COMPLETE 消息的成功发送后

UE应清除变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,过程结束。8.1.5.6 T314超时当定时器 T314超时,UE应: 若定时器 T301 运行,

继续等待UTRAN的响应消息, 若定时器 T301没有运行,定时器 T315 运行,

释放本地全部与 T314有关的无线承载(除了信令无线承载)。向非接入层发送指示。 若定时器 T301和 T315都没有运行,

进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

8.1.5.7 T315超时 当定时器 T315超时,UE应:

若定时器 T301 运行, 继续等待UTRAN的响应消息,

若定时器 T301没有运行,定时器 T314 运行, 释放本地全部与 T315有关的无线承载(除了信令无线承载)。向非接入层发送指示。

若定时器 T301和 T314都没有运行, 进入空闲模式。过程结束,并向非接入层指示连接失败。UE由连接模式进入空闲模

式的其他动作如 8.5.2所述。8.1.5.8 无效的 RRC CONNECTION RE-ESTABLISHMENT消息若 UE收到的 RRC CONNECTION RE-ESTABLISHMENT消息中包含一个协议错误,致使变

量 PROTOCOL_ERROR_REJECT为 TRUE,UE应执行过程特定的出错处理:UE应检查V301的值,并 若 V301 等于或小于 N301, UE 应设置变量 PROTOCOL_ERROR_INDICATOR 为

TRUE,在上行链路 CCCH上发送一个新的 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息,重新启动定时器 T301并增加计数器 V301的值。UE应根据 8.1.5.2设置RRC CONNECTION RE-ESTABLISHMENT REQUEST消息中的信息元素;

若 V301大于 N301,UE应进入空闲模式。过程结束并向非接入层指示连接失败。UE由连接模式进入空闲模式的其他动作如 8.5.2所述。

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8.1.5.9 T301超时或DPCH 失败当 T301超时,或UE无法建立 RRC CONNECTION RE-ESTABLISHMENT消息中指示的 RRC

连接,UE应:若定时器 T314和 T315没有运行, 进入空闲模式。过程结束并向非接入层指示连接失败。UE由连接模式进入空闲模式的其

他动作如 5.2所述。若在 T301最后的周期并且 T315 仍运行时,定时器 T314超时, 释放本地全部与 T314相关的无线承载(除了信令无线承载),并向非接入层发送指示。若在 T301最后的周期并且 T314 仍运行时,定时器 T315超时, 释放本地全部与 T315相关的无线承载(除了信令无线承载),并向非接入层发送指示。UE应重新检查是否仍在"in service area" (见 8.5.9)。若UE 仍检测到在"in service area",UE应执行过程指定的错误处理: 检查V301的值; 若V301小于或等于N301:

根据 8.1.5.3设置 RRC CONNECTION RE-ESTABLISHMENT REQUEST 消息中的信息元素;

在上行链路 CCCH 上发送一个新的 RRC CONNECTION RE-ESTABLISHMENT REQUEST消息并重启动定时器 T301。

若V301大于N301: 进入空闲模式。过程结束,并向接入层指示一个连接失败。进入空闲模式的其他操作见 8.5.2。

若UE没有检测到"in service area",UE应: 继续搜索"in service area"。

8.1.5.10 UTRAN对 RRC CONNECTION RE-ESTQABLISHMENT COMPLETE消息的接收 当 UTRAN收到 RRC CONNECTION RE-ESTQABLISHMENT COMPLETE消息,在 UTRAN侧过程结束。

8.1.6 UE性能信息的传输

图 11:UE 性能信息的传输,正常流程

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8.1.6.1 概述 UE使用UE性能更新过程向UTRAN传递UE特殊的性能信息。8.1.6.2 启动

UE在以下情况下应启动UE性能更新过程: UE从UTRAN收到UE CAPABILITY ENQUIRY消息后; 若在 RRC连接期间,存贮在变量 UE_CAPABILITY_TRANSFERRED中的 UE性能有变化。

UE 在上行链路 DCCH 上发送 UE CAPABILITY INFORMATION 消息,使用非确认模式RLC,启动定时器 T304并重置计数器V304。

若为响应 UE CAPABILITY ENQUIRY 消息而发送 UE CAPABILITY INFORMATION 消息,UE应:

根据 UE CAPABILITY ENQUIRY消息中信息元素"Capability update requirement"的要求,在信息元素"UE radio capability"中包含特定UTRAN的UE性能信息元素;

根据 UE CAPABILITY ENQUIRY消息中信息元素"Capability update requirement"的要求,在信息元素"UE system specific capability"包含一个或多个系统间类标记。

若 UE CAPBILITY INFORMATION消息是由于存贮在变量 UE_CAPBILITY_TRANSFERRED中一个或更多UE能力的改变,UE应在UE CAPBILITY INFORMATION消息中包含与改变的能力相关的信息元素。

8.1.6.3 UTRAN对UE CAPABILITY INFORMATION消息的接收 在收到 UE CAPABILITY INFORMATION 消息后,UTRAN应在下行链路 DCCH上发送 UE CAPABILITY INFORMATIONCONFIRM 消息,使用确认模式或非确认模式 RLC。当 UE CAPABILITY INFORMATIONCONFIRM消息发送后,过程完成。

8.1.6.4 UE对UE CAPABILITY INFORMATIONCONFIRM消息的接收 在收到UE CAPABILITY INFORMATIONCONFIRM消息,UE应停止定时器 T304,并根据在当前 RRC连接中传输给UTRAN的UE性能更新其变量UE_CAPABILITY_TRANSFERRED。8.1.6.5 无效的UE CAPABILITY INFORMATION CONFIRM消息若UE收到一个 UE CAPABILITY INFORMATION CONFIRM消息,其中包含一个协议错误致

使变量 PROTOCOL_ERROR_REJECT为 TRUE,UE应: 停止定时器 T314; 在上行链路 DCCH 上使用 AM RLC 发送一个 RRC STATUS 消息,并包含信息元素"Protocol error information",其值设置为变量 PROTOCOL_ERROR_INFORMATION的值;

当 RLC确认 RRC STATUS消息的成功发送后,UE应重新启动定时器 T304并继续正常

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的操作,如同无效的UE CAPABILITY INFORMATION CONFIRM消息没有收到一样。8.1.6.6 T304超时

定时器 T304超时,UE应检查V304的值 若 V304 小 于 或 等 于 N304 的 值 , UE 应 重 发 送 UE CAPABILITY

INFORMATIONCONFIRM消息,重新启动定时器 T304,增加计数器V304; 若V304大于N304,UE认为产生无线链路失败,并启动 RRC 连接重建立过程。

8.1.7 UE性能询问

图 12: UE 性能询问过程,正常流程

8.1.7.1 概述 UE性能询问用于请求UE发送与它所支持的任何无线接入网相关的性能信息。8.1.7.2 启动

UE性能询问过程由 UTRAN通过在 DCCH上使用确认模式或非确认模式 RLC 发送 UE CAPABILITY ENQUIRY消息启动。8.1.7.3 UE对UE CAPABILITY ENQUIRY消息的接收 收到UE CAPABILITY ENQUIRY消息后,UE应启动UE性能信息传输过程,如 1.6所述。8.1.7.4 无效的UE CAPABILITY ENQUIRY消息

若 UE 收到一个 UE CAPABILITY ENQUIRY 消息,其中包含一个协议错误,致使变量PROTOCOL_ERROR_REJECT为 TRUE,UE应:

在上行链路 DCCH 上使用 AM RLC 发送一个 RRC STATUS 消息,包含信息元素"Protocol error information",其内容设置为变量 PROTOCOL_ERROR_INFORMATION的值;

当 RLC确认 RRC STATUS消息的发送后,UE应继续正常操作,如同没有收到无效的

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UE CAPABILITY ENQUIRY 消息一样。8.1.8 初始直接传输

图 13:在上行链路上的初始直接传输,正常流程

8.1.8.1 概述 初始直接传输过程用于在上行链路上建立信令连接和信令流。也用于在无线接口上传送初始的高层消息。一个信令连接由一个或几个信令流组成。该过程要求建立一个新的流,并且若该流所选路由

不存在信令连接,则依据路由选择触发一个信令连接的建立。8.1.8.2 UE内启动初始直接传输过程在UE侧,当高层要求初始化一个信令流,UE启动初始直接传输过程。该请求可能包含一个

传输 NAS消息的请求。若在别处没有其他说明,UE也可以在另一过程进行时启动初始直接传输过程,在这种情况下,该过程的状态不应受到影响。UE应在上行链路 DCCH使用 RB3上的 RLC确认模式发送 INITIAL DIRECT TRANSFER消息。系统信息块类型 1和系统信息块类型 13中包含的 CN NAS信息可被 UE的高层用来进行信息

元素"CN domain identity"值的选择。若此信息存在,UE 就用该信息以及用户选择和订阅的信息来设置信息元素"CN Domain Identity",此信息元素用于指示 NAS消息发送的目标 CN节点。若 UE上层没有设定信息元素"CN domain identity"的值,RRC应将其设为"don't care"。另外,UE应设定IE "service descriptor"和"flow identifier"为UE分配给该特殊流的值。 若 INITIAL DIRECT TRANSFER消息是回应 PAGING TYPE 1消息,UE 的高层应设"CN domain identity"的值为相应寻呼消息指示值。UE应设"service descriptor"和"flow identifier"的值为该特殊会话分配的值。在 CELL_FACH状态,若系统信息块 12中的信息元素"Intra-frequency reporting quantity for

RACH reporting"和"Maximum number of reported cells on RACH"中要求进行 RACH测量报告,UE应在 INITIAL DIRECT TRANSFER消息中包含信息元素"Measured results on RACH"。(若系统信息块 12没有广播,则在系统信息块 11中)当 INITIAL DIRECT TRANSFER消息的发送被 RLC确认后,过程结束。

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8.1.8.3 UTRAN对 INITIAL DIRECT TRANSFER消息的接收 在接收 INITIAL DIRECT TRANSFER消息时,使用信息元素"CN Domain Identity"和"Service descriptor" 为 NAS消息选择路由。UTRAN 应当为该特殊流使用 UE上下文来存贮信息元素"Flow Identifier"的内容。 若到所选择的节点不存在信令连接,则应建立一个信令连接 若消息中有信息元素"Measured results on RACH",UTRAN应提取其内容用于无线资源控制。当UTRAN收到 INITIAL DIRECT TRANSFER消息时,不应影响其他任何正在进行的 RRC过

程的状态,除非另有说明。8.1.9 下行链路直接传输

图 14a:下行链路直接传输,正常流程

8.1.9.1 概述 下行链路直接传输过程用于在下行链路无线接口传输NAS消息。

8.1.9.2 UTRAN中下行链路直接传输过程的启动 在 UTRAN中,当高层在初始信令连接建立后要求传输 NAS消息时,启动直接传输过程。UTRAN启动该过程时应不影响正在进行的其他 RRC过程的状态。UTRAN应以 RB3或 RB4上的AM RLC,在下行链路DCCH上发送DOWNLINK DIRECT TRANSFER消息。RB的选择如下:

若非接入层对该消息指示"low priority",当 RB4有效时应选择 RB4。特定的,对基于GSM-MAP的 CN,当要求"SAPI 3"时应选择 RB4。当 RB4无效时选择 RB3。

若非接入层对该消息指示"high priority",应选择 RB3。特定的,对基于 GSM-MAP的CN,当要求"SAPI 0"时应选择 RB3。

UTRAN应设置信息元素"CN Domain Identity"指示NAS消息来源的 CN域。

8.1.9.3 UE对DOWNLINK DIRECT TRANSFER消息的接收当收到DOWNLINK DIRECT TRANSFER消息后,UE应使用信息元素"CN Domain Identity",

向正确的高层实体发送高层 PDU的内容和信息元素"CN Domain Identity"的值。

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当 UE收到 DOWNLINK DIRECT TRANSFER消息,不应影响其他任何正在进行的 RRC过程的状态,除非另有说明。8.1.9.4 无效的DOWNLINK DIRECT TRANSFER消息

若UE收到一个 DOWNLINK DIRECT TRANSFER消息,其中包含一个协议错误,致使变量PROTOCOL_ERROR_REJECT为 TRUE,UE应:

在上行链路 DCCH 上使用 AM RLC 发送一个 RRC STATUS 消息,并包含信息元素"Protocol error information",内容设置为变量 PROTOCOL_ERROR_INFORMATION的值。

当 RLC确认 RRC STATUS消息的发送后,UE应继续正常的操作,如同没有收到无效的DOWNLINK DIRECT TRANSFER消息一样。

8.1.10 上行链路直接传输

图 14b :上行链路直接传输,正常流程

8.1.10.1 概述 上行链路直接传输用于在上行链路无线接口传输全部随后的属于一个信令流的高层(NAS)消息。

8.1.10.2 UE中上行链路直接传输过程的启动 在UE中,当高层要求传输 NAS消息时启动上行链路直接传输过程,此前,应当已经建立了初始信令连接并且提供了说明该 NAS消息属于一个正在进行的信令流的高层指示。UE可以在另一过程进行时启动上行链路直接传输过程,在这种情况下,那个过程的状态不应受到影响,除非另有说明。UE 应以 RB3 或 RB4 上的 AM RLC,在上行链路 DCCH 上发送 UPLINK DIRECT TRANSFER消息。RB的选择如下:

若非接入层对该消息指示"low priority",当 RB4有效时应选择 RB4。特定的,对基于GSM-MAP的 CN,当要求"SAPI 3"时应选择 RB4,若 RB4无效选择 RB3。

若非接入层对该消息指示"high priority",应选择 RB3。对基于 GSM-MAP的 CN,当要求"SAPI 0"时应选择 RB3。

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UE应设定信息元素"Flow Identifier"的值为发送 INITIAL DIRECT TRANSFER消息时为该特殊信令流分配的值。

8.1.10.3 UTRAN对UPLINK DIRECT TRANSFER消息的接收 收到 UPLINK DIRECT TRANSFER消息后,应使用信息元素"Flow Identifier"的值为NAS消息选择路由。 若消息中存在信息元素"Measured results on RACH ",UTRAN应提取其内容用于无线资源控制。当UTRAN收到 UPLINK DIRECT TRANSFER消息时,不应影响其他任何正在进行的 RRC过

程的状态,除非另有说明。8.1.11 UE专用寻呼

图 15:UE 专用寻呼

8.1.11.1 概述该进程用于向处于连接模式 CELL_FACH及 CELL_DCH状态的 UE传送专用寻呼信息。网络

高层可能要求启动寻呼。8.1.11.2 启动对处于 CELL_DCH或 CELL_FACH状态的 UE,UTRAN通过在 DCCH上使用 AM RLC发送

PAGING TYPE 2消息启动该过程。UTRAN可以在进行其他过程时发送 PAGING TYPE 2消息,同时那个过程的状态不应受到影响,除非另有说明。8.1.11.3 UE对 PAGING TYPE 2消息的接收

UE收到 PAGING TYPE 2消息时,也应不影响其他正在进行的 RRC过程的状态,除非另有说明。

UE应指示收到一个寻呼消息,并将寻呼原因和寻呼记录类型标识转送到 CN域标识指明的高层实体。

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8.1.11.4 无效的 PAGING TYPE 2消息若UE收到 PAGING TYPE 2消息,其中包含协议错误致使变量 PROTOCOL_ERROR_REJECT

为 TRUE,UE应: 在上行链路DCCH上使用AM RLC发送 RRC STATUS消息,包含信息元素"Protocol error

information",其内容设置为变量 PROTOCOL_ERROR_INFORMATION的值。 当 RLC确认 RRC STATUS消息的发送后,UE应继续正常的操作,如同没有收到无效的

PAGING TYPE 2消息一样。8.1.12 安全模式控制

图 16:安全模式控制过程

8.1.12.1 概述 该过程用于在信令链路和任何无线承载上,触发加密的停止或开始,或命令使用新的加密配置的加密重启。 也可用于对上行链路和下行链路信令启动完整性保护或修改完整性保护配置。8.1.12.2 启动

8.1.12.2.1 加密配置改变UTRAN使用旧的加密配置,在确认模式 RLC的下行链路 DCCH上发送 SECURITY MODE

COMMAND消息,以停止或开始/重新开始加密。在发送 SECURITY MODE COMMAND之前,对于该消息中信息元素"CN Domain Identity"所

指示的 CN域,UTRAN应:- 暂停所有使用 RLC-AM和 RLC-UM的无线承载;- 暂停所有使用 RLC-AM和 RLC-UM的信令无线承载,除了用来在 RLC-AM下行链路DCCH

上发送 SECURITY MODE COMMAND消息的信令无线承载;

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- 对于发送 SECURITY MODE COMMAND消息的信令无线承载,设置信息元素"Ciphering mode info"中的信息元素 "Radio bearer downlink ciphering activation time info"中的 "RLC send sequence number",此时,应使用新的加密配置;

- 对于每个暂停的无线承载和信令无线承载,设置信息元素"Ciphering mode info"中的信息元素"Radio bearer downlink ciphering activation time info"中的"RLC send sequence number",此时,应使用新的加密配置。无线承载和信令无线承载在暂停期间应不发送序列号大于或等于信息元素 "Radio bearer

downlink ciphering activation time info"中的数的 RLC PDU。当发送的 SECURITY MODE COMMAND消息被 RLC证实,UTRAN应恢复所有被暂停的使

用 RLC-AM或 RLC-UM的无线承载:若 RLC PDU中的 RLC序列号小于信息元素"Radio bearer downlink ciphering activation time info"指示的 RLC序列号,使用旧的加密配置进行传输;若 RLC PDU中的 RLC序列号大于或等于信息元素"Radio bearer downlink ciphering activation time info"指示的 RLC序列号,则使用新的加密配置进行该 RLC PDU的传输。8.1.12.2.2 完整性保护配置改变为开始或修改完整性保护,UTRAN使用新的完整性保护配置在 AM RLC的下行链路 DCCH

上发送一个 SECURITY MODE COMMAND消息。

8.1.12.3 UE对 SECURITY MODE COMMAND消息的接收当收到 SECURITY MODE COMMAND消息,UE对收到的信息元素应根据 8.6节执行操作。若信息元素"security capability"与变量UE_CAPABILITY_TRANSFERRED的指示相同,UE应:暂停(从大于或等于每个无线承载的下行链路加密激活时间的序列号开始)SECURITY

MODE COMMAND消息的信息元素"CN domain identity"指示的属于 CN域的所有使用 RLC-AM或RLC-UM的无线承载和信令无线承载,除了用来在 RLC-AM下行链路 DCCH上发送 SECURITY MODE COMMAND消息的信令无线承载;若设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,UE 应包含信息元

素"Radio bearer uplink ciphering activation time info",并设置为该变量值。当无线承载和无线信令承载被暂停后,UE应在 AM RLC的上行链路 DCCH上使用使用旧的

加密和新的完整性保护配置发送 SECURITY MODE COMPLETE消息;当发送 SECURITY MODE COMPLETE消息被 RLC证实,UE应恢复任何被暂停的映射在

RLC-UM 或 RLC-AM 上 的 无 线 承 载 的 数 据 传 输 , 并 清 除 变 量RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,过程结束。若一个 RLC 重置发生在SECURITY MODE COMPLETE消息被 RLC证实之后,并且新的加密配置激活时间尚未结束,UE中的 RRC应在 RLC重置之后,在 SECURITY MODE COMMAND消息所指示的激活时间配置 UE中的 RLC。对于信息元素"CN domain identity"指示的 CN域所使用的无线承载及信令无线承载,UE应:若收到的一个新的完整性保护密钥,应使用这个新的密钥,并对下行链路,在信息元

素"Integrity protection mode info"的"Downlink integrity protection activation info"中指示的 RRC序列中,将下行链路 COUNT-I的 HFN成分设置为 0;对上行链路,UE应开始使用新的密钥,并在信息元素"Integrity protection mode info"的"Uplink integrity protection activation info"中指示的 RRC序列中,将上行链路 COUNT-I的HFN成分设置为 0;若一个新的加密密钥可用,应使用这个新的密钥,并对下行链路,在信息元素 "Integrity

protection mode info"的"Radio bearer downlink ciphering activation time info"中指示的 RLC序列中,将下行链路 COUNT-C的HFN成分设置为 0;对上行链路,UE应开始使用新的密钥,并在信息元

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素"Integrity protection mode info"的"Radio bearer uplink ciphering activation time info"中指示的 RLC序列中,将上行链路 COUNT-C的HFN成分设置为 0。若信息元素"security capability"与变量 UE_CAPABILITY_TRANSFERRED的指示不同,UE应

释放所有的无线资源,进入空闲模式,在UE侧过程结束。8.1.12.4 密码激活时间过短若信息元素 "Ciphering mode info"中的 "Activation time for DPCH"或 "Radio bearer downlink

ciphering activation time info"指定的时间已过,UE应立即转换到新的加密配置。8.1.12.5 UTRAN对 SECURITY MODE COMPLETE消息的接收

UTRAN应使用新的完整性保护配置对收到的 SECURITY MODE COMPLETE消息及随后所有的消息执行完整性保护。当 UTRAN收到一个 SECURITY MODE COMPLETE消息并成功执行完整性保护后,对使用 RLC-AM或 RLC-UM的无线承载,UTRAN应使用:

对收到的 RLC PDU使用旧的加密配置,若其 RLC序列号小于 UE发送的信息元素"Radio bearer uplink ciphering activation time info"指示的 RLC序列号;

对收到的 RLC PDU使用新的加密配置,若其 RLC序列号大于或等于 UE发送的信息元素"Radio bearer uplink ciphering activation time info"指示的 RLC序列号;

若一个 RLC 重置发生在 UTRAN收到 SECURITY MODE COMPLETE消息之后,并且新的加密配置激活时间尚未结束,UTRAN中的 RRC应在 RLC重置之后,使用新的加密密钥和激活时间配置UTRAN中的 RLC。

对使用 RLC-TM的无线承载,UTRAN应使用: 在信息元素"Ciphering mode info"的"Activation time for DPCH"中指示的 CFN中,对收到

的 RLC PDU使用新的加密配置。过程结束。

8.1.12.6 无效的 SECURITY MODE COMPLETE消息若 SECURITY MODE COMPLETE 消 息 包 含 协 议 错 误 , 致 使 变 量

PROTOCOL_ERROR_REJECT设置为 TRUE,UE应: 在上行链路DCCH上使用AM RLC发送 SECURITY MODE FAILURE消息; 将信息元素"failure cause"设为原因值"protocol error"; 包 含 信 息 元 素 "Protocol error information" , 其 内 容 为 变 量

PROTOCOL_ERROR_INFORMATION的值; 当 RLC确认 SECURITY MODE FAILURE消息的成功发送后,UE应继续正常的操作,如

同没有收到无效的 SECURITY MODE COMMAND消息一样。

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8.1.13 信令流释放过程

图 17:信令流释放过程,正常流程

8.1.13.1 概述该进程用于通知 UE释放一个或更多正在进行的信令连接的信令流。 该进程不启动 RRC连接

的释放。

8.1.13.2 UTRAN中 SIGNALLING CONNECTION RELEASE的启动UTRAN可能启动一个或更多信令流的释放。UTRAN在 DCCH上使用确认模式 RLC发送 SIGNALLING FLOW RELEASE消息,以启动该

过程。UTRAN使用信息元素 "Flow Identifier"指示被释放的信令流。

8.1.13.3 UE对 SIGNALLING FLOW RELEASE的接收 在接收 SIGNALLING FLOW RELEASE消息后,UE应向相应的高层实体表明释放消息元素 "Flow Identifier"的值指示的全部信令流。8.1.13.4 无效的 SIGNALLING FLOW RELEASE消息若 UE 收到的 SIGNALLING FLOW RELEASE 消息中包含一个协议错误,致使变量

PROTOCOL_ERROR_REJECT为 TRUE,UE应: 在下行链路 DCCH上使用 AM RLC发送 RRC STATUS消息,并包含信息元素"Protocol

error information",其内容设置为变量 PROTOCOL_ERROR_INFORMATION的值。 当 RLC确认 RRC STATUS消息的成功发送后,UE应继续正常的操作,如同没有收到无

效的 SIGNALLING CONNECTION RELEASE一样。

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8.1.14信令连接释放请求过程

图 18:信令连接释放请求过程,正常流程

8.1.14.1概述UE使用信令连接释放请求过程请求UTRAN释放它的一个信令连接。该过程可能依次启动信

令流释放过程或 RRC连接释放过程。8.1.14.2启动若UE收到高层的请求,应启动信令连接释放请求过程。UE在DCCH上使用AM RLC发送一个 SIGNALLING CONNECTION RELEASE REQUEST 消

息,以启动该过程。当 RLC确认 SIGNALLING CONNECTION RELEASE REQUEST 消息的成功发送后,UE应删除被释放的流标识。信息元素"Flow Identifier"指示UTRAN内请求释放的信令流标识。

8.1.14.3 UTRAN对 SIGNALLING CONNECTION RELEASE REQUEST 的接收当收到 SIGNALLING CONNECTION RELEASE REQUEST 消息时,若 UE 请求释放其全部剩

余信令连接,UTRAN可能启动 RRC连接释放过程。若没有请求释放全部剩余信令连接,UTRAN应启动信令流释放过程。在后一种情况,UTRAN 应包含跟释放的信令连接相关的 "Flow Identifiers"标识的全部信令流。

8.1.15计数器检查

图 19 计数器检查过程

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8.1.15.1概述UTRAN使用计数器检查过程执行本地验证。该过程用于检查 RRC连接期间双向(上下行链

路)发送的数据量在 UTRAN和UE中是否相同(以防有入侵者的操作)。应注意的是,即使没有使用加密,每个无线承载也需要有 COUNT-C的值。该过程仅适用使用 UM或 AM RLC的无线承载。在本版本中,该过程不适用于使用透明模式 RLC的无线承载。8.1.15.2启动

UTRAN 监视每个使用 UM或AM RLC的无线承载的 COUNT-C值。一旦这些值达到一个临界检查值时,触发该过程。这些检查值之间的间隔及值本身由访问的网络向 UTRAN定义。UTRAN在下行链路DCCH上发送 COUNTER CHECK消息,以启动该过程。8.1.15.3 UE对 COUNTER CHECK消息的接收当 UE收到 COUNTER CHECK 消息时,应将收到的 COUNTER CHECK消息中 COUNT-C

MSB 的值与相应无线承载的 COUNT-C MSB的值进行比较。若使用 UM或 AM RLC的无线承载数或任一 COUNT-C MSB的值有所不同,应在 COUNTER

CHECK RESPONSE消息中包含失配的 COUNT-C的值。UE应在上行链路DCCH上使用AM RLC发送 COUNTER CHECK RESPONSE消息。

8.1.15.4 UTRAN对 COUNTER CHECK RESPONSE消息的接收若UTRAN收到的 COUNTER CHECK RESPONSE 消息中不包含任何 COUNT-C的值,过程结

束。若 UTRAN收到的 COUNTER CHECK RESPONSE 消息中包含一个或多个 COUNT-C的值,

应比较该消息中的 COUNT-C值和用于构成 COUNTER CHECK消息的 COUNT-C值。若没有差异或差异是可接受的,过程结束。对差异的可接受限度是由访问的网络对 UTRAN

定义的。若差异不可接受,UTRAN应启动 RRC连接释放。

8.1.15.5 无效的 COUNTER CHECK消息若 UE 收 到 的 COUNTER CHECK 消 息 中 包 含 协 议 错 误 致 使 变 量

PROTOCOL_ERROR_REJECT为 TRUE,UE应: 在下行链路 DCCH上使用 AM RLC发送 RRC STATUS消息,并包含信息元素"Protocol

error information",其内容设置为变量 PROTOCOL_ERROR_INFORMATION的值。 当 RLC确认 RRC STATUS消息的成功发送后,UE应继续正常的操作,如同没有收到无效的 COUNTER CHECK一样。

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8.2. 无线承载控制过程

8.2.1 无线承载的建立

图 20:无线承载的建立,正常流程

图 21:无线承载的建立,UE 恢复到旧的配置

8.2.1.1 概述该过程用于建立新的无线承载,或重配置先前建立的无线承载。该过程建立的每个无线承载

属于下列种类之一: 信令无线承载,例如用于控制平面信令; 无线承载,用于实现用户平面的一个无线接入承载(RAB)或 RAB子流。当建立无线承载时,该过程可能执行一个硬切换(见 8.3.5)。

8.2.1.2 启动网络高层可能请求建立无线承载。为启动该过程,UTRAN应 在任何新的物理信道配置上配置新的无线链路,并开始在新的无线链路上发送和接收。 在下行链路DCCH上使用确认或非确认模式发送 RADIO BEARER SETUP消息。若无线承载建立过程与 SRNS重定位过程同时启动,并且加密和 /或完整性保护被激活,

UTRAN应发送在重配置后所使用的新的加密和/或完整性保护信息。若在上行和/或下行链路上增加、重配置或删除传输信道,UTRAN应 根据新的传输信道设置 TFCS

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若包含信息元素"Activation Time",UTRAN对其值的设置应考虑到UE的性能要求。UTRAN在设置新的配置时应考虑到UE能力。若 RAB子流已建立,UTRAN应按照升序将 RAB子流包含在 RADIO BEARER SETUP消息中,

最小号码的子流放在第一个位置。

8.2.1.3 UE对 RADIO BEARER SETUP消息的接收UE应能接收 RADIO BEARER SETUP消息并执行硬切换,即使没有对目标小区和 /或频率进

行预先的UE测量。一旦收到 RADIO BEARER SETUP消息,UE应执行下面规定的动作:

- 若设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,UE应: - 包含信息元素"Radio bearer uplink ciphering activation time info",其值设置为该变量值。

UE应将收到的 UE信息元素、RB信息元素、TrCH信息元素和 PhyCH信息元素存贮到变量ORDERED_CONFIG中。

UE应按 8.6的规定处理所有收到的信息元素,除了以下另外规定的情况。UE应 对新的无线承载,若变量 CIPHERING_STATUS设置为"Started",使用 START值初始化

在非透明模式无线承载上的加密。全部透明模式无线承载有一个公共超帧号(MAC-d HFN),不因新的透明模式无线承载的增加而增加;

对非透明模式无线承载,在 RADIO BEARER SETUP COMPLETE消息中向 UTRAN发送当前 START值;

若无线承载中使用 RLC-AM或 RLC-UM,暂停这些无线承载 RB3及以上的数据传输。若包含信息元素"RAB information for setup",该过程用于建立属于一个无线接入承载的无线承

载,UE应: 将新的无线承载与信息元素"RAB info"指示的无线接入承载相关联。 检查变量 ESTABLISHED_RABS中是否存在该无线接入承载。

若该无线接入承载存在,UE应: 在变量 ESTABLISHED_RABS中该无线接入承载条目下存贮关于无线承载的信息。若该无线接入承载不存在,UE应: 在变量 ESTABLISHED_RABS中存贮新的无线接入承载的信息; 在变量 ESTABLISHED_RABS中该无线接入承载条目下存贮关于无线承载的信息; 向使用信息元素"CN domain identity"的高层实体指示无线接入承载的建立,并发送

信息元素"RAB identity"的内容。 对每个新的无线承载,UE应

为该无线接入承载创建一个新的 RAB子流; 按无线承载在无线接入承载中的创建顺序为 RAB子流编号; 在变量 ESTABLISHED_RABS中存贮 RAB子流号码。

UE可能首先释放当前物理信道配置,并根据 8.6 节及下文建立一个新的物理信道配置。若不包含信息元素"PRACH info" 及 "Uplink DPCH info",UE应 将系统信息中给出的 PRACH物理信道作为缺省 RACH上行链路。若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",UE应在本过程结束时将

进入 CELL_FACH状态: 将系统信息中给出的辅助 CCPCH物理信道作为缺省 FACH下行链路。在 FDD中,若包含信息元素 'PDSCH code mapping'但不包含信息元素 'PDSCH with SHO DCH

Info',并在激活集中 DCH 仅有一个链路,UE 应根据 8.6 的规定按信息元素 'PDSCH code

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mapping'执行操作,并且 断定 PDSCH将从发送下行链路DPCH的基站发送。UE应按如下的规定,使用与本过程结束时将进入的状态适合的物理信道。若UE在本过程结束时将进入 CELL_FACH状态,UE应:若信息元素"TFS"不被包含且UE中没有为该传输信道预先存贮: 使用系统信息给出的 TFS。若存贮的 TFS没有一个能与物理信道匹配,UE应 删除存贮的 TFS,并 使用系统信息给出的 TFS。当新的配置起作用时,UE应在上行链路使用 AM RLC发送一个 RADIO BEARER SETUP

COMPLETE消息。特别地,UE应:- 使用新的配置发送 RADIO BEARER SETUP COMPLETE消息当 RLC证实 RADIO BEARER SETUP COMPLETE消息的发送,UE应恢复 RB3及以上使用

RLC-AM 或 RLC-UM 的无线承载上的数据传输。并且清除变量 ORDERED_CONFIG 和变量RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO。

UE应根据 8.5.7进入一个状态。过程结束。

8.2.1.4 UE中不支持的配置若 UTRAN 命令 UE使用一个它不支持的配置,UE应在 DCCH上使用确认模式 RLC发送

RADIO BEARER SETUP FAILURE 消息,并将信息元素"failure cause"设为原因值"configuration unsupported"。若无线承载建立过程影响几个无线承载,UE应在 RADIO BEARER FAILURE消息中包含应当成功的无线承载的标识。当 RLC证实 RADIO BEARER SETUP FAILURE消息的成功发送后,UE应恢复发送 RB3及以

上的使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应清除变量 ORDERED_CONFIG,过程结束。8.2.1.5 物理信道失败若UE不能根据 8.5.4的准则建立 RADIO BEARER SETUP消息指示的物理信道,UE应 恢复收到 RADIO BEARER SETUP消息前的配置(旧配置)并在 DCCH上使用确认模式

RLC 发送 RADIO BEARER SETUP FAILURE 消息。UE 应继续发送 RB3 及以上使用RLC-AM或 RLC-UM的无线承载上的数据传输,并继续正常的操作,如同无线承载建立没有发生一样。

若无线承载建立过程影响几个无线承载,UE应在 RADIO BEARER SETUP FAILURE消息中包含无线承载的标识。若UE不能恢复到旧配置或使用时激活时间超时,UE应 启动 RRC连接重建立过程并设置信息元素"failure cause" 值为"physical channel failure"。过程结束。

8.2.1.6 UTRAN对 RADIO BEARER SETUP COMPLETE消息的接收当UTRAN收到 RADIO BEARER SETUP COMPLETE消息,UTRAN应删除旧配置。若包含信息元素"UL Timing Advance",UTRAN应评估定时提前值,以备 UE切换后在新的小

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区内使用。在UTRAN侧过程结束。

8.2.1.7 UTRAN对 RADIO BEARER SETUP FAILURE消息的接收当 UTRAN收到 RADIO BEARER SETUP FAILURE消息,UTRAN应存贮旧配置并删除新配

置。同时,通知高层建立失败。在UTRAN侧过程结束。

8.2.1.8随后接收的 RADIO BEARER SETUP消息若由于以前接收的 RADIO BEARER SETUP消息而设置了变量ORDERED_CONFIG,UE应: 忽略随后接收的 RADIO BEARER SETUP消息; 保持配置,如同收到随后的 RADIO BEARER SETUP消息之前一样。

8.2.1.9 同时发生不兼容的重配置若在接收 RADIO BEARER SETUP消息时已经设置了变量 ORDERED_CONFIG(由于其他除

RADIO BEARER SETUP消息以外的消息),UE应 保持收到 RADIO BEARER SETUP消息前的配置 在 DCCH上使用确认模式发送 RADIO BEARER SETUP FAILURE消息。UE应设置信息

元素 "failure cause" 为 "incompatible simultaneous reconfiguration"。当 RLC 证实 RADIO BEARER SETUP FAILURE 消 息 的 成 功 发 送 , 过 程 结 束 。 UE 应 清 除 变 量ORDERED_CONFIG并继续正常操作。

8.2.1.10 无效的 RADIO BEARER SETUP消息若没有设置变量 ORDERED_CONFIG 并且 RADIO BEARER SETUP消息中包含一个协议错误,

致使变量 PROTOCOL_ERROR_REJECT 为 TRUE,UE应: 在上行链路 DCCH上使用 AM RLC发送 RADIO BEARER SETUP FAILURE 消息,并设

置信息元素"failure cause" 为"protocol error"; 设 置 信 息 元 素 "Protocol error information" 内 容 为 变 量

PROTOCOL_ERROR_INFORMATION的值; 当 RLC确认 RADIO BEARER SETUP FAILURE消息的成功发送后,UE应恢复 RB3及以

上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应继续正常的操作,如同没有收到无效的 RADIO BEARER SETUP消息一样。过程结束。

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8.2.2 重配置过程

图 22:无线承载重配置,正常流程

图 23:无线承载重配置,失败实例

图 27: 传输信道重配置,正常流程

图 28: 传输信道重配置,失败情况

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图 29: 物理信道重配置,正常流程

图 30: 物理信道重配置,失败情况

8.2.2.1 概述 重配置过程包括无线承载重配置过程,传输信道重配置过程和物理信道重配置过程。无线承载重配置过程用于重配置无线承载或信令链路的参数,以反映 QoS的变化。传输信道重配置过程用于重配置传输信道的参数。物理信道重配置过程用于建立,重配置和释放物理信道。当过程进行时,可能执行硬切换(见 8.3.5)。8.2.2.2 启动为启动过程,UTRAN应: 在任何新的物理信道配置上配置新的无线链路; 开始在新的无线链路上发送和接收; 在下行链路 DCCH上使用确认或非确认模式发送 RADIO BEARER RECONFIGURATION

消 息 , 或 TRANSPORT CHANNEL RECONFIGURATION 消 息 , 或 PHYSICAL CHANNEL RECONFIGURATION消息;

若重配置过程与 SRNS重定位过程同时发生,并且加密和/或完整性保护是激活的,则UTRAN应在重配置后发送新的加密和/或完整性保护信息。

若在上行或下行链路上增加、重配置或删除一个传输信道,UTRAN应 根据新的传输信道设置 TFCS;

若在上行和/或下行链路上增加或删除传输信道,UTRAN应 为新配置发送 RB映射信息。在无线承载重配置过程,UTRAN应指示在某些承载上暂停上行链路的传输。用于 RRC信令

的无线承载上的上行链路传输不应被暂停。若包含信息元素"Activation Time",UTRAN对其的设置,应考虑到UE的性能要求。

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UTRAN应在设置新的配置时考虑 UE能力。若消息用于启动从 CELL_DCH到 CELL_FACH的状态转移,UTRAN给 UE分配一个给定小

区的公共信道配置及 C-RNTI。8.2.2.3 处于 CELL_DCH状态的 UE对 RADIO BEARER RECONFIGURATION消息, TRANSPORT CHANNEL RECONFIGURATION 消息或 PHYSICAL CHANNEL

RECONFIGURATION消息的接收 处于 CELL_DCH状态时接收到 RADIO BEARER RECONFIGURATION消息,或 TRANSPORT CHANNEL RECONFIGURATION 消息,或 PHYSICAL CHANNEL RECONFIGURATION 消息,UE应执行以下操作。

UE应将收到的 UE信息元素、RB信息元素、TrCH信息元素和 PhyCH信息元素存贮到变量ORDERED_CONFIG中;根据 8.6对收到的信息元素进行操作,除非下面另有说明。UE应 根据信息元素"RB suspend/resume"中的指示,暂停或恢复无线承载上的上行链路的传输; 若无线承载中使用 RLC-AM或 RLC-UM,暂停 RB3及以上的数据传输。UE可能首先释放当前物理信道配置,并根据 8.6 节及下述建立一个新的无线信道配置。若不包含信息元素 "PRACH info" 及 "Uplink DPCH info",并该过程结束时 UE 将进入

CELL_FACH状态,UE应: 将系统信息中给出的 PRACH物理信道作为缺省 RACH上行链路。若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",并该过程结束时 UE将

进入 CELL_FACH状态,UE应 将系统信息中给出的辅助 CCPCH物理信道作为缺省 FACH下行链路。在 FDD中,若包含信息元素 'PDSCH code mapping'但不包含信息元素 'PDSCH with SHO DCH

Info',并且若在激活集中 DCH仅有一个链路,UE应根据 8.6节规定按信息元素 'PDSCH code mapping'操作,并且:

断定 PDSCH将从发送下行链路DPCH的小区发送。UE应根据下文在该过程结束时所处的状态,使用合适的物理信道:若该过程结束时 UE将进入 CELL_FACH状态,且 UE中不包含信息元素"TFS"且没有为该传

输信道预先存贮,UE应: 使用系统信息给出的 TFS。若该过程结束时 UE将进入 CELL_FACH状态,且存贮的 TFS没有一个能与物理信道匹配,

UE应: 删除存贮的 TFS并使用系统信息给出的 TFS。UE应根据 8.5.7进入一个状态。若 RADIO BEARER RECONFIGURATION消息用于启动 CELL_DCH到 CELL_FACH的状态

转移,并且不包含信息元素"New C-RNTI",UE应:在发送 RADIO BEARER RECONFIGURATION COMPLETE消息之前,根据 8.3.1执行一个小

区更新过程。在接收到 RADIO BEARER RECONFIGURATION消息的情况,若 UE不进入 CELL_PCH或

URA_PCH状态,UE应在新的配置生效时,在上行链路 DCCH上使用确认模式 RLC发送 RADIO BEARER RECONFIGURATION COMPLETE消息。特别地,使用新配置来发送该完成消息。若UE进入 CELL_PCH或URA_PCH状态,UE应:

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在上行链路 DCCH 上使用确认模式 RLC 发送 RADIO BEARER RECONFIGURATION COMPLETE消息。特别地,使用旧配置来发送该完成消息。在接收到 TRANSPORT CHANNEL RECONFIGURATION 消息的情况,UE 应在上行链路

DCCH上使用确认模式 RLC发送 TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息。在接收到 PHYSICAL CHANNEL RECONFIGURATION消息的情况,UE应在上行链路 DCCH

上使用确认模式 RLC发送 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息。若设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO ,UE 应包含信息元

素"Radio bearer uplink ciphering activation time info",其值设为该变量的值。若 RADIO BEARER RECONFIGURATION 消 息 , TRANSPORT CHANNEL

RECONFIGURATION 消 息 或 PHYSICAL CHANNEL RECONFIGURATION 消 息 用 来 发 起CELL_DCH到 CELL_FACH的状态转移,RADIO BEARER RECONFIGURATION COMPLETE消息,TRANSPORT CHANNEL RECONFIGURATION COMPLETE 消息或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息将在 UE完成状态转移后在 RACH上发送。当 RLC证实RADIO BEARER RECONFIGURATION COMPLETE 消 息 , TRANSPORT CHANNEL RECONFIGURATION COMPLETE 消 息 或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE 消 息 的 成 功 发 送 , UE 应 清 除 变 量 ORDERED_CONFIG , 变 量RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,并在满足以下准则的无线承载上恢复数据的传输:

无线承载标识为 RB3或以上 使用 RLC-AM或 RLC-UM,并且 该无线承载没有被 RADIO BEARER RECONFIGURATION 消息的信息元素 "RB

suspend/resume"指示为暂停。过程结束。

8.2.2.4 处于 CELL_FACH状态的UE对 RADIO BEARER RECONFIGURATION消息, TRANSPORT CHANNEL RECONFIGURATION 消息或 PHYSICAL CHANNEL

RECONFIGURATION消息的接收处 于 CELL_FACH 状 态 的 UE 收 到 RADIO BEARER RECONFIGURATION 消 息 ,

TRANSPORT CHANNEL RECONFIGURATION 消 息 或 PHYSICAL CHANNEL RECONFIGURATION消息,执行以下规定的操作。

UE应将收到的 UE信息元素、RB信息元素、TrCH信息元素和 PhyCH信息元素存贮到变量ORDERED_CONFIG中。

UE应按 8.6节对所收到的信息元素进行操作,除非下面另有说明。UE应: 根据信息元素"RB suspend/resume"中的指示,暂停或恢复无线承载上的上行链路的传输。若不包含信息元素 "PRACH info" 及 "Uplink DPCH info",并该过程结束时 UE 将进入

CELL_FACH状态,UE应: 将系统信息中给出的 PRACH物理信道作为缺省 RACH上行链路。若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",并该过程结束时 UE将

进入 CELL_FACH状态,UE应: 将系统信息中给出的辅助 CCPCH物理信道作为缺省 FACH下行链路。在 FDD中,若包含信息元素'PDSCH code mapping'但不包含'PDSCH with SHO DCH Info',UE

应根据 8.6节规定按信息元素'PDSCH code mapping'动作,并且:

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断定 PDSCH将从发送下行链路DPCH的小区发送。(在激活集中DCH仅有一个链路)UE应根据下文在该过程结束时所处的状态,使用合适的物理信道:若该过程结束时 UE将进入 CELL_FACH状态,且 UE不包含信息元素"TFS"且没有为该传输

信道存贮,UE应: 使用系统信息给出的 TFS。若存贮的 TFS没有一个能与物理信道匹配,UE应 删除存贮的 TFS并使用系统信息给出的 TFS。UE应根据 8.5.7进入一个状态。在接收到 RADIO BEARER RECONFIGURATION消息的情况,若 UE不进入 CELL_PCH或

URA_PCH状态,UE应:在新的配置生效时,在上行链路 DCCH 上使用确认模式 RLC 发送 RADIO BEARER

RECONFIGURATION COMPLETE消息。特别地,使用新配置来发送该完成消息。若UE进入 CELL_PCH或URA_PCH状态,UE应:在上行链路 DCCH 上使用确认模式 RLC 发送 RADIO BEARER RECONFIGURATION

COMPLETE消息。特别地,使用旧配置来发送该完成消息。在接收到 TRANSPORT CHANNEL RECONFIGURATION 消息的情况,UE 应在上行链路

DCCH上使用确认模式 RLC发送 TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息。在接收到 PHYSICAL CHANNEL RECONFIGURATION消息的情况,UE应在上行链路 DCCH

上使用确认模式 RLC发送 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息。若设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO ,UE 应包含信息元

素"Radio bearer uplink ciphering activation time info",其值设为该变量的值。当 RLC 证 实 RADIO BEARER RECONFIGURATION COMPLETE 消 息 , TRANSPORT

CHANNEL RECONFIGURATION COMPLETE 消 息 , 或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息的成功发送,UE应:根据 8.5.7进入一个状态;若结束于 CELL_PCH或 URA_PCH状态,则删除其 C-RNTI;清除

变量 ORDERED_CONFIG,变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO;过程结束。8. 2. 2. 5 UTRAN 对 RADIO BEARER RECONFIGURATION COMPLETE 消息TRANSPORT CHANNEL RECONFIGURATION COMPLETE 消 息 或 PHYSICAL

CHANNEL RECONFIGURATION COMPLETE消息的接收当 UTRAN 收到 RADIO BEARER RECONFIGURATION COMPLETE 消息, TRANSPORT

CHANNEL RECONFIGURATION COMPLETE 消 息 , 或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息,UTRAN 删除旧配置。若过程导致UE 离开 CELL_FACH状态,UTRAN可能删除UE的 C-RNTI。若包含信息元素"UL Timing Advance",UTRAN应评估定时提前值,以备切换后 UE在新的小

区中使用。过程在UTRAN侧结束。

8.2.2.6 UE不支持的配置若UTRAN 命令UE使用一个它不支持的配置,UE应: 收到 RADIO BEARER RECONFIGURATION消息的情况:

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在 DCCH上使用 AM RLC发送 RADIO BEARER RECONFIGURATION FAILURE消息;

收到 TRANSPORT CHANNEL RECONFIGURATION消息的情况: 在 DCCH 上使用 AM RLC 发送 TRANSPORT CHANNEL RECONFIGURATION

FAILURE消息; 收到 PHYSICAL CHANNEL RECONFIGURATION消息的情况:

在 DCCH 上使用 AM RLC 发送 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息;

设置信息元素"failure cause" 值为"configuration unsupported"; 若 无 线 承 载 建 立 过 程 影 响 几 个 无 线 承 载 , UE 应 在 RADIO BEARER

RECONFIGURATION FAILURE消息中包含无线承载的标识。当 RLC 证 实 RADIO BEARER RECONFIGURATION FAILURE 消 息 或 TRANSPORT

CHANNEL RECONFIGURATION FAILURE消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息的发送后,UE应清除变量 ORDERED_CONFIG,并恢复发送 RB3及以上的使用RLC-AM或 RLC-UM的无线承载上的数据传输。UE应恢复正常的操作,就象没有发生无线承载重配置的尝试一样。过程结束。8.2.2.7 物理信道失败当 8.5.4中准则不能满足时,认为发生物理信道失败。若 UE 不能建立 RADIO BEARER RECONFIGURATION 消息, TRANSPORT CHANNEL

RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息指示的物理信道,UE应:

恢复收到 RADIO BEARER RECONFIGURATION 消息, TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息前的配置(旧配置);

在收到 RADIO BEARER RECONFIGURATION消息的情况,在 DCCH上使用确认模式RLC发送 RADIO BEARER RECONFIGURATION FAILURE消息;

在收到 TRANSPORT CHANNEL RECONFIGURATION消息的情况,在 DCCH上使用确认模式 RLC发送 TRANSPORT CHANNEL RECONFIGURATION FAILURE消息;

在收到 PHYSICAL CHANNEL RECONFIGURATION消息的情况,在 DCCH上使用确认模式 RLC发送 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息;

设置信息元素"failure cause" 值为"physical channel failure"; 若 无 线 承 载 重 配 置 过 程 影 响 几 个 无 线 承 载 , UE 应 在 RADIO BEARER

RECONFIGURATION FAILURE消息中包含该过程成功的无线承载的标识。 当 RLC 证实 RADIO BEARER RECONFIGURATION FAILURE 消息, TRANSPORT

CHANNEL RECONFIGURATION FAILURE 消 息 或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息的发送后,UE应恢复在 RB3及以上的使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应恢复正常操作,如同无线承载重配置的尝试没有发生一样。

若UE不能恢复到旧配置或使用时激活时间超时,UE应: 启动 RRC连接重建立过程。过程结束。

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8. 2. 2. 8 UTRAN 对 RADIO BEARER RECONFIGURATION FAILURE 消息TRANSPORT CHANNEL RECONFIGURATION FAILURE 消 息 或 PHYSICAL

CHANNEL RECONFIGURATION FAILURE消息的接收当 UTRAN 收到 RADIO BEARER RECONFIGURATION FAILURE 消息 , TRANSPORT

CHANNEL RECONFIGURATION FAILURE消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息,UTRAN应存贮旧配置并删除新配置,UTRAN侧过程结束。同时,通知高层建立失败。8.2.2.9 处于 CELL_DCH状态的UE没有响应若 没 有 收 到 RADIO BEARER RECONFIGURATION COMPLETE 消 息 , TRANSPORT

CHANNEL RECONFIGURATION COMPLETE 消 息 , 或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息或者 RADIO BEARER RECONFIGURATION FAILURE消息, TRANSPORT CHANNEL RECONFIGURATION FAILURE 消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息,UTRAN应删除旧的和新的配置。若 UE在全部专用资源清除前,请求重建立 RRC连接,新的配置将在重建立过程中重分配。

8.2.2.10 处于 CELL_FACH状态的UE没有响应若 没 有 收 到 RADIO BEARER RECONFIGURATION COMPLETE 消 息 , TRANSPORT

CHANNEL RECONFIGURATION COMPLETE 消 息 , 或 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息或者 RADIO BEARER RECONFIGURATION FAILURE消息, TRANSPORT CHANNEL RECONFIGURATION FAILURE 消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息,UTRAN应删除旧的和新的配置。若 UE在全部专用资源清除前,进行小区更新,配置过程将重启动。8.2.2.11 从 CELL_DCH到 CELL_FACH 转移中物理信道失败若 UE从 CELL_DCH到 CELL_FACH 转移中不能选择 RADIO BEARER RECONFIGURATION

消息,TRANSPORT CHANNEL RECONFIGURATION FAILURE 消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息中分配的小区,UE应执行小区重选并启动小区更新过程。8.2.2.12 信令承载的暂停为了便于错误恢复,RADIO BEARER RECONFIGURATION 消息可能使用信息元素 "RB

suspend/resume"包含一个暂停信令链路的请求。在这种情况,UE应: 恢复接收 RADIO BEARER RECONFIGURATION消息前的配置; 向UTRAN发送 RADIO BEARER RECONFIGURATION FAILURE消息; 设置信息元素"failure cause"为"configuration unsupported"; 当 RLC证实 RADIO BEARER RECONFIGURATION FAILURE消息的发送,过程结束。

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UE应恢复正常操作,如同无线承载重配置的尝试没有发生一样。8.2.2.13随后收到的 RADIO BEARER RECONFIGURATION消息,TRANSPORT

CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION

消息若变量 ORDERED_CONFIG 由以前收到的 RADIO BEARER RECONFIGURATION 消息,

TRANSPORT CHANNEL RECONFIGURATION 消 息 或 PHYSICAL CHANNEL RECONFIGURATION消息设定,UE应:

忽略随后收到的 RADIO BEARER RECONFIGURATION消息,TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息;

保持收到随后的 RADIO BEARER RECONFIGURATION消息,TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息之前的配置

8.2.2.14 同时发生不兼容的重配置若 在 接 收 RADIO BEARER RECONFIGURATION 消 息 , TRANSPORT CHANNEL

RECONFIGURATION 消息或 PHYSICAL CHANNEL RECONFIGURATION 消息时设置了变量ORDERED_CONFIG(由于之前的除 RADIO BEARER RECONFIGURATION消息,TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息之外的任何消息),UE应:

保存收到 RADIO BEARER RECONFIGURATION 消息, TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION 消息前的旧配置;

在收到 RADIO BEARER RECONFIGURATION的情况,在 DCCH上使用确认模式发送RADIO BEARER RECONFIGURATION FAILURE消息;

在收到 TRANSPORT CHANNEL RECONFIGURATION的情况,在 DCCH上使用确认模式发送 TRANSPORT CHANNEL RECONFIGURATION FAILURE消息;

在收到 PHYSICAL CHANNEL RECONFIGURATION的情况,在 DCCH上使用确认模式发送 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息;

设置信息元素"failure cause"为"incompatible simultaneous reconfiguration"。当 RLC 证 实 RADIO BEARER RECONFIGURATION FAILURE 消 息 , TRANSPORT

CHANNEL RECONFIGURATION FAILURE 消息或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息的发送,过程结束。8.2.2.15 无效的 RADIO BEARER RECONFIGURATION 消息,TRANSPORT

CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION

消息若没有设置变量 ORDERED_CONFIG 并且 RADIO BEARER RECONFIGURATION 消息,

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TRANSPORT CHANNEL RECONFIGURATION 消 息 或 PHYSICAL CHANNEL RECONFIGURATION 消息中包含一个协议错误,致使变量 PROTOCOL_ERROR_REJECT 为TRUE,UE应:

在收到 RADIO BEARER RECONFIGURATION的情况,在上行链路 DCCH上使用 AM RLC发送 RADIO BEARER RECONFIGURATION FAILURE 消息;

在收到 TRANSPORT CHANNEL RECONFIGURATION的情况,在 DCCH上使用确认模式发送 TRANSPORT CHANNEL RECONFIGURATION FAILURE消息;

在收到 PHYSICAL CHANNEL RECONFIGURATION的情况,在 DCCH上使用确认模式发送 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息;

设置信息元素"failure cause" 为"protocol error"; 包 含 信 息 元 素 "Protocol error information" , 并 且 其 内 容 设 置 为 变 量

PROTOCOL_ERROR_INFORMATION的值; 当 RLC 确认 RADIO BEARER RECONFIGURATION FAILURE 消息, TRANSPORT

CHANNEL RECONFIGURATION FAILURE 消 息 或 PHYSICAL CHANNEL RECONFIGURATION FAILURE消息的发送后,UE应恢复 RB3及以上使用 RLC-AM或RLC-UM的无线承载上的数据传输。UE应恢复正常的操作,如同没有收到无效 的RADIO BEARER RECONFIGURATION 消 息 , TRANSPORT CHANNEL RECONFIGURATION消息或 PHYSICAL CHANNEL RECONFIGURATION消息一样。过程结束。

8.2.3 无线承载的释放

图 24:无线承载的释放,正常流程

图 25:无线承载的释放,UE 恢复旧配置

8.2.3.1 概述 该过程用于释放已有的无线承载。当过程进行时,可能执行一个硬切换。

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8.2.3.2 启动网络高层可能请求一个无线承载释放。为启动该过程,UTRAN应: 可能在新的物理信道上配置新的无线链路,并开始在新的无线链路上发送和接收; 在下行链路DCCH上使用确认或非确认模式发送 RADIO BEARER RELEASE消息。若在上行或下行链路上增加、重配置或删除传输信道,UTRAN应根据新的传输信道设置

TFCS。若包含信息元素"Activation Time",UTRAN对其值的设置应考虑到UE的性能要求。UTRAN应在设置新的配置时考虑 UE性能。

8.2.3.3 UE对 RADIO BEARER RELEASE消息的接收即使在没有对目标小区和 /或频率进行预先 UE测量时,UE也应能接收 RADIO BEARER

RELEASE消息,并执行一个硬切换。当收到 RADIO BEARER RELEASE消息时,UE应执行下文的操作。UE应将收到的 UE信息元素、RB信息元素、TrCH信息元素和 PhyCH信息元素存贮到变量

ORDERED_CONFIG中。UE应根据 8.6对收到的信息元素进行处理,除非下文另有规定:

- 对被释放的无线承载, 从变量 ESTABLISHED_RABS中删除该无线承载的信息。若属于同一无线接入承载的无线承载都将被释放时,UE应: 向对应变量 ESTABLISHED_RABS 中存贮的 CN域标识的高层实体指示 RAB的释放;

从变量 ESTABLISHED_RABS中删除该无线接入承载的信息。 - 对剩下的无线承载,

为使用的传输信道采用适用的复用选项; 若使用上述传输信道时有必要,则配置MAC复用; 在MAC选择 TFC时使用逻辑信道优先级; 暂停 RB3及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。

UE可能首先释放当前物理信道配置,并根据 8.6 节及下文建立一个新的无线信道配置。若不包含信息元素 "PRACH info" 及 "Uplink DPCH info",并在该过程结束时 UE 将进入

CELL_FACH状态,UE应 将系统信息中给出的 PRACH物理信道作为缺省 RACH上行链路。若不包含信息元素"Secondary CCPCH info"及"Downlink DPCH info",并在该过程结束时 UE

将进入 CELL_FACH状态,UE应 将系统信息中给出的辅助 CCPCH物理信道作为缺省 FACH下行链路。在 FDD中,若包含信息元素 'PDSCH code mapping'但不包含信息元素 'PDSCH with SHO DCH

Info',并当在激活集中 DCH 仅有一个链路,UE 应根据 8.6 节规定按信息元素 'PDSCH code mapping'动作,并且:

断定 PDSCH将从发送下行链路DPCH的基站发送。UE应根据下文在该过程结束时所处的状态,使用合适的物理信道:若该过程结束时 UE将进入 CELL_FACH状态,且 UE中不包含信息元素"TFS"且没有为该传

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输信道预先存贮,UE应: 使用系统信息给出的 TFS。若存贮的 TFS没有一个能与物理信道匹配,UE应 删除存贮的 TFS并使用系统信息给出的 TFS;UE应根据 8.5.7进入一个状态。若 RADIO BEARER RELEASE消息用于启动 CELL_DCH到 CELL_FACH的状态转移,并且

不包含信息元素"New C-RNTI",UE应:在发送 RADIO BEARER RELEASE COMPLETE消息之前,根据 8.3.1执行一个小区更新过程。UE应在上行链路 DCCH上使用确认模式 RLC发送 RADIO BEARER RELEASE消息。若变量

RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO有值,则 UE应包含信息元素"Radio bearer uplink ciphering activation time info",其值为该变量的值。若 RADIO BEARER RELEASE 消息用于启动 CELL_DCH 到 CELL_FACH 的状态转移,

RADIO BEARER RELEASE COMPLETE消息应在UE完成状态转移后在 RACH上发送。若 RADIO BEARER RELEASE消息用于启动 CELL_DCH到 CELL_PCH或 URA_PCH的状态

转移,RADIO BEARER RELEASE COMPLETE消息应在UE完成状态转移之前在旧的配置上发送。当 RLC证实 RADIO BEARER RELEASE消息的发送,UE应清除变量 ORDERED_CONFIG,

变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,UE应恢复在 RB3及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。过程结束。

8.2.3.4 UE不支持的配置若UTRAN 命令 UE使用一个它不支持的配置或变量 UNACCEPTABLE_CONFIGURATION为

TRUE,UE应在DCCH上使用确认模式 RLC发送 RADIO BEARER RELEASE FAILURE消息,并设置信息元素"failure cause" 值为"configuration unsupported"。若无线承载建立过程影响几个无线承载,UE应在 RADIO BEARER RECONFIGURATION FAILURE消息中包含无线承载的标识。当 RLC证实 RADIO BEARER RELEASE FAILURE消息的发送后,UE应继续发送 RB3及以

上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应清除变量 ORDERED_CONFIG,过程结束。8.2.3.5 物理信道失败若UE不能建立 RADIO BEARER RELEASE消息指示的物理信道,UE应 恢复收到 RADIO BEARER RELEASE消息前的配置(旧配置); 在DCCH上使用确认模式 RLC发送 RADIO BEARER RELEASE FAILURE消息; 设置信息元素"failure cause" 值为"physical channel failure"; 若无线承载释放过程影 响几个无线承载, UE 应在 RADIO BEARER RELEASE

FAILURE消息中包含应当成功的无线承载的标识; 当 RLC证实 RADIO BEARER RELEASE FAILURE消息的发送后,UE应恢复发送 RB3

及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应恢复正常操作,如同无线承载释放没有发生一样。

当 8.5.4定义的准则没有满足时,发生物理信道失败。若 UE不能恢复到旧配置或使用时激活时间超时,UE应

根据 8.1.5启动 RRC连接重建立过程。过程结束。

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8.2.3.6 UTRAN对 RADIO BEARER RELEASE COMPLETE消息的接收当UTRAN收到 RADIO BEARER RELEASE COMPLETE消息,删除旧配置。若包含信息元素"UL Timing Advance",UTRAN应评估定时提前值,以备切换后 UE在新的小

区中使用。在UTRAN侧过程结束。

8.2.3.7 UTRAN对 RADIO BEARER RELEASE FAILURE消息的接收当 UTRAN收到 RADIO BEARER RELEASE FAILURE消息,UTRAN应恢复旧配置,删除新

的配置。通知高层失败。在UTRAN侧过程结束。

8.2.3.8 从 CELL_DCH到 CELL_FACH 转移中物理信道失败在从 CELL_DCH到 CELL_FACH 转移中,若 UE不能使用分配的物理信道,UTRAN将收到

CELL UPDATE消息。若UE从 CELL_DCH到 CELL_FACH 转移中不能选择 RADIO BEARER RELEASE消息中分配

的小区,UE应执行小区重选并启动小区更新过程(见 TS25.304)。8.2.3.9 随后收到的 RADIO BEARER RELEASE消息若由于之前收到的 RADIO BEARER RELEASE消息而设置了变量 ORDERED_CONFIG,UE

应: 忽略随后收到的 RADIO BEARER RELEASE消息; 保持收到随后的 RADIO BEARER RELEASE消息之前的配置。

8.2.3.10 同时发生不兼容的重配置若在接收 RADIO BEARER RELEASE消息时设置变量 ORDERED_CONFIG(由于除 RADIO

BEARER RELEASE外的任何消息),UE应: 保持收到 RADIO BEARER RELEASE消息前的配置; 在 DCCH上使用确认模式发送 RADIO BEARER RELEASE FAILURE消息。设置信息元

素 "failure cause"为 "incompatible simultaneous reconfiguration"。当 RLC 证实 RADIO BEARER RELEASE FAILURE消息的发送,过程结束。

8.2.3.11 无效的 RADIO BEARER RELEASE消息若没有设置变量 ORDERED_CONFIG 并且 RADIO BEARER RELEASE消息中包含一个协议

错误,致使变量 PROTOCOL_ERROR_REJECT 为 TRUE,UE应: 在上行链路 DCCH上使用 AM RLC发送 RADIO BEARER RELEASE FAILURE 消息,并

设置信息元素"failure cause" 为"protocol error";

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包 含 信 息 元 素 "Protocol error information" , 其 内 容 为 变 量PROTOCOL_ERROR_INFORMATION的值;

当 RLC确认 RADIO BEARER RELEASE FAILURE消息的成功发送后,UE应恢复 RB3及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应恢复正常的操作,如同没有收到无效的 RADIO BEARER RELEASE消息一样。过程结束。.

8.2.4 传输信道重配置见 8.2.2(重配置过程)

8.2.5 传输格式组合控制

图 27:传输格式组合控制,正常流程

8.2.5.1 概述传输格式组合控制过程用于控制在传输格式组合集中允许的上行链路传输格式组合。

8.2.5.2 启动UTRAN 应在下行 DCCH 上使用 AM、 UM 或 TM RLC 发送 TRANSPORT FORMAT

COMBINATION CONTROL消息。若没有另外的说明,UE可能在另一过程进行时,启动传输格式组合控制过程,同时前者的状态应不受影响。在等待下列过程完成时,UTRAN不应启动传输格式组合控制过程: 无线承载的建立; 无线承载的释放; 无线承载的重配置; 传输信道的重配置; 物理信道的重配置。在改变允许的传输格式组合子集时,UTRAN应在信息元素"TFC subset"中设置允许的 TFC。

网络应能够选择一个新的 TFC适用的持续时间。网络通过使用信息元素"TFC Control duration"来指定这个持续时间。为完全清楚以前对允许的传输格式组合的限制,UTRAN应设置信息元素"TFC subset"中

的"full transport format combination"。

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8.2.5.3 UE对 TRANSPORT FORMAT COMBINATION CONTROL消息的接收当收到 TRANSPORT FORMAT COMBINATION CONTROL 消息后,若没有设置变量

ORDERED_CONFIG ,UE应决定是否包含信息元素"TFC Control duration"。若不包含信息元素"TFC Control duration",UE应: 在变量中存贮最新的 TFC(子)集作为'default TFC (sub)set'; 按 8.6.5.3所述配置允许的传输格式组合。若消息中包含信息元素"TFC Control duration",则: 特定的集合或 TFC子集应在信息元素"TFC Control duration"设置的帧(10ms)号中应用。

若在这期间没有收到其他 TFC控制消息,则: 在定义的期间结束时UE应将 TFC子集重设置为'default TFC (sub)set'。若在'TFC Control duration'期间收到其他 TFC控制消息,UE应根据最近收到的消息进行重配

置。在所有情况下,消息中指定的 TFC集或 TFC子集应使用在: 第 n+5帧,当这个第 n+5帧恰好对应于具有最大 TTI的传输块之间的帧定界之后的第一

个 10ms帧,该 TTI配置在上行链路 CCTrCH; n是在 UE收到完整的 RRC"Transport Format Combination Control"消息的下行链路DPCH帧号(分辨率为 10ms);

若上述条件不满足,使用在这个第 n+5帧之后的紧随某个帧定界的第一个 10ms帧,其中,这个帧定界是指具有最大 TTI 的传输块之间的帧定界,该 TTI 配置在上行链路CCTrCH。

8.2.5.4 同时发生不兼容的重配置若除了 TRANSPORT FORMAT COMBINATION CONTROL消息外的其他任何消息设置了变量

ORDERED_CONFIG,UE应 保持收到 TRANSPORT FORMAT COMBINATION CONTROL消息前的 TFC子集 在 DCCH 上使用确认模式发送 TRANSPORT FORMAT COMBINATION CONTROL

FAILURE 消息。 UE 应设置信息元素 "failure cause" 为 "incompatible simultaneous reconfiguration" 。 当 RLC 证 实 TRANSPORT FORMAT COMBINATION CONTROL FAILURE消息的发送,过程结束。

8.2.5.5 无效的 TRANSPORT FORMAT COMBINATION CONTROL消息若 没 有 设 置 变 量 ORDERED_CONFIG 并 且 TRANSPORT FORMAT COMBINATION

CONTROL 消息中包含一个协议错误,致使变量 PROTOCOL_ERROR_REJECT为 TRUE ,UE应: 在上行链路 DCCH 上使用 AM RLC 发送 TRANSPORT FORMAT COMBINATION

CONTROL FAILURE消息,并设置"failure cause"为"protocol error"。 包 含 信 息 元 素 "Protocol error information" , 值 为 变 量

PROTOCOL_ERROR_INFORMATION的值。 当 RLC确认 TRANSPORT FORMAT COMBINATION CONTROL FAILURE消息的发送

后,UE应恢复 RB3及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。UE应恢复正常的操作,如同没有收到无效的 RANSPORT FORMAT COMBINATION CONTROL消息一样。过程结束。

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8.2.6 物理信道的重配置见 8.2.2(重配置过程)

8.2.7 物理共享信道的分配 [仅用于 TDD模式]

图 30:物理共享信道的分配

8.2.7.1 概述 该过程用于 TDD模式下为USCH或DSCH传输信道分配UE 暂时使用的物理信道。8.2.7.2 启动

UE处于 CELL_FACH或 CELL_DCH状态,且至少有一个已建立的 RB使用USCH或DSCH。UTRAN 通过 SHCCH 发送 "PHYSICAL SHARED CHANNEL ALLOCATION"消息,为一个

CCTrCH分配 PUSCH或 PDSCH资源。其中应包含 UE标识 C-RNTI。在 CELL_DCH状态,该消息可能在映射为DCH传输信道的DCCH上发送。当在DCCH上发送时,不需要包含 C-RNTI。8.2.7.3 UE对 PHYSICAL SHARED CHANNEL ALLOCATION消息的接收 若包含 C-RNTI,UE应检查 C-RNTI以确定 UE是否由该消息定位。若如此,例如使用的 C-RNTI或接收消息的物理资源是只分配给该UE的 ,UE应评估该消息,如下文所述。若包含信息元素"PDSCH info", UE应: 解码信息元素" Allocation Activation Time" 和"Allocation Duration",,以确定该分配有效的

时间间隔; 根据收到的分配消息或 BCCH SIB#6(若分配消息中没有指定时缺省)中的 PDSCH信息

配置 L1; 开始接收包含 TFCI的 PDSCH; 接收 PDSCH并根据 TFCI将其解码和解复用到各自的DSCH信道中。若包含信息元素"PUSCH info", UE应: 解码信息元素" Allocation Activation Time" 和"Allocation Duration",,以确定该分配有效的

时间间隔; 根据收到的分配消息或 BCCH SIB#6(若分配消息中没有指定时缺省)中的 PUSCH信息

配置 L1; 确定可能为该 CCTrCH 分配的 PUSCH的 TFCS子集和 TFCI的值;

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如有必要,使用 TFCS限制配置UE中的MAC-c/sh; 在 PUSCH分配给定的 TFCS范围内按需要发送USCH Transport Block Sets。另外,UE应评估信息元素"PUSCH Allocation Pending"的参数。若参数为" Pending",UE启动

定时器 T311。只要该定时器运行,不允许 UE为可能的 USCH容量需要使用 RACH。见 USCH CAPABILITY REQUEST过程。若消息中包含可选的信息元素"Timing Advance Information",UE应用新的定时提前(Timing

Advance)配置 L1。注意,若 UE 刚进入一个新的小区,SIB#6 USCH或 DSCH的信息还未调度,USCH/DSCH信

息由分配消息给定。8.2.8 PUSCH容量请求 [仅用于 TDD模式]

图 31:PUSCH 容量请求过程

8.2.8.1 概述 在该过程中,UE向 UTRAN发送 PUSCH资源请求。在正常情况下,UTRAN回应 PHYSICAL SHARED CHANNEL ALLOCATION消息,用于分配所需的 PUSCH资源或分配 PDSCH资源,也可能作为一个确认,说明已在 PUSCH分配期间。在 PUSCH CAPACITY REQUEST消息中,UE能请求一个或多个USCH。注意:请求的触发由测量控制过程控制。

8.2.8.2 启动UE处于 CELL_FACH或 CELL_DCH状态,且至少一个使用 USCH的 RB已建立。UE的 RRC

层需要为一个USCH信道分配物理资源(PUSCH)。RRC决定在 SHCCH上发送一个 PUSCH容量请求。可能的情况是: 定时器 T311没有运行; 定时器 T310(容量请求循环定时器)没有运行。于是,UE 在上行链路 SHCCH 上发送 PUSCH CAPACITY REQUEST 消息,重置计数器

V310,并启动定时器 T310。在一个 PUSCH CAPACITY REQUEST消息中可能请求一个或多个 USCH容量。消息应包含以

下信息元素: 若消息在 RACH上发送,C-RNTI用作UE的标识; RB ID,对每个需要USCH的无线承载 这些无线承载的 RLC 缓冲负荷消息中还可能包含"Timeslot ISCP"和"Primary CCPCH RSCP"。

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"Timeslot ISCP"报告的时隙可能由之前的 PHYSICAL SHARED CHANNEL ALLOCATION消息配置。8.2.8.3 UTRAN对 PUSCH CAPACITY REQUEST消息的接收

UTRAN应向 UE发送一个 PHYSICAL SHARED CHANNEL ALLOCATION消息,用于分配PUSCH或 PDSCH资源,或仅仅作为确认,声明处在分配 PUSCH期间。8.2.8.4 UE对 PHYSICAL SHARED CHANNEL ALLOCATION消息的接收一旦UE收到包含正确的 C-RNTI的消息,UE应停止定时器 T310并如物理共享信道分配过程

描述进行对消息的评估。特别地,UE 应考虑信息元素"PUSCH Allocation Pending":若其值为"pending",UE应启动定时器 T311。只要该定时器运行,UE 禁止在 SHCCH上发送 PUSCH容量请求。若其值为"not pending",UE应停止定时器 T311,允许在 SHCCH上发送 PUSCH容量请求。若消息中的 PUSCH容量分配不足以满足 UE所有可能的 USCH传输要求,UE侧的 RRC可能

决定在USCH或 SHCCH上发送额外的 PUSCH容量请求,前提是 T311没有运行。8.2.8.5 T310超时若 T310超时,UE应: 若 V310 等于或小于 N310,在上行链路 SHCCH 上发送一个新的 PUSCH CAPACITY

REQUEST消息,重新启动定时器 T310并增加计数器 V310。UE应如上文所述设置PUSCH CAPACITY REQUEST消息中的信息元素。

8.2.8.6 超过重发的最大次数在这种情况下,UE 停止该过程。若 RRC认为有必要,应重新开始另一个 PUSCH容量请求过

程。8.2.9 下行链路外环控制

图 32:下行链路外环控制,正常流程

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8.2.9.1 概述 下行链路外环控制过程用于控制UE中运行的下行链路外环功率控制。8.2.9.2 启动 UTRAN 可能在下行链路 DCCH 上使用确认或非确认模式发送 DOWNLINK OUTER LOOP CONTROL消息。 为防止 UE在当前值之上增加下行链路 SIR目标值,UTRAN应设置信息元素"Downlink Outer Loop Control"为"Increase not allowed"。 为清除以前对下行链路外环功率控制限制,UTRAN应设置信息元素"Downlink Outer Loop Control"为"Increase allowed"。8.2.9.3 UE对DOWNLINK OUTER LOOP CONTROL消息的接收在收到DOWNLINK OUTER LOOP CONTROL消息时,UE应执行 8.6的操作,除非下面另外

说明的情况。若信息元素"Downlink Outer Loop Control"为"Increase not allowed",UE应阻止在当前值之上增

加下行链路 SIR目标值。若信息元素"Downlink Outer Loop Control"为"Increase allowed",UE应清除以上限制。

8.2.9.4 无效的DOWNLINK OUTER LOOP CONTROL消息若收到的 DOWNLINK OUTER LOOP CONTROL 消息中包含一个协议错误,致使变量

PROTOCOL_ERROR_REJECT为 TRUE ,UE应: 在上行链路 DCCH上使用 AM RLC发送 RRC STATUS消息,并包含信息元素"Protocol

error information",其值设为变量 PROTOCOL_ERROR_INFORMATION的值; 若 RLC 确认 RRC STATUS 消息的成功发送,UE 应恢复正常操作,如同无效的

DOWNLINK OUTER LOOP CONTROL消息没有收到一样。8.2.10 上行链路物理信道控制[仅用于 TDD]

图 33: 上行链路物理信道控制

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8.2.10.1概述上行链路物理信道控制过程用于控制 TDD模式下UE内运行的上行链路外环功率控制和定时

提前。8.2.10.2启动

UTRAN通过在下行链路 DCCH上使用 AM或 UM RLC发送 UPLINK PHYSICAL CHANNEL CONTROL消息启动该过程。其目的为更新 UE内一个 CCTrCH上行链路开环功率控制的参数或通知UE 采用一个新的定时提前值。特别地,应为用于 CCTrCH的上行链路时隙包含 UTRAN测量的上行链路冲突信息。8.2.10.3 UE对UPLINK PHYSICAL CHANNEL CONTROL消息的接收收到 UPLINK PHYSICAL CHANNEL CONTROL消息后,UE应根据 8.6.按照收到的信息元素

进行操作。若发送了 Uplink DPCH Power Control Info, Constant Value, 或UL Timeslot Interference等信息元

素 ,在上行链路开环功率控制时应考虑这些信息。

8.2.11 物理信道重配置失败

图 39: 实时配置错误情况的物理信道重配置失败

8.2.11.1 概述物理信道重配置失败过程用于向网络指示一个UE的实时配置错误。

8.2.11.2 由于压缩模式配置的重叠而引起的实时错误当UE从UTRAN接收到多个压缩模式传输间隙模式序列的配置,并且多个这样的配置是同时

活跃的,UE应监视没有任何传输间隙模式序列造成同一帧内的传输间隙。UE应:-  若并行的传输间隙模式序列没有造成非法的重叠:

    - 设置变量 COMPRESSED_MODE_ERROR为 FALSE;

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- 否则:    - 设置变量 COMPRESSED_MODE_ERROR为 TRUE; - 将存贮在变量 TGPS_IDENTITY中的重叠的传输间隙模式序列删除,该变量与信息元

素"TGPSI"的最高值相关;        - 在 DCCH 上使用 AM RLC 发送一个 PHYSICAL CHANNEL RECONFIGURATION

FAILURE消息;    - 设置信息元素"failure cause"的原因值为"compressed mode runtime error";    - 终止与删除的传输间隙模式序列对应的频率间和/或系统间测量。

8.3、RRC连接移动性过程

8.3.1 小区更新

图 34:小区更新过程,基本流程

图 35:带 UTRAN 移动性信息的小区更新过程

图 36:带物理信道重配置的小区更新过程

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图 37:带传输信道重配置的小区更新过程

图 38:小区更新过程,失败的情况

8.3.1.1 概述 小区更新过程主要用于在 CELL_FACH或 CELL_DCH状态下进行小区重选后,使用 UE的当前小区更新 UTRAN。其次,该过程也可能用于 UE向 UTRAN指示在传输上行链路数据之前从URA_PCH或 CELL_PCH到 CELL_FACH的状态转移。第三,也可用于监视 RRC连接,即使没有小区重选发生。小区更新过程还可以包含用于信令链路和用户平面链路的 AM RLC实体的重置。UE可以使用一个 CELL UPDATE消息指示在用于信令链路的 AM RLC实体中不可恢复的错误(RESET PDU重发数量达到MAX DAT并且接收无响应)。注意:PHYSICAL/TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息仅用于配

置了公共信道的情况(不适用专用信道)。8.3.1.2 启动处于 CELL_FACH、CELL_PCH或URA_PCH状态的UE能在以下情况启动小区更新过程: 小区重选:在 CELL_FACH或 CELL_PCH状态,UE选择另一小区时; 周期性小区更新:在 CELL_FACH 和 CELL_PCH 状态,当 UE 在服务区中时(见

8.5.9),若 T305超时,并且系统信息块类型 2的信息元素"Information for periodical cell and URA update"中的配置要求进行周期性的小区更新;

RB控制响应:在收到 RB控制消息而进行从 CELL_DCH到 CELL_FACH的状态转移时,若消息中没有指示驻留的小区,UE应自治地选择一个小区;

上行链路数据传输:在 CELL_PCH和 URA_PCH状态,UE应进行一个到 CELL_FACH的状态转移,以便传输上行链路数据;

寻呼响应:在 CELL_PCH和URA_PCH状态,UE收到 PAGING TYPE 1消息时; 重新进入服务区:在 URA_PCH状态,UE 离开服务区,并在 T307超时之前重新进入服

务区。

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为启动小区更新过程,UE应; 设置变量 PROTOCOL_ERROR_INDICATOR为 FALSE; 若不在 CELL_FACH状态,则转移到 CELL_FACH状态; 当 UE检测到一个新的小区时,认为存贮的 C-RNTI无效,直至收到 CELL UPDATE

CONFIRM消息; 暂停 RB3及以上使用 RLC-AM或 RLC-UM无线承载上的数据传输; 在上行链路 CCCH上发送 CELL UPDATE消息; 启动定时器 T302并重置计数器V302。UE应按如下设置 CELL UPDATE消息中的信息元素:根据上文所列的启动原因,在信息元素"cell update cause"中指出小区更新的原因;若变量 PROTOCOL_ERROR_INDICATOR 为 TRUE,UE 应设置信息元素 "Protocol error

indicator" 为 TRUE , 并 包 含 信 息 元 素 "Protocol error information" , 值 为 变 量PROTOCOL_ERROR_INFORMATION的值;若变量 PROTOCOL_ERROR_INDICATOR 为 FALSE,UE 应设置信息元素 "Protocol error

indicator" 为 FALSE;当 UE检测到在 AM RLC实体中信令链路存在不可恢复的错误(RESET PDU重发数量达到

MAXDAT并且接收无响应)时,应设置信息元素"AM_RLC error indication"。当 UE检测到在 AM RLC实体中用户平面链路存在不可恢复的错误时,应设置信息元素"AM_RLC error indication (for u-plane)";

UE应在 CELL UPDATE消息中包含来自每个 CN域的 START值。UE应在 CELL UPDATE消息中包含一个频率内测量报告,其规定如系统信息块类型 12中的

信息元素"Intra-frequency reporting quantity for RACH reporting" 和 "Maximum number of reported cells on RACH"所示。(若系统信息块 12没有广播,则在系统信息块 11中)8.3.1.3 T305超时且UE检测到离开服务区当 T305超时并且UE检测到它"out of service"(见 8.5.5),UE应: 启动定时器 T307; 重选一个新小区,见[4]。

8.3.1.3.1 重新回到服务区当 T307超时前UE检测到它不再"out of service",UE应; 在上行链路 CCCH上发送 CELL UPDATE消息。

8.3.1.3.2 T307超时当 T307超时,UE应: 转移到空闲模式; 释放全部专用资源; 向非接入层指示 RRC连接失败。

8.3.1.4 UTRAN对 CELL UPDATE消息的接收 当UTRAN收到 CELL UPDATE消息时,应在下行链路 DCCH上发送 CELL UPDATE CONFIRM消息,或 CCCH,可选地,仅当不要求加密时;或在下行链路 CCCH上发送 RRC CONNECTION RELEASE消息,启动一个 RRC连接释放过程(8.1.4)。

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当UTRAN检测到不可恢复的AM_RLC错误(RESET PDU重发数量达到MAX DAT并且接收没有响应),它应等待 UE的 CELL UPDATE消息并且当收到 CELL UPDATE消息后,UTRAN通过发送 CELL UPDATE CONFIRM消息命令 UE重配置 AM_RLC。该过程不仅用于 AM_RLC发生错误时,同样也用于其他情况下 UTRAN需要重配置 AM_RLC,例如当启动 SRNC重分配时从旧SRNC到新 SRNC过程中没有保持 RLC状态(当前计数器)一致。8.3.1.5 UE对 CELL UPDATE CONFIRM消息的接收当收到 CELL UPDATE CONFIRM 消息后(旧的 C-RNTI和 U-RNTI应用在 MAC的报头),

UE应停止定时器 T302。若分配有新的 C-RNTI,则应删除旧的 C-RNTI;若没有分配则使用旧的 C-RNTI为有效 C-

RNTI。UE应根据 8.6节按照所收到的信息元素进行操作,除非下文另有说明。若 CELL UPDATE CONFIRM 消息包含信息元素 "CN domain identity" 和 "NAS system

information",UE应将信息元素"NAS system information"的内容发送到"CN domain identity"指示的非接入层实体。若 CELL UPDATE CONFIRM消息包含信息元素"URA-Id",UE应存贮该URA标识。若 CELL UPDATE CONFIRM消息中的信息元素"DRX indicator"没有被设为"no DRX",UE不

向UTRAN发送 RRC 响应消息。若 CELL UPDATE CONFIRM消息不包含信息元素"new C-RNTI"、"new U-RNTI"、"PRACH

info"及"Secondary CCPCH info",UE 采取以下操作: 若小区更新由"periodical cell update"引起,UE将不向UTRAN发送 RRC 响应消息; 若小区更新由"UL data transmission"或"paging response"引起,并且 UE内存贮的 TFS和/

或 TFCS与广播系统信息中指示的 PRACH/SCCPCH没有差异,UE使用广播的系统信息中 指 示 的 PRACH 向 UTRAN 发 送 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息;

若小区更新由"UL data transmission"或"paging response"引起,并且 UE内存贮的 TFS和/或 TFCS与广播系统信息中指示的 PRACH/SCCPCH有差异,UE使用广播的系统信息中指 示 的 PRACH 向 UTRAN 发 送 TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息;

若小区更新由"cell reselection"或"RB control response"引起,则不存在此种情况。若 CELL UPDATE CONFIRM 消息包含信息元素"new C-RNTI",可选的信息元素 "new U-

RNTI",但不包含信息元素"PRACH info"及"Secondary CCPCH info",UE应更新其标识,并进行以下操作:

若小区更新由于"periodical cell update",在上行链路 DCCH上使用 UE内存贮的 PRACH发送UTRAN MOBILITY INFORMATION CONFIRM消息;

若小区更新由于"cell reselection", "UL data transmission"或"paging response",并且UE内存贮的 TFS和/或 TFCS与广播系统信息中指示的 PRACH/SCCPCH没有差异,UE使用广播的 系 统 信 息 中 指 示 的 PRACH 向 UTRAN 发 送 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息;

若小区更新由于"UL data transmission"或"paging response",并且 UE内存贮的 TFS和/或TFCS与广播系统信息中指示的 PRACH/SCCPCH有差异,UE使用广播的系统信息中指示的 PRACH向UTRAN发送 TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息;

若小区更新由于"RB control response",UE使用广播的系统信息中指示的 PRACH向UTRAN发送一个 RB控制响应消息。

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若 CELL UPDATE CONFIRM消息中包含信息元素"RLC reset indicator (for C-plane)" ,UE应重置控制平面的AM RLC实体。若 CELL UPDATE CONFIRM消息中包含信息元素"RLC reset indicator (for U-plane)" ,UE应

重置用户平面的AM RLC实体。若 CELL UPDATE CONFIRM 消息中包含信息元素 "PRACH info"和 /或 "Secondary CCPCH

info",UE应: 执行 8.6.6.2和 8.6.6.3的操作; 若 CELL UPDATE CONFIRM消息包含信息元素"new C-RNTI"及可选的信息元素"new U-

RNTI",更新其标识; 若 小 区 更 新 由 于 "periodical cell update" 、 "cell reselection" 、 "UL data

transmission"或"paging response",在上行链路DCCH上使用 CELL UPDATE CONFIRM消息指示的 PRACH发送 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息;

若小区更新由于"RB control response",使用广播的系统信息中指示的 PRACH向UTRAN发送一个 RB控制响应消息。

UE应根据 5.8节进入一个状态,适用于 CELL UPDATE CONFIRM消息。若 UE 转移到 CELL_FACH或 CELL_PCH状态,并且配置了周期性小区更新,UE应重置

T305。若UE不转移到 CELL_FACH状态,UE应删除其 C-RNTI和 PRACH/SCCPCH信息。若 UE 留在 CELL_FACH 状态并且 CELL UPDATE CONFIRM 消息包含信息元素 "New C-

RNTI", UE应恢复在 RB3及以上使用 RLC-AM或 RLC-UM的无线承载上的数据传输。8.3.1.6 无效的 CELL UPDATE CONFIRM消息若 UE 收 到 的 CELL UPDATE CONFIRM 消 息 中 包 含 一 个 协 议 错 误 , 指 使 变 量

PROTOCOL_ERROR_REJECT设为 TRUE,UE应执行下列错误处理操作:UE应检查V302的值,并且: 若 V302 等于或小于 N302, UE 应将变量 PROTOCOL_ERROR_INDICATOR 设为

TRUE,在上行链路 CCCH上发送 CELL UPDATE消息,重新启动 T302并增加计数器V302。UE应根据 8.3.1.2设定导致发送 CELL UPDATE消息事件的信息元素"Cell update cause"的值;

若V302大于N302,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

8.3.1.7 T302超时或小区重选定时器 T302超时,及/或在等待 CELL UPDATE CONFIRM消息时,进行了到其他 UTRA小区

(包含先前的服务小区)的重选,UE应检查V302的值,并且: 若V302等于或小于N302,UE应在上行链路 CCCH上发送 CELL UPDATE消息,重新启

动 T302并增加计数器V302。UE应根据 8.3.1.2设定导致发送 CELL UPDATE消息事件的信息元素"Cell update cause"的值;

若V302大于N302,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

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8.3.1.8 UTRAN对UTRAN MOBILITY INFORMATION CONFIRM消息的接收 见 8.3.3.4节。8.3.1.9 UTRAN对 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息的接收 当UTRAN接收到 PHYSICAL CHANNEL RECONFIGURATION COMPLETE消息后,过程结束。8.3.1.10 UTRAN对 TRANSPORT CHANNEL RECONFIGURATION COMPLETE

消息的接收当 UTRAN接收到 TRANSPORT CHANNEL RECONFIGURATION COMPLETE消息后,过程

结束。8.3.2 URA更新

图 38:URA 更新过程,基本流程

图 39:带 UTRAN 移动性信息更新的 URA 更新过程

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图 40:URA 更新过程,失败的情况

8.3.2.1 概述URA更新过程用于在 URA_PCH状态下进行URA重选后使用UE当前URA更新UTRAN。也

可在没有URA重选时用于监视 RRC连接。为避免过量的信令,UTRAN登记区域(URA)可能分等级。也就是说,一个小区内可能广播几个 URA标识,并且一个小区内不同的 UE可能属于不同的URA。处于URA_PCH状态下的UE应总有且只有一个有效 URA。URA UPDATE CONFIRM消息可能包含新的NAS系统信息。8.3.2.2 启动处于URA_PCH状态的UE在下列情况下启动URA更新过程: URA重选:在 URA_PCH状态,UE检测到分配给 UE的当前 URA不在小区广播的 URA

ID列表中; 周期性 URA更新:在 URA_PCH状态,当 UE在服务区中时,当 T306超时,UE执行

URA更新过程。UE仅因在系统信息块 2的信息元素"Information for periodical cell and URA update"中的配置,进行周期性的 URA更新。当进入 URA_PCH状态时,UE应启动定时器 T306;

重新进入服务区:在 URA_PCH状态,当 UE 离开服务区,并且在 T307超时之前重新进入服务区。

UE应通过以下动作启动URA更新过程: 设置变量 PROTOCOL_ERROR_INDICATOR为 FALSE; 转移到 CELL_FACH状态; 在上行链路 CCCH上发送URA UPDATE消息; 启动定时器 T303并重置计数器V303。UE应如下设置URA UPDATE消息中的信息元素: 根据上文所列的启动原因,相应地在信息元素"URA update cause"指出URA更新的原因; 若变量 PROTOCOL_ERROR_INDICATOR为 TRUE:

UE应设置信息元素"Protocol error indicator" 为 TRUE; 包 含 信 息 元 素 "Protocol error information" , 设 为 变 量

PROTOCOL_ERROR_INFORMATION的值。 若变量 PROTOCOL_ERROR_INDICATOR为 FALSE:

UE应设置信息元素"Protocol error indicator"为 FALSE。

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8.3.2.3 T306超时且UE检测到它不在服务区内当 T306超时并且UE检测到它不在服务区内,UE应: 启动定时器 T307; 重选到一个新的小区(见[4])。

8.3.2.3.1 重新回到服务区当 T307超时前UE检测到它不再在服务区外,UE应: 在上行链路 CCCH上发送URA UPDATE消息。

8.3.2.3.2 T307超时当 T307超时,UE应: 转移到空闲模式; 释放全部专用资源; 向非接入层指示 RRC连接失败。

8.3.2.4 UTRAN对URA UPDATE消息的接收当UTRAN收到URA UPDATE消息时,UE可能:在下行链路 CCCH或 DCCH上发送 URA UPDATE CONFIRM消息。当小区内有多个 URA有

效时,UTRAN应在URA UPDATE CONFIRM消息中包含信息元素“URA Identity”;或者 通过在下行链路 CCCH上发送 RRC CONNECTION RELEASE消息,启动一个 RRC连接释放过程(8.1.4)。

8.3.2.5 UE对URA UPDATE CONFIRM消息的接收当收到 URA UPDATE CONFIRM 消息后,UE应停止 T303并启动定时器 T306。若 CELL

UPDATE CONFIRM消息包含信息元素"new C-RNTI",可选的"new U-RNTI",UE应: 更新其标识; 在上行链路 DCCH 上使用广播系统信息指示的 PRACH 发送 UTRAN MOBILITY

INFORMATION CONFIRM消息。若 URA UPDATE CONFIRM 消息包含信息元素 "CN domain identity" 和 "NAS system

information",UE应将信息元素"NAS system information"的内容发送到"CN domain identity"指示的非接入层实体。

UE应根据 8.5.7所述进入一个状态,除了下文的规定。若UE 转移回URA_PCH状态,应: 从新的小区广播的系统信息中恢复从 CCPCH信息(PCH); 删除其 C-RNTI; 过程结束。

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8.3.2.6 URA ID列表证实错误若URA UPDATE CONFIRM消息引起一个 8.6.2.1描述的URA标识列表的证实错误,UE应检

查V303的值,并且: 若V303等于或小于N303,UE应:

在上行链路 CCCH上重发URA UPDATE消息; 重新启动定时器 T303; 增加计数器V303; 应根据 8.3.2.2设定URA UPDATE消息中信息元素的值。

若V303大于N303,UE应: 进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

8.3.2.7 无效的URA UPDATE CONFIRM消息若 UE 收 到 的 URA UPDATE CONFIRM 消 息 中 包 含 一 个 协 议 错 误 , 致 使 变 量

PROTOCOL_ERROR_REJECT为 TRUE,UE应执行下述错误处理。UE应检查V303的值,并且: 若V303等于或小于N303,UE应:

设置变量 PROTOCOL_ERROR_INDICATOR为 TRUE; 在上行链路 CCCH上重发URA UPDATE消息; 重新启动定时器 T303; 增加计数器V303; UE应根据 8.3.2.2设定URA UPDATE消息中信息元素的值。

若V303大于N303,UE应: 进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

8.3.2.8 T303超时或URA重选定时器 T303超时,及/或在等待 URA UPDATE CONFIRM消息时,进行了到其他 UTRA小区

(包含先前的服务小区)的重选,UE应检查V303的值,并且: 若 V303等于或小于 N303,UE应在上行链路 CCCH上重发 URA UPDATE消息,重新启

动定时器 T303并增加计数器V303。UE应根据 8.3.2.2设定 CELL UPDATE消息中信息元素的值。

若V303大于N303,UE应进入空闲模式。过程结束,并向非接入层指示连接失败。其他动作如 8.5.2所述。

8.3.2.9 UTRAN对UTRAN MOBILITY INFORMATION CONFIRM消息的接收 见 8.3.3.4 节。

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8.3.3 UTRAN移动性信息

图 40:UTRAN 移动性信息过程,正常流程

图 41: UTRAN 移动性信息过程,失败流程

8.3.3.1 概述 该过程用于为一个处于连接模式的 UE分配一个新的 C-RNTI和/或 U-RNTI,以及其他与UTRAN移动性相关的信息。8.3.3.2 启动 UTRAN在下行链路DCCH上向UE发送UTRAN MOBILITY INFORMATION消息。8.3.3.3 UE对UTRAN MOBILITY INFORMATION消息的接收 当 UE 收到 UTRAN MOBILITY INFORMATION 消息,应执行下文所述动作并在上行链路CCCH 上发送 UTRAN MOBILITY INFORMATION CONFIRM 消息。当 RLC 证实 UTRAN MOBILITY INFORMATION CONFIRM消息的发送后,过程结束。若包含信息元素"new U-RNTI",UE应存贮并开始使用信息元素的值作为当前的U-RNTI。若包含信息元素"new C-RNTI",UE应存贮并开始使用信息元素的值。若信息元素"new U-RNTI"和信息元素"new C-RNTI"都不存在,UE应保留先前分配的 U-RNTI

和 C-RNTI的值。其他信息元素的处理见 8.6。

8.3.3.4 UTRAN对UTRAN MOBILITY INFORMATION CONFIRM消息的接收当收到 UTRAN MOBILITY INFORMATION CONFIRM 消息时,UTRAN 可能删除旧的 C-

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RNTI和U-RNTI。过程结束。8.3.3.5 无效的UTRAN MOBILITY INFORMATION消息若 UTRAN MOBILITY INFORMATION 消 息 包 含 协 议 错 误 致 使 变 量

PROTOCOL_ERROR_REJECT为 TRUE,UE应: 在上行链路 DCCH上使用AM RLC发送UTRAN MOBILITY INFORMATION FAILURE,

并设置信息元素"failure cause"为"protocol error"; 包 含 信 息 元 素 "Protocol error information" , 设 为 变 量

PROTOCOL_ERROR_INFORMATION的值; 当 RLC确认 UTRAN MOBILITY INFORMATION FAILURE消息的发送后,UE应恢复正

常操作,如同没有收到无效的UTRAN MOBILITY INFORMATION消息一样。过程结束。8.3.4激活集更新

图 42:激活集更新过程,成功实例

图 43:激活集更新过程,失败实例

8.3.4.1 概述激活集更新过程用于更新 UE与 UTRAN之间连接的激活集。该过程应在 CELL_DCH状态下

使用。UE在配置新的无线链路时一直使用旧的无线链路。UE也应在该过程中一直使用发送器。该过程仅用于 FDD模式。8.3.4.2 启动当UTRAN要求处于 CELL_DCH状态的UE对连接的激活集执行以下的修改时,启动该过程:a) 无线链路的增加;b) 无线链路的去除;c) 无线链路的增加和去除相结合。

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在 a)和 c)中,UTRAN应: 在发送命令给UE前在UTRAN中准备好新增加的无线链路。在所有情况下,UTRAN应: 在下行链路DCCH上使用AM或UM RLC发送ACTIVE SET UPDATE消息。UTRAN应包含以下信息: 信息元素"Radio Link Addition Information":下行链路 DPCH信息和其他与增加的无线链

路相关的可选参数,以及作为参考 ID的信息元素"Primary CPICH info",指示哪些无线链路需要增加;该信息元素使用于 a)和 c)中;

信息元素"Radio Link Removal Information":信息元素"Primary CCPCH Info"作为参考ID,指示哪些无线链路需要去除。该信息元素使用于 b)和 c)中。

若在激活集更新过程中,当全部无线链路同时进行替换时执行了 SRNS重定位,UTRAN应在ACTIVE SET UPDATE 消息中包含信息元素 "U-RNTI"和 "CN domain identity" 及 "NAS system information"。8.3.4.3 UE对ACTIVE SET UPDATE消息的接收当收到 ACTIVE SET UPDATE 消息, UE 应将收到的信息元素 "Radio Link Addition

Information" 和 "Radio Link Removal Information"存贮到变量ORDERED_ASU。UE应根据 8.6所述按所收到的信息元素进行操作,除非下文另有规定。UE应: 首先,增加信息元素"Radio Link Addition Information"所指示的无线链路; 去除信息元素"Radio Link Removal Information"所指示的无线链路。若 UE激活集已满或

即将满,在增加包含在信息元素"Radio Link Addition Information"中的无线链路之前,应先去除一个包含在信息元素"Radio Link Removal Information"中的无线链路;

若ACTIVE SET UPDATE消息中包含信息元素"U-RNTI",更新其标识; 若 ACTIVE SET UPDATE 消息中包含信息元素 "CN domain identity" 和 "NAS system

information",UE 应将信息元素 "NAS system information"的内容发送到 "CN domain identity"指示的非接入层实体;

若 ACTIVE SET UPDATE 消息中包含与所要增加的无线链路相关的信息元素 'TFCI combining indicator',UE应配置 L1使新链路的 TFCI(field 2)与 TFCI(field 2)组合集中已有链路相结合;

在上行链路 DCCH上使用 AM RLC发送 ACTIVE SET UPDATE COMPLETE消息,无须等待物理层的同步;

若设置了变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO,UE应包含信息元素 "Radio bearer uplink ciphering activation time info",其值设为该变量的值;

当 RLC 证实 ACTIVE SET UPDATE COMPLETE 消息的发送, UE 应清除变量ORDERED_ASU 内 容 , 清 除 变 量RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO。在UE侧过程结束。

8.3.4.4 异常情况:UE不支持的配置 若UTRAN 命令UE使用一个它不支持的配置,或 ACTIVE SET UPDATE消息的信息元素"Radio Link Removal Information"中的无线链路不在激活集中,UE应:

保留激活集和ORDERED_ASU的内容,如同收到ACTIVE SET UPDATE消息前一样; 在DCCH上使用确认模式 RLC发送ACTIVE SET UPDATE FAILURE消息;

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设置信息元素"failure cause" 值为"configuration unacceptable"; 当 RLC证实 RADIO BEARER SETUP FAILURE消息的成功发送后,过程结束。

8.3.4.5 UTRAN对ACTIVE SET UPDATE COMPLETE消息的接收当UTRAN收到ACTIVE SET UPDATE COMPLETE消息后: UTRAN可能去除 b)和 c)中指示去除的链路; UTRAN侧过程结束。

8.3.4.6 UTRAN对ACTIVE SET UPDATE FAILURE消息的接收当 UTRAN收到 ACTIVE SET UPDATE FAILURE消息后,UTRAN可能删除包含在信息元

素"Radio Link Addition Information"中的链路。UTRAN侧过程结束。8.3.4.7随后收到的ACTIVE SET UPDATE消息若由于之前收到的 ACTIVE SET UPDATE消息已已经设置了变量 ORDERED_CONFIG,UE

应: 忽略随后收到的ACTIVE SET UPDATE消息; 保持收到随后的ACTIVE SET UPDATE消息之前的配置。

8.3.4.8 同时发生不兼容的重配置若由于其他除ACTIVE SET UPDATE之外的任何消息已经设置了变量ORDERED_CONFIG或

ORDERED_ASU,UE应 在 DCCH 上使用确认模式发送 ACTIVE SET UPDATE FAILURE 消息。设置信息元

素"failure cause" 为 "incompatible simultaneous reconfiguration"; 当 RLC证实ACTIVE SET UPDATE FAILURE消息的成功发送,过程结束。UE应保留激

活集和ORDERED_ASU的内容,如同收到ACTIVE SET UPDATE消息前一样。8.3.4.9 无效的ACTIVE SET UPDATE消息若变量 ORDERED_CONFIG和 ORDERED_ASU都没有设置,且 ACTIVE SET UPDATE消息

中包含协议错误致使变量 PROTOCOL_ERROR_REJECT为 TRUE,UE应: 在上行链路 DCCH上使用 AM RLC发送 ACTIVE SET UPDATE FAILURE消息,并设置

信息元素"failure cause"为"protocol error"; 包 含 信 息 元 素 "Protocol error information" , 设 为 变 量

PROTOCOL_ERROR_INFORMATION的值; 当 RLC确认ACTIVE SET UPDATE FAILURE消息的发送后,UE应恢复正常操作,如同

没有收到无效的ACTIVE SET UPDATE消息一样。过程结束。

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8.3.5 硬切换

8.3.5.1 非同步硬切换

8.3.5.1.1 概述 非同步硬切换过程的目的是去除激活集中所有的无线链路,并根据目标小区的 SFN(见

8.5.17),在UE中建立改变了上行链路传输定时和 CFN的新的无线链路。8.3.5.1.2 启动 网络启动非同步硬切换通常通过物理信道重配置(8.2.6),但也可通过无线承载的建立(8.2.1),无线承载的重配置(8.2.2),无线承载的释放(8.2.3)或传输信道重配置(8.2.4)来执行。若信息元素"Timing indication"有值"initialise",UE应启动非同步硬切换。8.3.5.2.1 同步硬切换

8.3.5.2.1 概述同步硬切换过程的目的是去除激活集中所有的无线链路,并保持上行链路传输定时和 CFN,

在UE中建立无线链路。该过程仅当UTRAN在硬切换之前知道目标 SFN定时的情况才被启动。UTRAN可以通过两种

方法获知目标 SFN定时:- UE在测量"CFN-SFN observed time difference"时读取 SFN,并在MEASUREMENT REPORT消息中发送给UTRAN;

- UTRAN内部知道小区间的时间差别。8.3.5.2.2 启动网络启动同步硬切换通常通过物理信道重配置(8.2.6),但也可通过无线承载的建立

(8.2.1),无线承载的重配置(8.2.2),无线承载的释放(8.2.3)或传输信道重配置(8.2.4)来执行。若信息元素"Timing indication"有值"maintain",UE应启动同步硬切换。

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8.3.6 系统间切换到UTRAN

图 44:系统间切换到 UTRAN,成功实例

8.3.6.1 概述 系统间切换过程用于在网络控制下,将 UE与另一无线接入技术(如 GSM)的连接移交到UTRAN。8.3.6.2 启动 当一个非UTRAN的无线接入技术,如 GSM,使用系统特定的过程命令 UE执行一个到 UTRAN的切换时,启动该过程。

HANDOVER TO UTRAN COMMAND消息通过执行系统间切换的无线接入技术发送到UE。UTRAN应在HANDOVER TO UTRAN COMMAND消息中包含以下信息: 信息元素"U-RNTI"; 信息元素"Predefined radio configuration identity",指示使用 RB,传输信道和物理信道参

数的哪种预先定义的配置; 物理信道信息元素。注:在切换到 UTRAN过程中,UTRAN只能在该过程专有的一定范围内分配信息元素 "U-

RNTI"和"scrambling code",在完成切换过程后,UTRAN可能进行重新分配。8.3.6.3 UE对HANDOVER TO UTRAN COMMAND消息的接收即使对目标 UTRAN小区和/或频率没有进行预先 UE测量时,UE也应能接收 HANDOVER

TO UTRAN COMMAND消息并执行系统间切换。UE应根据 8.6节按收到的信息元素进行动作,除非下文另有规定。UE应: 存贮信息元素"U-RNTI"的值; 根据信息元素"Predefined radio configuration identity"指示的预定参数初始化信令链路、

RB和业务信道; 根据信息元素"Predefined radio configuration identity"指示的预定参数和收到的物理信道信

息元素初始化物理信道; 考虑收到的信息元素"Maximum allowed UL TX power",执行一个开放环路评估以确定上

行链路发射功率,同时转移到 CELL_DCH状态 提供与系统间切换之前相同的加密算法(加密的 /未加密的,算法),除非信息元

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素"Ciphering algorithm"要求改变算法。若 UE 成功地建立了与 UTRAN 的连接,应在上行链路 DCCH 上发送 HANDOVER TO

UTRAN COMPLETE消息。当 RLC确认了 HANDOVER TO UTRAN COMPLETE消息的成功发送,过程结束。8.3.6.4 无效的Handover to UTRAN command消息若 UE收到的 HANDOVER TO UTRAN COMMAND 消息中包含一个协议错误,致使变量

PROTOCOL_ERROR_REJECT为 TRUE,UE 应: 恢复切换前到源无线接入技术所使用的连接; 向源无线接入技术发送指使,失败原因为"protocol error"; 若可能,向其他无线接入技术发送 RRC STATUS消息,包含信息元素"Protocol error

information",且其内容设为变量 PROTOCOL_ERROR_INFORMATION的值; 其他细节由源无线接入技术相关的规范来规定。

8.3.6.5 UE无法执行切换 若UE不能成功建立与 UTRAN的连接,UE应终止过程,包括释放相关资源,恢复使用切换前的连接,并向其他无线接入技术指示失败。当从其他无线接入技术收到失败指示,UTRAN应释放相关资源和与该 UE相关联的上下文信

息。8.3.6.6 UTRAN对HANDOVER COMPLETE消息的接收当收到 HANDOVER COMPLETE消息后,UTRAN应认为系统间切换过程成功,并向 CN指

示。

8.3.7 系统间切换来自UTRAN

图 45:系统间切换来自 UTRAN,成功实例

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图 46:系统间切换来自 UTRAN,失败实例

8.3.7.1 概述 系统间切换过程用于在网络控制下,将 UE与UTRAN之间的连接转移到另一无线接入技术,如GSM。该过程用在 CELL_DCH状态和 CELL_FACH状态。8.3.7.2 启动当 UTRAN 命令处于 CELL_DCH或 CELL_FACH状态的 UE执行一个切换到另一非 UTRAN

无线接入技术时,启动该过程。为启动该过程,UTRAN发送 INTER-SYSTEM HANDOVER COMMAND消息。

8.3.7.3 UE对 INTER-SYSTEM HANDOVER COMMAND消息的接收UE应执行以下动作: 使用信息元素"Inter system message"的内容建立与其他无线接入技术的连接。该信息元素

包含一个信息元素"System Type"指示的其他标准所规定的消息,并携带与其他无线接入技术相关的候选/目标小区标识和无线参数;信息元素"System Type"和适用标准的对应关系如下:

Value of the IE "System type"

Standard to apply

GSM except PCS 1900

GSM 04.18, version 8.5.0 or later, as if the message was sent on any frequency except in the 1900 bandwidth

PCS 1900 GSM 04.18, version 8.5.0 or later, as if the message was sent was in the 1900 bandwidth

cdma2000 TIA/EIA/IS-2000 or later, TIA/EIA/IS-833 or later, TIA/EIQ/IS-834 or later

对每个信息元素"Remaining radio access bearer",将信息元素"RAB info"给出的无线接入承载与信息元素"Inter system message"给出的目标无线接入技术的无线资源相关联。其他用于该关联的信息包含在信息元素"Inter system message"中,其要求见目标系统相关的规范(有待研究);

切换当前连接到其他无线接入技术。注 1:关于到其他无线接入技术建立无线连接和信令过程的要求超出了本规范的范围。注 2:UMTS无线资源的释放由其他无线接入技术启动。注 3:目前只有一个无线接入承载能与信息元素"Inter-system message"相关联,并且此种关联

仅限于 CS域的无线接入承载。假定切换后 PS域的所有无线接入承载保持不变。

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8.3.7.4 系统间切换成功完成在成功完成切换后,UTRAN应释放无线连接并清除相关UE的全部上下文信息。

8.3.7.5 UE无法完成要求的切换若UE不能成功建立与其他无线接入技术的连接,UE应: 恢复与 UTRAN的连接,使用收到 INTER-SYSTEM HANDOVER COMMAND消息前所

使用的资源; 在上行链路 DCCH上使用 AM RLC发送 INTER-SYSTEM HANDOVER FAILURE消息。

当 RLC证实 INTER-SYSTEM HANDOVER FAILURE消息的发送后,过程结束。8.3.7.6 无效的 INTER-SYSTEM HANDOVER COMMAND消息若 INTER-SYSTEM HANDOVER COMMAND 消息中包含一个协议错误,致使变量

PROTOCOL_ERROR_REJECT为 TRUE,UE应: 在上行链路 DCCH上使用 AM RLC发送 INTER-SYSTEM HANDOVER FAILURE消息,并且设置信息元素"failure cause"为"protocol error";

包 含 信 息 元 素 "Protocol error information" , 设 为 变 量PROTOCOL_ERROR_INFORMATION的值;

当 RLC证实 INTER-SYSTEM HANDOVER FAILURE消息的成功发送后,UE应恢复正常操作,如同没有收到无效的 INTER-SYSTEM HANDOVER COMMAND消息一样。过程结束。

8.3.7.7 UTRAN对 INTER-SYSTEM HANDOVER FAILURE消息的接收当 UTRAN收到 INTER-SYSTEM HANDOVER FAILURE消息后,UTRAN将释放在其他无线

接入技术中的资源。

8.3.8 系统间小区重选到UTRAN

8.3.8.1 概述 该过程用于在 UE以及一定程度其他无线接入技术的控制下,将 UE与另一无线接入技术(如GSM/GPRS)的连接转移到UTRAN。8.3.8.2 启动当 UE根据[4]规定的准则进行了一个到 UTRAN的小区重选,UE应启动该过程。UE进行的

系统间小区重选可能使用其他无线接入技术广播的系统信息或UE专用信息。

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UE应根据 8.1.3启动 RRC连接建立过程,除了 RRC CONNECTION REQUEST消息中的信息元素"establishment cause"应设置为"Inter-system cell reselection"。当启动 RRC连接建立后,UE应释放其他无线接入技术的全部资源。8.3.8.3 UE无法完成系统间小区重选若在UE启动 RRC连接建立前系统间小区重选失败,UE可能回到其他无线接入技术。若 RRC连接建立失败,UE应进入空闲模式。

8.3.9 系统间小区重选来自UTRAN

8.3.9.1 概述该过程用于在 UE以及一定程度网络的控制下,将 UE与UTRAN的连接转移到另一无线接入

技术(如GSM/GPRS)。8.3.9.2 启动该过程能在 CELL_FACH、CELL_PCH或URA_PCH状态下启动。根据[4]规定的准则,当 UE在收到系统信息的基础上,进行到非 UTRAN无线接入技术的小

区重选,UE应: 启动定时器 T309; 根据规范启动与其他无线接入技术连接的建立。

8.3.9.3 成功进行小区重选当UE成功选择了一个其他无线接入技术的小区,并启动一个连接的建立,UE应停止定时器

T309并释放全部UTRAN的资源。UTRAN应在收到UE到其他无线接入技术连接建立完成的指示后,释放全部UE专用资源。

8.3.9.4 T309超时若 T309在UE到其他无线接入技术建立连接的启动之前超时,UE应恢复与UTRAN的连接,

使用系统间 小区重选启动前的资源。

8.4、测量过程 UE测量分为 6个不同类型的测量: 频率内测量:测量与激活集同频率的下行物理信道。

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频率间测量:测量与激活集不同频率的下行物理信道。 系统间测量:测量属于其他无线接入技术的下行接入信道。 业务量测量:测量上行业务量。 质量测量:测量质量参数。 内部测量:测量UE的发射功率和UE接收的信号电平。同类测量可以作为 UTRAN不同功能的输入。UE应能支持一定数量的测量并行进行。UE也

应能支持对每个测量独立地控制及报告。UE 监视的小区分为两类:1. 属于激活集的小区。用户信息从这些小区发送,它们同时进行解调制并密切相结合。在

FDD中,这些小区涉及到软切换。在 TDD模式,激活集通常只有一个小区组成。2. 不在激活集中,但根据UTRAN分配的相邻节点列表而被监测的小区,属于监测集。3. 不在激活集中,没有从 UTRAN收到相邻节点列表,但被 UE检测到的,属于检测集。非

列表集频率内测量只能由UE在 CELL_DCH状态提出请求。注:检测集并不排除属于监测集的小区。

UTRAN通过发送MEASUREMENT CONTROL消息启动一个 UE的测量。该消息中包括以下测量控制信息:

1. 测量类型:上文列出的其中一种类型,描述UE测量的内容。2. 测量标识号:当UTRAN要修改或释放测量时用来指示的号码,UE在测量报告中也使用。3. 测量命令:三种不同测量命令之一:

建立 setup:建立一个新的测量; 修改modify:修改以前定义的测量,如改变报告准则; 释放 release:停止一个测量并清除UE内所有与该测量相关的信息

4. 测量对象:UE测量的对象及相关目标信息。5. 测量量:UE应测量的数量。它也包含对测量的筛选。6. 报告量:除对特定事件必须的数量报告之外,UE应包含在报告中的其他数量。7. 测量报告准则:测量报告的触发事件,如周期性或时间触发的报告。8. 报告模式(reporting mode):指出UE传输测试报告是用AM或UM RLC。所有这些测量参数依赖于测量类型并在以后将详细描述。当满足报告产生的准则时,如一个特定的事件发生或周期性报告的的时刻到达,UE应向

UTRAN发送MEASUREMENT REPORT消息。在空闲模式下,UE应根据 BCCH上传送的系统信息块 11包含的测量控制信息执行测量。在 CELL_FACH、CELL_PCH或 URA_PCH状态,UE应根据 BCCH上广播的系统信息块 12

包含的测量控制信息执行测量。若 UE没有收到系统信息块 12,它应根据 BCCH上广播的系统信息块 11包含的测量控制信息执行测量。在 CELL_DCH状态,UE应使用MEASUREMENT REPORT消息向 UTRAN报告无线链路相

关测量。UTRAN 还可能要求 UE 报告所检测到的非列表小区。UE 发出 MEASUREMENT REPORT消息的触发事件是检测到的小区超过了一个绝对阈值。为了接收信息以建立直接宏分集(FDD),或者为了支持 DCA算法(TDD),UTRAN可能

要求UE在以下 RACH上传输的消息中附加无线链路相关测量报告:- RRC CONNECTION REQUEST消息用于建立一个 RRC连接;- RRC CONNECTION RE-ESTABLISHMENT REQUEST消息用于重建立一个 RRC连接;- INITIAL DIRECT TRANSFER消息用于建立一个信令连接;- CELL UPDATE消息用于回应一个源于UTRAN的寻呼;- MEASUREMENT REPORT消息用于报告上行业务量;- CAPABILITY REQUEST消息用于请求一个 PUSCH容量(仅用于 TDD)。注意:测量结果能否附加到其他信息,能否使用其他方案都有待研究。

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8.4.1 测量控制

图 47:测量控制,正常实例

图 48:测量控制,UE 恢复旧测量

8.4.1.1 概述该过程用于建立、修改或释放UE内的一个测量。

8.4.1.2 启动UTRAN通过在下行链路 DCCH上使用 AM RLC发送MEASUREMENT CONTROL消息,请

求UE内一个测量的建立、修改或释放。当建立一个新的测量时,UTRAN应设置信息元素"Measurement identity number"的值为一个不

被其他测量使用的值。UTRAN可能在同一"Measurement type"中使用不同的"Measurement identity number" 。在这种情况下,不同"Measurement identity numbers"的测量其中的"Measurement object" 可以不同。当"Measurement type" = "Intra-frequency"时,若对同一"Measurement type"内附加测量没有指示 "Measurement object",意味着只有激活集小区是"Measurement objects"。当一个当前测量被修改或释放,UTRAN应设置信息元素"Measurement identity number"的值为

当前测量使用的值。当修改一个"Measurement identity number"中的信息元素时,UTRAN不需要指示除被修改信息元素以外的其他信息元素,UE应继续使用没有被修改的信息元素的当前值。

UTRAN应在给UE分配测量时考虑 UE性能。8.4.1.3 UE对MEASUREMENT CONTROL的接收在收到MEASUREMENT CONTROL消息时,UE应执行 8.6所述动作,除非下文另有规定。UE应: 读信息元素"Measurement command"。若信息元素"Measurement command"的值为"setup",UE应:

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根据信息元素"measurement identity number",在变量MEASUREMENT_IDENTITY中保存该测量;

将 由 信 息 元 素 "Measurement object" 、 "measurement quantity" 、 "reporting quantity"、"measurement reporting criteria"、"measurement validity"、"reporting mode",以及所有对该测量类型有效的(若存在)信息元素 "additional measurement identity number"定义的控制信息存贮在变量MEASUREMENT_IDENTITY中;并且对测量类型"inter-system measurement"或"inter-frequency measurement",- 若至少一个压缩模式的模式序列是激活的,同时包含信息元素 "DPCH Compressed

mode status info",则根据为该测量标识号所存贮的控制信息,使用可选的压缩模式开始进行测量,除非它被同时激活;或

对其他任何测量类型,- 根据该测量标识号存贮的控制信息开始进行测量。

若信息元素"Measurement command"的值为"modify",UE应 检索出 IE "measurement identity number"中标识相关联的测量信息; 若MEASUREMENT CONTROL消息中存在以下任何信息元素:"measurement object",

"measurement quantity" , "reporting quantity" , "measurement reporting criteria", "measurement validity", "reporting mode"或 "Additional measurement identity number",用相应信息元素中定义的控制信息替换存贮的信息;

存贮新的信息元素集,并将它们与测量标识号相关联;并且 根据新存入的测量控制信息继续测量。若信息元素"Measurement command"的值为"release" ,UE应: 终止与"measurement identity number"中标识相关联的测量; 清除全部与该测量标识号相关的测量控制信息。若存在信息元素"DPCH Compressed Mode Status Info",UE应: 对 每 一 个 信 息 元 素 "TGPSI" , 若 "TGPS status flag" 为 "activate" , 则 激 活 变 量

TGPS_IDENTITY中存贮的相应的模式序列,并开始对应于每个激活模式序列的模式序列测量目的所进行的频率间测量和/或系统间测量;

对每一个信息元素"TGPSI",若"TGPS status flag"为"deactivate",则去活(使不活跃)变量 TGPS_IDENTITY中存贮的相应的模式序列,并终止对应于每个非激活模式序列的模式序列测量目的所进行的频率间测量和/或系统间测量。

当以上动作执行后,过程结束。8.4.1.4 UE不支持的测量若UE不支持UTRAN指示的测量,UE应 恢复收到MEASUREMENT CONTROL消息以前的测量配置; 发送MEASUREMENT CONTROL FAILURE消息。UE应设置信息元素"failure cause"为 "unsupported measurement"。

8.4.1.5 无效的MEASUREMENT CONTROL消息若MEASUREMENT CONTROL消息包含协议错误,致使变量 PROTOCOL_ERROR_REJECT

为 TRUE ,UE应: 在上行链路 DCCH上使用 AM RLC发送MEASUREMENT CONTROL FAILURE消息,

并设置信息元素"failure cause"为"protocol error";

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包 含 信 息 元 素 "Protocol error information" , 其 内 容 为 变 量PROTOCOL_ERROR_INFORMATION的值;

当 RLC确认MEASUREMENT CONTROL FAILURE消息的发送后,UE应恢复正常操作如同没有收到无效的MEASUREMENT CONTROL消息一样。过程结束。

8.4.1.6 UTRAN对MEASUREMENT CONTROL FAILURE消息的接收UTRAN在收到MEASUREMENT CONTROL FAILURE消息后,过程结束。

8.4.1.7 从 CELL_DCH状态转移到 CELL_FACH状态后的测量UE在从 CELL_DCH状态转移到 CELL_FACH状态后对不同的测量类型应遵从以下的规则:

频率内测量:UE应停止 MEASUREMENT CONTROL消息中指定的频率内测量报告。在转到 CELL_FACH 状态后,UE 开始监 视从 "system information block 12"(或 "system

information block 11")收到的信息元素 "intra-frequency cell info"中列出的相邻小区。若 UE 中没有对 CELL_DCH 状态预先分配的、有效的频率内测量,UE 应存贮 "system

information block 12"(或"system information block 11")中的信息元素"intra-frequency measurement reporting criteria",以便在随后转入 CELL_DCH状态后使用。若 UE从"system information block 12"(或"system information block 11")收到信息元素 "intra-

frequency reporting quantity for RACH reporting"和"maximum number of reported cells on RACH",UE使用该信息在 RACH消息中报告测量结果。频率间测量:

UE应停止 MEASUREMENT CONTROL消息中指定的频率间测量报告。在转到 CELL_FACH 状态后,UE 开始监 视从 "system information block 12"(或 "system

information block 11")收到的信息元素 "inter-frequency cell info"中列出的相邻小区。UE只能在 8.5.13给出的测量时段进行对其他频率的测量。

系统间测量:UE应停止 MEASUREMENT CONTROL消息中指定的系统间测量报告。在转到 CELL_FACH 状态后,UE 开始监 视从 "system information block 12"(或 "system

information block 11")收到的信息元素 "inter-system cell info"中列出的相邻小区。UE只能在 8.5.13给出的测量时段进行对其他频率的测量。

质量测量:从 CELL_DCH状态转移到 CELL_FACH状态后,UE应停止 MEASUREMENT CONTROL消

息中指定的质量测量报告。UE 内部测量:

UE应停止 MEASUREMENT CONTROL消息中指定的UE内部测量报告。业务量测量:

UE应根据以下规则停止或继续MEASUREMENT CONTROL消息中指定的业务量测量报告: 若信息元素 "measurement validity"值为 "release",UE 应删除变量 MEASUREMENT

IDENTITY相关的测量; 若信息元素 "measurement validity"值为"resume",且信息元素 "UE state for reporting"值

为"CELL_DCH",UE应停止测量报告,保存变量MEASUREMENT IDENTITY相关的测量,以备再次转移到 CELL_DCH状态时使用;

若信息元素"measurement validity"值为"resume",且信息元素 "UE state for reporting"值

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为"all states", UE应继续进行测量报告; 若 UE具有预先存贮的测量,其信息元素"measurement validity"值为"resume",且信息元

素 "UE state for reporting"值为"all states except CELL_DCH",UE应恢复该测量以及相关的报告。

若转移到 CELL_FACH状态时,MEASUREMENT CONTROL消息中没有指定业务量测量,UE应根据"system information block 12"(或"system information block 11")开始业务量测量。8.4.1.8 从 CELL_FACH状态到 CELL_DCH状态后的测量

UE在从 CELL_FACH状态转移到 CELL_DCH状态后对不同的测量类型应遵从以下的规则:频率内测量:若 UE 在 CELL_DCH 状态时存有频率内测量,其信息元素 "measurement validity"值

为"resume","UE state for reporting"值为"CELL_DCH",UE应继续测量报告;若UE进行小区重选离开了 CELL-DCH状态,UE不应继续测量。若 UE之前没有分配测量,应继续监视从"system information block 12"(或"system information

block 11")收到的信息元素"intra-frequency cell info"中列出的相邻节点。若"system information block 12"(或"system information block 11")中包含信息元素"intra-frequency measurement reporting criteria",UE 应在报告准则满足时发送 MEASUREMENT REPORT 消息。当 UE 收到消息MEASUREMENT CONTROL 中包含一个指定的频率内测量,UE应停止对"system information block 12"(或"system information block 11")包含的信息元素"intra-frequency cell info"中所列相邻节点的监视及测量报告。同时删除从"system information block 12"(或"system information block 11")中收到的测量报告准则。频率间测量:

UE应停止对"system information block 12"(或"system information block 11")包含的信息元素"inter-frequency cell info"中所列相邻节点的监视及测量报告。若 UE原存有频率间测量,其信息元素"measurement validity"值为"resume","UE state for reporting"值为"CELL_DCH",UE应继续测量报告。系统间测量:

UE应停止对"system information block 12"(或"system information block 11")包含的信息元素"inter-sytem cell info"中所列相邻节点的监视及测量报告。若 UE原存有系统间测量,其信息元素"measurement validity"值为"resume","UE state for reporting"值为"CELL_DCH",UE应继续测量报告。业务量测量:

UE应根据以下规则停止或继续MEASUREMENT CONTROL消息中指定的业务量测量报告: 若 该 测 量 的 信 息 元 素 "measurement validity" 值 为 "release" , UE 应 删 除 变 量

MEASUREMENT IDENTITY所相关的测量; 若该测量的信息元素 "measurement validity"值为 "resume",且信息元素 "UE state for

reporting"值为 "CELL_FACH",UE 应停 止测量报告,保存变量 MEASUREMENT IDENTITY所相关的测量,以备再次转移到 CELL_FACH状态后使用;

若该测量的信息元素 "measurement validity"值为 "resume",且信息元素 "UE state for reporting"值为"all states", UE应继续进行测量报告。

若 UE 之前存贮有测量,其信息元素 "measurement validity"值为"resume",且"UE state for reporting"为"CELL_DCH",UE应继续测量并进行相关的报告。在转移到 CELL_DCH状态时,若MEASUREMENT CONTROL消息中没有指定对 UE的业务

量测量,UE应根据"system information block 12"(或"system information block 11")继续正在进行的业务量测量。

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消息MEASUREMENT CONTROL指定的业务量测量参数总是优先于"system information block 12"(或 "system information block 11")传递的参数。若 UE 收到的消息 MEASUREMENT CONTROL中包含业务量测量分配信息,UE应删除从"system information block 12"(或"system information block 11")中收到的业务量测量控制信息。8.4.1.9 从空闲模式转移到 CELL_DCH状态后的测量

UE在从空闲模式转移到 CELL_DCH状态后对不同的测量类型应遵从以下的规则:频率内测量:

UE应继续监视从"system information block 12"(或"system information block 11")收到的信息元素 "intra-frequency cell info"中所列相邻节点。若 "system information block 12"(或 "system information block 11")中包含信息元素"intra-frequency measurement reporting criteria",UE应在报告准则满足时发送MEASUREMENT REPORT消息。当 UE收到消息MEASUREMENT CONTROL中包含一个频率内测量分配信息,UE应停止

对"system information block 12"(或"system information block 11")中信息元素 "intra-frequency cell info"所列相邻节点的监 视及测量报告。同时删除从 "system information block 12"(或 "system information block 11")中收到的测量报告准则。频率间测量:

UE应停止对"system information block 12"(或"system information block 11")中信息元素"inter-frequency cell info"所列相邻节点的监视及测量报告。系统间测量:

UE应停止对"system information block 12"(或"system information block 11")中信息元素"inter-system cell info"所列相邻节点的监视及测量报告。业务量测量:

UE应开始"system information block 12"(或"system information block 11")中指定的业务量测量。8.4.1.10 从空闲模式转移到 CELL_FACH状态后的测量

UE在从空闲模式转移到 CELL_FACH状态后对不同的测量类型应遵从以下的规则:频率内测量:

UE应开始监视从"system information block 12"(或"system information block 11")收到的信息元素"intra-frequency cell info"所列相邻节点。若 "system information block 12"(或 "system information block 11")中包含信息元素 "intra-

frequency measurement reporting criteria",UE应存贮该信息以备随后转到 CELL_DCH状态时使用。若 UE从"system information block 12"(或"system information block 11")收到信息元素"intra-

frequency reporting quantity for RACH reporting"和"maximum number of reported cells on RACH",UE使用该信息在 RACH消息中报告测量结果。频率间测量:

UE 应开始对 "system information block 12"(或 "system information block 11")中信息元素 "inter-frequency cell info"所列相邻节点的监视。

UE只能在 8.5.13给出的测量时段进行对其他频率的测量。系统间测量:

UE应开始对"system information block 12"(或"system information block 11")中信息元素"inter-system cell info"所列相邻节点监视。

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UE只能在 8.5.13给出的测量时段进行对其他频率的测量。业务量测量:

UE应开始"system information block 12"(或"system information block 11")中指定的业务量测量。8.4.1.11当测量对象无效时的测量业务量测量:若 UE不再使用"traffic volume measurement object"规定的传输信道,UE应忽略任何分配给该

传输信道的测量。若"traffic volume measurement object"规定的传输信道都不在使用,UE应释放该测量及测量 ID。

8.4.2 测量报告

图 49:测量报告,正常实例

8.4.2.1 概述 该过程用于从UE传送测量报告给UTRAN。8.4.2.2 启动在 CELL_DCH状态,当变量MEASUREMENT_IDENTITY中存贮的任何进行的测量报告准则

满足时,UE在上行DCCH上发送MEASUREMENT REPORT消息。在 CELL_FACH状态,当变量MEASUREMENT_IDENTITY中存贮的一个进行中的业务量测

量报告准则满足时,UE在上行DCCH上发送MEASUREMENT REPORT消息。在 CELL_PCH或 URA_PCH状态,UE应先执行小区更新过程转移到 CELL_FACH状态,然

后当变量MEASUREMENT_IDENTITY中存贮的进行中的业务量测量报告准则满足时,在上行DCCH上发送MEASUREMENT REPORT消息。报告准则满足的条件:- 在一个给定的测量的启动之后,或者在与该测量相关的上一次测量报告发送之后,经过了在信息元素"Periodical reporting"中存贮的指示时间;或

- 存贮在信息元素"Measurement reporting criteria"的事件被触发。对不同测量类型报告的事件及触发在以后将详细描述。

UE应使用 AM或 UM RLC发送MEASUREMENT REPORT消息。报告模式依据与被触发的报告的测量标识号相关的信息元素"measurement reporting mode"。对触发MEASUREMENT REPORT消息的测量,UE应:

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设定信息元素"measurement identity number"的值为变量MEASUREMENT_IDENTITY中有关该测量的测量标识数;

根据变量MEASUREMENT_IDENTITY中所存测量的信息元素"reporting quantity",设定信息元素"measurement results"中包含的测量;

根据与测量标识相关的所有测量的 "reporting quantity",设置信息元素 "Additional measured results"中的"Measured results"。该标识存贮在变量MEASUREMENT_IDENTITY的信息元素"additional measurements" 中。若需要包含多个附加的测量结果,UE应根据MEASUREMENT REPORT消息中它们的信息元素"measurement identity number"递增排序。

若MEASUREMENT REPORT消息被一个事件触发,UE应: 根据触发报告的事件设置测量事件结果。

8.4.2.3 UTRAN对MEASUREMENT REPORT消息的接收 当UTRAN收到MEASUREMENT REPORT消息后,测量报告过程结束。

8.5. 常规过程

8.5.1 最初UE标识的选择信息元素 "initial UE identity"的目的是在 RRC连接建立时提供一个唯一的 UE标识。UE对标

识类型的选择应根据下文所述。高层应设置变量 SELECTED_PLMN。若 UE 中的变量 SELECTED_PLMN 值为 "GSM-

MAP",UE根据下列优先级在信息元素"initial UE identity"中选择"UE id type":1. TMSI(GSM-MAP):TMSI(GSM-MAP)若有效则选择。当使用 TMSI(GSM-MAP)

时信息元素"initial UE identity"中应包含信息元素"LAI",以保证其唯一性。2. P-TMSI( GAM-MAP):若无有效的 TMSI( GSM-MAP),且存在有效的 P-

TMSI(GSM-MAP),则选择。当使用 P-TMSI(GSM-MAP)时信息元素"initial UE identity"中应包含信息元素"RAI",以保证其唯一性。

3. IMSI(GSM-MAP):若无有效的 TMSI 及 P-TMSI(GSM-MAP),且存在有效的IMSI(GSM-MAP),则选择。

4. IMEI:若上述条件均不满足则选择 IMEI。在使用时,信息元素 "TMSI(GSM-MAP)"、 "P-TMSI( GAM-MAP) "、 "IMSI( GSM-

MAP)","LAI"和"RAI"应设置为与USIM或 SIM存贮的相应标识值相等。若 UE内变量 SELECTED_PLMN值为"ANSI-41",UE应根据 3GPP2 文档"3GPP2 C.P0004-

A",选择信息元素"Initial UE identity"中的"UE id type"。8.5.2 从连接模式进入空闲模式的行为 当从连接模式进入空闲模式时,UE应选择一个驻留的合适小区。当离开连接模式时,UE根据[4]应进行小区选择。当驻留到一个小区时,UE应根据 8.1节的系统信息过程接收系统信息,根据 8.4节的测量控

制过程进行测量,一旦注册登记,UE应根据 8.2节的寻呼过程准备接收寻呼消息。

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若变量 SELECTED_PLMN中的信息元素"PLMN identity"值为"GSM-MAP",UE应删除在连接模式下收到的 NAS系统信息,获取系统信息块类型 1中的 NAS系统信息,并根据 8.6.1.2 继续操作。当进入空闲模式时,应在USIM中为每个 CN域存贮当前 START值。

8.5.3 DPCCH建立时的开环功率控制此过程仅用于 FDD模式。当建立第一个DPCCH时,UE应开始UL内部环路功率控制根据: DPCCH_Initial_power = DPCCH_Power_offset - CPICH_RSCP。其中: DPCCH_Power_offset 的值为信息元素 "Uplink DPCH power control info"中信息元

素"DPCCH Power offset"。 CPICH_RSCP的值由UE测量。

8.5.4 物理信道建立准则当 UE启动建立一个专用物理信道时,UE应启动定时器 T312并等待 L1发出 N312连续的"in

sync"指示。在收到 N312连续的"in sync"指示时,认为物理信道已建立, 定时器 T312已停止并重置。若定时器 T312在物理信道建立前超时,UE认为"physical channel establishment failure"。

8.5.5 离开服务区的检测当没有发现如 TS25.304中 5.2.2.1节描述的合适小区,UE认为是"out of service area"。

8.5.6 无线链路失败准则在 CELL_DCH状态,当从 L1收到对于 DPCCH物理信道的建立而发出的 N313连续的"out of

sync"指示后,UE应启动 T313。当从 L1收到 N315连续的"in sync"指示和 UE状态发生变化时,UE应停止并重置 T313。若 T313超时,UE认为" Radio link failure"。8.5.7 基于接收信息元素的一般状态转移规则

UE应转移到的状态依赖于以下信息元素的存在:若包含信息元素"Uplink DPCH info"或"Downlink DPCH info",则 UE 转移到 CELL_DCH状态;否则,若"DRX indicator"设定为"DRX with cell updating",则 UE 转移到 CELL_PCH状态;否则,若"DRX indicator"设定为"DRX with URA updating",则 UE 转移到URA_PCH状态;否则,若"DRX indicator"设定为"no DRX"或消息中不存在"DRX indicator",则

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UE 转移到 CELL_FACH状态。结束。

8.5.8 开环功率控制对 FDD,UE在 PRACH传输前应计算第一个前同步功率如下:Preamble_Initial_Power = Primary CPICH DL TX power – CPICH_RSCP + UL interference +

Constant Value其中 Primary CPICH DL TX power 的值为信息元素"Primary CPICH DL TX power",

UL interference 的值为信息元素"UL interference" 并且 Constant Value 的值为信息元素"Constant Value"。

信息元素 "Primary CPICH DL TX power"、 "UL interference"、 "Constant Value"应从 system information block 6和 system information block 7的系统信息中读取。CPICH_RSCP的值应由 UE测量得到。(若系统信息块 6没有广播,则在系统信息块 5中) 只要物理信道配置为 PRACH或 PCPCH传输,当上面公式中任何广播参数发生变化时,UE应重计算 Preamble_Initial_Power。新的 Preamble_Initial_Power应提交到物理层。 对 TDD,UE应根据以下公式分别计算激活的物理信道的 PRACH、DPCH和 USCH的 UL发射功率:

PPRACH = LPCCPCH + IBTS + RACH Constant value注:在 RACH扩频因子为8的情况,RACH Constant value应加上 3dB。 对上行链路专用物理信道:

PDPCH = LPCCPCH+(1-)L0 + IBTS + SIRTARGET+ DPCH Constant value对上行链路共享物理信道:PUSCH = LPCCPCH+(1-)L0 + IBTS + SIRTARGET+ USCH Constant value

其中: PPRACH、PDPCH和 PUSCH:发射功率电平(dBm) LPCCPCH:表示路径损耗的测量值(dB) (参考发射功率"Primary CCPCH Tx Power"由 BCH上广播,系统信息块 5和 6,或在上行链路DPCH功率控制信息元素中分别告知每个UE) L0:路径损耗长期均值(dB) IBTS:小区接收器的干扰信号功率电平(dBm),(对每个激活的上行链路时隙,其 "UL Interference"在 BCH上广播,系统信息块 14,或在上行链路 DPCH功率控制信息元素中分别告知每个UE) : 是一个加权参数,表示路径损耗测量的质量。 可能是一个在上行链路时隙和最近的下行链路 PCCPCH时隙之间的时间延迟函数。 由UE计算 SIRTARGET:目标 SNR(Target SNR in dB)。高层外环调整目标 SIR。其值分别由信息元素"UL DPCH Power Control Info"和"PUSCH Power Control Info"通知UE RACH Constant value:其值从系统信息中读取系统信息块 5和 6。

DPCH Constant value:其值从系统信息中读取系统信息块 5和 6,或在上行链路DPCH功率控制信息元素中分别告知每个UE 。

USCH Constant value:其值从系统信息中读取系统信息块 5和 6。若上行链路 DPCH功率控制信息元素中"CHOICE UL OL PC info"有值为:"Broadcast UL OL

PC info",UE应:从 BCH上的 SIB5和 SIB6获取 Reference Power和 Constant Value,在 SIB14获取所有活跃 UL

时隙的 IBTS否则,UE应:

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从上行链路 DPCH功率控制信息元素获取 Reference Power,Constant Value和所有活跃 UL时隙的 IBTS对于 PUSCH和 PRACH功率控制,UE应从 BCH上的 SIB5,SIB6和 SIB14获取 Reference Power,Constant Value和所有活跃 UL时隙的 IBTS

8.5.9 检测进入服务区(in service area)当检测到一个如 TS25.304 5.2.2.1节描述的合适小区,UE认为该小区是" in service area"。

8.5.10 超帧号超帧号(HFN)在加密和完整性保护算法中分别用于初始化加密序列号(COUNT-C)和完整性

序列号(COUNT-I)的MSB。对于非透明模式的的无线承载,每个无线承载有一个上下行链路COUNT-C,每个信令无线承载有一个上下行链路 COUNT-I。对于所有透明模式的的无线承载,有一个公共上行链路和公共下行链路 COUNT-C,和一个公共上行链路和公共下行链路 COUNT-I。COUNT-C and COUNT-I在安全机构中定义,详见 TS 33.102。这里定义了如下的超帧号:

  MAC-d HFN 24 bits MSB of COUNT-C,对于在 RLC TM上发送的数据   RLC UM HFN  25 bits MSB of COUNT-C,对于在 RLC UM上发送的数据   RLC AM HFN  20 bits MSB of COUNT-C,对于在 RLC AM上发送的数据

RRC HFN 28 bits MSB of COUNT-I START值用于 CN域’X’的所有超帧号的 20个最高有效位的初始化,其他位均为 0。

8.5.11 START

在连接模式,CN域’X’的 START值按照下式计算:STARTX = MSB20 ( MAX {COUNT-C, COUNT-I | all logical channels protected with CKX and IKX})

+ 1STARTX值用于 CN域’X’的所有超帧号的 20个最高有效位的初始化。当进入空闲模式时,每个 CN域的当前 START值存贮在USIM中。

8.5.12 完整性保护完整性保护应在全部 RRC消息上执行,以下消息除外:HANDOVER TO UTRAN COMPLETEPAGING TYPE 1PUSCH CAPACITY REQUESTPHYSICAL SHARED CHANNEL ALLOCATIONRRC CONNECTION REQUESTRRC CONNECTION SETUPRRC CONNECTION SETUP COMPLETERRC CONNECTION REJECT

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SYSTEM INFORMATION (BROADCAST INFORMATION)SYSTEM INFORMATION CHANGE INDICATIONTRANSPORT FORMAT COMBINATION CONTROL注:当使用 UM方式时,MEASUREMENT REPORT有待研究,因在某些情况下 RRC SN存

在同步问题。 对 CCCH和每个信令无线承载,UE应使用两个 RRC超帧号:- "Uplink RRC HFN";- "Downlink RRC HFN"。以及两个消息序列号:- "Uplink RRC Message sequence number";- "Downlink RRC Message sequence number"。以 上 信 息 存 贮 在 每 个 CCCH 和 信 令 无 线 承 载 ( RB0-4 ) 的 变 量

INTEGRITY_PROTECTION_INFO中。RRC消息序列号(RRC SN)随每一个完整性保护的 RRC消息而增加。若重复发送相同的

RRC消息(如 RRC CONNECTION RELEASE,RRC CONNECTION RELEASE COMPLETE),则相应的 RRC SN不增加。8.5.12.1 下行链路的完整性保护若 UE 在信令无线承载上收到的 RRC 消息包含 RB 标识 n,变量 INTEGRITY_

PROTECTION_INFO 中的"Status"为"Started" 并且存在信息元素'Integrity check info',UE应:- 检查信息元素"Integrity check info"内"RRC message sequence number" 的值。若 RRC消息序列号低于或等于变量 INTEGRITY_PROTECTION_INFO 中 RB#n 的 "Downlink RRC Message sequence number", UE 应将变量 INTEGRITY_PROTECTION_INFO 中 RB#n的"Downlink RRC HFN"加 1;

- 根据 8.5.12.3.计算预期消息的鉴定码;- 比较预期消息的鉴定码和收到的信息元素 'Integrity check info'中"message authentication

code" 的值。- 若相同,完整性保护成功。- 若不同,消息应丢弃。

若 UE 在 标 识 为 n 的 信 令 无 线 承 载 上 收 到 一 个 RRC 消 息 , 变 量 INTEGRITY_ PROTECTION_INFO中"Status"为"Started"并且不存在信息元素 'Integrity check info',UE应丢弃该消息。8.5.12.2 上行链路的完整性保护若 UE 在信令无线承载上收到的 RRC 消息包含 RB 标识 n,变量 INTEGRITY_

PROTECTION_INFO 中的"Status"为"Started" 并且存在信息元素'Integrity check info',UE应:- 将变量 INTEGRITY_PROTECTION_INFO 中 RB#n 的 "Uplink RRC Message sequence

number"加 1。当变量 INTEGRITY_PROTECTION_INFO中 RB#n的"Uplink RRC Message sequence number"变为 0 时,UE 应将变量 INTEGRITY_PROTECTION_INFO 中 RB#n的"Uplink RRC HFN"加 1;

- 根据 8.5.12.3.计算预期消息的鉴定码;- 用计算的消息鉴定码代替信息元素"Integrity check info"中"Message authentication code";- 用变量 INTEGRITY_PROTECTION_INFO 中 RB#n 的 "Uplink RRC Message sequence

number"的新值,代替信息元素"Integrity check info"中的"RRC Message sequence number"。

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8.5.12.3 消息鉴定码的计算UE应根据 3G TS 33.102计算消息鉴定码。完整性算法的输入参数MESSAGE (TS 33.102)

结构如下:- 设置消息中的信息元素"Integrity check info"的"Message authentication code"为信令无线承载标识;

- 设置消息中的信息元素"Integrity check info"的"RRC Message sequence number"为 0;- 对消息进行编码;- 如果有的话,附加 RRC 填充的比特串作为编码比特串的最低有效位。

8.5.13 测量时段的计算在 CELL_FACH状态,当帧 SFN值满足下列公式时,UE应在帧内执行频率间和系统间测量:

((SFN div N) mod M_REP = C_RNTI mod M_REP

其中:N 是 FACH的 TTI除以 10msM_REP = 2k

k = k_UTRA – k_Inter_RAT_totk_Inter_RAT_tot是UE支持的除 UTRA外一个系统全部相应 k_Inter_RAT值的和,并且当前小

区发出的系统信息的测量控制消息中所描述的邻居存在。C_RNTI是UE的 C-RNTI值k_UTRA和 k_Inter_RAT从系统信息块类型 11或 12 的信息元素"FACH measurement occasion

info"中读取。当UE 离开服务区或同时执行定制的测量时,允许UE在其他时段进行测量。

8.5.14 接入业务等级的建立PRACH资源(如 FDD的接入时隙和前导信号,TDD的时隙(特定帧分配)和信道化编码)

可能划分为不同的接入业务等级,以便提供不同 RACH使用优先级。FDD中同一接入时隙/信号间隔或 TDD中同一帧分配可能分配多个ASC或全部的ASC。接入业务等级应在 0 i NumASC 7范围内标号(例如 ASC的最大序号为 NumASC+1 =

8)。ASC 使用标识符 i,定义 PRACH 资源的某一划分和相关持续值 Pi。一套 ASC 参数由NumASC+1个参数(I, Pi),i = 0, …, NumASC 组成。

PRACH 划分应使用信息元素"PRACH partition"建立。与每个 ASC相关的持续值 Pi应从 SIB7中的动态坚持级别 N = 1,…, 8和系统信息块类型 5(也可能在系统信息块类型 6)中的持续度量因子 si 推出:P(N) = 2(N 1)

ASC # i 0 1 2 3 4 5 6 7Pi 1 P(N) s2 P(N) s3 P(N) s4 P(N) s5 P(N) s6P(N) s7 P(N)

当 NumASC+1是 PRACH 划分中定义的 ASC数目时,可选择地提供度量因子 si i = 2,…, NumASC。若没有广播度量因子,且NumASC 2,使用缺省值 1。

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若 k 1 广播了度量因子并且 NumASC k+2,应使用最后度量因子 sk+1 作为 i > k +1时 ASC的缺省。

ASC参数组通过 CMAC-Config-REQ原语(见 TS 25.321)提供给 MAC,PRACH 划分通过CPHY-TrCH-Config-REQ原语提供给物理层(见 TS 25.302)。

ASC列举对应优先级的顺序(ASC0=优先级最高,ASC7=优先级最低)。ASC0在紧急呼叫或其他同等优先级时使用。无线承载建立/重配置涉及逻辑信道,分配MAC逻辑信道优先级(MLP)范围 1,…,8。当UE

中MAC子层配置为 RACH发送时,应使用MLP等级在MAC中选择ASC。

8.5.15 接入级别到接入业务级别的映射接入级别仅在初始接入时使用,如当发送一个 RRC CONNECTION REQUEST 消息时。接入级别(AC)和接入业务级别(ASC)之间的映射由 SIB5 的信息元素"AC-to-ASC mapping"指示。

AC 和 ASC 之间的对应应按下列指示:AC 0 - 9 10 11 12 13 14 15

ASC 1st IE 2nd IE 3rd IE 4th IE 5th IE 6th IE 7th IE

在表中,"nth IE" 指定一个ASC号码 i 范围 0 - 7 对应AC。对随机接入, 使用各个 ASC的隐含参数。当 UE为几个 AC成员时,应选择最高 AC号码的

ASC。在连接模式下,不使用AC。

8.5.16 PLMN类型选择UE应根据[4]执行 PLMN选择和重选,并在变量 SELECTED_PLMN中存贮被选的 PLMN标

识,如下:- 若选择一个 GSM-MAP类型的 PLMN,UE应设置变量 SELECTED_PLMN中的"PLMN

Type"为"GSM-MAP"并存贮该 PLMN的 PLMN标识。- 若选择一个 ANSI-41 类型的 PLMN, UE 应设置 SELECTED_PLMN 中的 "PLMN

Type"为"ANSI-41"并存贮该 PLMN的系统鉴定(SID)。

8.5.17 CFN的计算

8.5.17.1 从 CELL_FACH状态转移到 CELL_DCH状态时的初始化  当UE从 CELL_FACH状态转移到 CELL_DCH时,CFN应根据下列公式计算:

- 对于 FDD:

CFN = ((SFN*38400 - DOFF*512) div 38400) mod 256

- 对于 TDD:

CFN = (SFN - DOFF) mod 256

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8.5.17.2 硬切换时在 CELL_DCH状态的初始化  当UE处于 CELL_DCH状态,并且收到引起 UE执行一个硬切换的消息,UE应检查消息中的信息元素"Timing indication"。

- 若信息元素"Timing indication"值为"initialise" (即:非同步的硬切换),CFN应按下列公式计算:

- 对于 FDD:

- CFN = ((SFN*38400 - DOFF*512) div 38400) mod 256;

- 对于 TDD:

- CFN = (SFN - DOFF) mod 256;

- 若引起UE执行一个硬切换的消息中包含信息元素"CFN-targetSFN frame offset",CFN应按下列公式计算:

- 对于 FDD:

- CFNnew = (CFNold*38400+COFF*38400 -DOFF*512) div 38400) mod 256

- 对于 TDD:

- CFNnew = (CFNold+COFF - DOFF) mod 256

- 其中,COFF为"CFN-targetSFN frame offset"的值。- 若不包含信息元素"CFN-targetSFN frame offset",UE应从目标小区读取 SFN。注: CFN-targetSFN frame offset = (TargetSFN-CFN)mod256

- 若信息元素"Timing indication"含有值"maintain" (即同步的硬切换),UE应保持 CFN的值不因为硬切换而改变,并且对每帧只将 CFN (mod 256) 的值加 1 。

8.5.17.3 CELL_FACH状态的初始化  当 UE执行一个小区选择,小区重选或转移到 CELL_FACH状态时,UE应根据下式对所有的公共或共享信道设置 CFN的值:

- CFN = SFN mod 256

初始化之后,UE中每帧将 CFN (mod 256) 的值加 1 。

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8.6 接收信息元素的一般行为

8.6.1 CN信息元素

8. 6. 1. 1 CN 域特定的 DRX 循环长度系数( CN domain specific DRX cycle length

coefficient) UE按照[4]的规定更新信息元素" CN domain specific DRX cycle length coefficient",UE应根据下述用其计算DRX循环长度: 设 k的值为信息元素 " CN domain specific DRX cycle length coefficient"; 存入 2k *PBP的结果作为 CN域DRX循环长度,其中 PBP指寻呼块周期。对于 FDD,PBP=1。 当空闲模式下使用DRX时,UE应根据[4]在存贮的DRX循环长度基础上决定其空闲模式寻呼时段和 PICH 监视时段。8.6.1.2 NAS系统信息(NAS system information) 若一个消息中包含信息元素"CN domain identity"和"NAS system information"时,UE应将"NAS system information"的内容传递到"CN domain identity"指示的UE非接入层实体。8.6.2 UTRAN移动性信息元素

8.6.2.1 URA标识(URA Identity)若:- 在一个收到的消息中包含信息元素"URA Identity";并且- 包含信息元素"DRX indicator",其值为"DRX with URA updating"UE应存贮该 URA标识。另外,在向 UTRAN发送一个消息,并进入 URA_PCH状态之后,

UE应在所选的小区读取系统信息块类型 2。若所存贮的URA标识不包含在从系统信息块类型 2读到的URA标识列表中,则产生一个URA标识列表的证实错误,UE应:

- 若没有正在进行的URA更新过程,则在进入URA_PCH状态之后启动一个URA更新过程,见 8.3.2.2;

- 若存在正在进行的URA更新过程,则按照 8.3.2.6进行操作。若:- 在一个收到的消息中不包含信息元素"URA Identity";并且- 包含信息元素"DRX indicator",其值为"DRX with URA updating"UE应在向 UTRAN发送一个可能的消息,并进入 URA_PCH状态之后,在所选的小区读取系

统信息块类型 2。另外,若读到的系统信息块类型 2中包含一个单独的 URA标识,UE应存贮该标识。若读到的系统信息块类型 2中包含不止一个 URA标识,则产生一个 URA标识列表证实错误,并且UE应:

- 若没有正在进行的URA更新过程,则在进入URA_PCH状态之后启动一个URA更新过程,见 8.3.2.2;

- 若存在正在进行的URA更新过程,则按照 8.3.2.6进行操作。

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8.6.3 UE信息元素

8.6.3.1激活时间(Activation time)若存在信息元素"activation time",UE应- 在指示的时间内激活该消息中的新配置。注:典型地,新的配置是该消息中所包含的一个专用物理信道。

8.6.3.2 UTRAN DRX循环长度系数(UTRAN DRX Cycle length coefficient) 若信息元素"UTRAN DRX cycle length coefficient"存在,UE应根据下述用其计算连接模式 DRX循环长度: 设 k的值为信息元素"UTRAN DRX cycle length coefficient"。存入 2k *PBP的结果作为连接模式DRX循环长度,其中 PBP指寻呼块周期。UE应根据[4],以空闲模式同样的方式,决定其连接模式寻呼时段和 PICH 监视时段连接模式DRX循环长度是以下两者的最小值:- UTRAN DRX循环长度;- 为任何 CN域所存贮的 CN域特有的 DRX循环长度,用于在 CELL_PCH和 URA_PCH状态下使用DRX时。

为任何 CN域所存贮的 CN域特有的 DRX循环长度,仅在 CELL_PCH和URA_PCH状态下,若UE登记到该 CN域并且不存在到该 CN域的信令连接时使用。8.6.3.3 DRX指示(DRX Indicator)若信息元素"DRX Indicator"值为"DRX with cell updating",UE应:- 若消息中包含信息元素"UTRAN DRX Cycle length coefficient",则用来根据 8.6.3.2计算

CELL_PCH 状态的寻呼时段(Paging Occasion)和 PICH 监 视时段(PICH Monitoring Occasion)。

若信息元素"DRX Indicator"值为"DRX with URA updating",UE应:- 若消息中包含信息元素"UTRAN DRX Cycle length coefficient",则用来根据 8.6.3.2计算

URA_PCH 状态的寻呼时段(Paging Occasion)和 PICH 监 视时段(PICH Monitoring Occasion)。

若信息元素" DRX Indicator"值为"no DRX",UE应:- 忽略消息中的信息元素"UTRAN DRX Cycle length coefficient";- 停止使用DRX。

8.6.3.4 加密模式信息(Ciphering mode info) 信息元素"Ciphering mode info"定义了新的加密配置。若信息元素"Ciphering mode info"存在,UE应检查其中的信息元素"ciphering mode command",并执行以下步骤: - 若信息元素"ciphering mode command"值为"start/restart",UE应:

- 使用新的加密配置中的信息元素"Ciphering algorithm"指示的加密算法(UEA[3GPP TS33.102)启动或重启动加密。新的加密配置的应用将在下文描述;

- 将变量 CIPHERING_STATUS设置为"Started"。- 若信息元素"ciphering mode command"值为"stop",UE应: - 停止使用加密,新的加密配置的应用将在下文描述;  - 将变量 CIPHERING_STATUS设置为"Not Started"。

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- 信息元素"ciphering mode command"值为"start/restart"或"stop",新的加密配置的应用如下文所述: - 若信息元素"ciphering mode info"中存在信息元素"Activation time for DPCH",UE应在该激

活时间对使用 RLC-TM的无线承载应用新的配置。 - 若信息元素"ciphering mode info"中存在信息元素"Radio bearer downlink ciphering activation

time info",UE应对信息元素"RB identity"所指示的使用 RLC-AM和 RLC-UM的每个无线承载应用以下过程:

- 暂停无线承载上的数据传输; - 在变量 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO 中存贮该无线承载

的"RLC send sequence number",此时应使用新的加密配置; - 当恢复无线承载的数据传输时,UE应根据下述转换到新的加密配置:  - 对于发送和接收的R LC PDUs的 RLC序列号分别小于发送给 UTRAN的信息元

素"Radio bearer uplink ciphering activation time info"中所指示的 RLC序列号和接收到的信息元素 "Radio bearer downlink ciphering activation time info"中所指示的 RLC序列号,使用旧的加密配置;

 - 对于发送和接收的R LC PDUs的 RLC序列号分别大于或等于发送给 UTRAN的信息元素"Radio bearer uplink ciphering activation time info"中所指示的RLC 序列号和接收到的信息元素 "Radio bearer downlink ciphering activation time info"中所指示的 RLC序列号,使用新的加密配置;

 - 对使用 RLC-AM的无线承载,若信息元素 "Radio bearer downlink ciphering activation time info"指示的 RLC序列号不在 RLC传输窗口内,UE应释放该无线承载的旧密码配置。

若无信息元素"ciphering mode info",UE应不更改加密配置。8.6.3.5完整性保护模式信息(Integrity protection mode info) 信息元素"Integrity protection mode info"定义了新的完整性保护配置。若存在信息元素"Integrity protection mode info",UE应检查其中的信息元素"Integrity protection mode command",并执行下列步骤:

- 若 "Integrity protection mode command" 值 为 "start" , 并 且 变 量INTEGRITY_PROTECTION_INFO中的"Status"值为"Not Started",UE应:- 设变量 INTEGRITY_PROTECTION_INFO中的"Status"值为"Started";- 根据 8.5.12.1对收到的消息进行完整性保护;- 使 用 其 中 的 信 息 元 素 "Integrity protection algorithm" 所 指 示 的 算 法(UIA[TS33.102]);

- 并使用信息元素"Integrity protection mode info"中所含的信息元素"Integrity protection initialisation number"作为 FRESH[TS33.102]的值。

- 若 信 息 元 素 "Integrity protection mode command" 值 为 " modified " , 并 且 变 量INTEGRITY_PROTECTION_INFO中的"Status"值为"Started",UE应:- 在下行链路上,根据由包含在信息元素" Integrity protection mode info "中的信息元素"Downlink integrity protection activation info"所指示的 RRC序列号,使用新的完整性保护配置;

- 根据 8.5.12.1对收到的消息进行完整性保护;- 若存在,使用其中的信息元素 "Integrity protection algorithm"所指示的算法(UIA[TS33.102]);

- 设置信息元素"Uplink integrity protection activation info"的值。若不存在信息元素"Integrity protection mode info",UE应不改变完整性保护配置。

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8.6.3.6 CTCH时段的配置 携带 CBS数据的 CTCH仅映射到一个 S-CCPCH上。如果定义了不止一个 CTCH,则在 S-CCPCH列表中配置的第一个 CTCH用于 CBS数据。 CTCH时段由可容纳 CTCH数据的 TTI的第一个无线帧来标识。CTCH时段固定在系统帧号循环 0 ..4095并重复循环。 CTCH时段有一套参数决定。 MTTI:用于 CTCH的 FACH的 TTI内的无线帧号 N: 分配在 S-CCPCH上的 CTCH周期(period),无线帧的整型数,MTTI N MaxSFN –

K,N是MTTI (cf. 3G TS 25.212 and 3G TS 25.222)的倍数 MaxSFN:最大的系统帧号 = 4096 (cf. 3G TS 25.402) K: CBS帧偏移,无线帧的整型数,0 K N-1,K 为 MTTI 的倍数。 CTCH时段按下述计算:

SFN = (K + m N),m = 0, 1,..., M,M选取K + MN MaxSFN参数N和K由系统信息广播。

8.6.3.7 上行链路定时提前(UL Timing Advance)若包含信息元素"UL Timing Advance Control",UE应:- 若信息元素"UL Timing Advance Control"的值为"disabled":

- 将定时提前重置为 0;- 禁用切换之后计算的定时提前;- 在切换的情况,开始在目标小区进行不使用定时提前的上行链路传输;

- 若信息元素"UL Timing Advance Control"的值为"enabled":- 在信息元素"Activation Time"指示的 CFN,根据信息元素"UL Timing Advance",为上行链路传输计算和应用定时提前;

- 为切换启用UE自治的定时提前计算;- 在 UE自治的定时提前计算之前,根据信息元素"UL Timing Advance"修改上行链路定时提前。

8.6.3.8 完整性检查信息(Integrity check info)若包含信息元素"Integrity check info",UE应根据 8.5.12.1操作。

8.6.3.9 新的C-RNTI(New C-RNTI)若包含信息元素"New C-RNTI",UE应:- 当在当前小区使用类型为 RACH,FACH和 CPCH的公共传输信道时,使用该 C-RNTI。

8.6.4 无线承载信息元素

8.6.4.1 RB映射信息(RB mapping info) 若包含信息元素"RB identity"及"RB mapping info",UE应:

- 对每个 RB:- 删除该无线承载以前存贮的复用选项;- 存入该无线承载每个新的复用选项。

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- 对使用的传输信道采用适用的复用选项;- 配置MAC复用,若使用这些传输信道需要;- 在MAC选择 TFC时使用"MAC logical channel priority"。

8.6.4.2 RLC信息(RLC info) 若包含信息元素"RB identity"及"RLC info",UE应:

- 在UE内相应地配置该无线承载的传输及接收 RLC实体。8.6.4.3 PDCP 信息(PDCP Info) 若包含信息元素"RB identity"及"PDCP info",UE应:

- 相应地配置该无线承载的 PDCP实体。8.6.5 传输信道信息元素

8.6.5.1传输格式集(transport format set) 若包含信息元素"transport channel identity"及"transport format set",UE应:

- 存贮该传输信道的传输格式集。 若信息元素 "transport format set"的选项 "transport channel type"设为 "dedicated transport channel",UE应:

- 计算 TFS中所有传输格式的传输块大小: TB size = RLC PDU size + MAC header size, 其中,当使用MAC复用时根据 25.321计算MAC header size,否则其值为 0 bits。8.6.5.2 传输格式组合集(Transport format combination set) 若包含信息元素"Transport format combination set",UE应对该方向(上行链路或下行链路):

- 若存在,则删除先前存贮的传输格式组合集;- 存贮存在于信息元素"Transport format combination set"中的新的传输格式组合集;- 开始遵守这些传输格式组合。对下行链路 CCTrCH,若在 UE 中没有存贮 TFCS,UE 应根据信息元素"Transport format

combination set",考虑到所有可能的传输格式组合,并计算可能的 TFCI值。对下行链路 CCTrCH,若在UE中存贮了 TFCS并且:- 若不包含信息元素"Transport format combination set",且消息中删除了传输信道,UE应:

- 从传输格式组合集中清除受影响的传输格式组合,重新计算 TFCI值,并开始考虑这些传输格式组合。

- 若不包含信息元素"Transport format combination set",,且消息中增加了传输信道,UE应:- 认为全部新的可能的组合都有效,并重新计算 TFCI值,开始考虑这些传输格式组合。在 TDD中,认为新的传输格式组合属于DCH类型 ID 1的 TFCS。

- 若不包含信息元素"Transport format combination set",,且消息中替换了传输信道,UE应:- 认为全部新的可能的组合都有效,并相应地重新计算 TFCI值。

8.6.5.3 传输格式组合子集(Transport format combination set) 若包含信息元素"Transport format combination subset",UE应:

- 根据传输格式组合子集限制传输格式组合集。若传输格式组合子集指示为"full transport

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format combination set",则释放所有对传输格式组合集的限制,UE将使用完整的传输格式组合集。

8.6.6 物理信道信息元素

8.6.6.1 频率信息(Frequency info) 若包含信息元素"Frequency info",UE应:

- 将该频率存为激活频率并- 调谐到该频率。

若不含信息元素"Frequency info"且UE中有存贮的激活频率,UE应:- 继续使用原来存贮的频率。-

8.6.6.2 PRACH信息和 PRACH选择(PRACH info)UE应按以下规则选择一个 PRAH。UE应:- 若专用消息(仅用于连接模式)里包含了信息元素“PRACH info”:

- 释放上行链路中所有激活的专用物理信道;- 以 PRACH做为 RACH的缺省上行链路;

- 若在专用消息中没有包含信息元素“PRACH info”:- 从系统信息块类型 5(在空闲模式和连接模式时使用)和系统信息块类型 6(仅在连接模式时使用)中的信息元素“PRACH info”所指示的 PRACH中,按以下规则选择一个缺省的 PRACH:- 若在 SIB5和 SIB6中都指示了具有 10ms和 20ms TTI的 RACH;

- 根据 8.6.6.3的规定,基于功率需求选择合适的 TTI;- 从 SIB5和 SIB6中所列的 RACH中,按以下规则随机选择一个 RACH:

"Index of selected PRACH" = floor (rand * K)其中,K等于列表中可以携带具有上述选择的 TTI的一个 RACH的 PRACH的数目,“rand”是一个在 0到 1之间均匀分布的随机数字,“floor”是指向下取一个最近的整数。具有 10ms 和 20ms TTI 的 RACH 应该分别计算。按这些RACH在 SIB5和 SIB6中出现的顺序,从 0到 K-1编上序号,而且应该先计算SIB5中所列的 RACH。随机数字发生器还有待具体实现。方案的实现可能是可用的 RACH中任何一个都可以被等概率地选择。在 UE端的随机数字发生器启动时,种源应依赖于 UE 的 IMSI 和时间,从而避免了所有的 UE 选持同一个RACH;

- 当选择了一个新的小区时,重选这个缺省的 PRACH。在 RACH上每次传送一个传输块集后,都可以执行 RACH重选。

- 对于紧急呼叫,允许UE选择任何一个可用的 RACH。8.6.6.3 RACH TTI的选择在 FDD模式中,RACH可以使用 10ms或 20ms的 TTI。所支持的 TTI是系统信息中 RACH传

输格式的一个半静态参数。若一个小区可以支持 10ms和 20msTTI的 RACH,则UE应根据以下规则选择一个合适的 RACH:

UE应首先检查适合发送当前的 10ms和 20msTTI传输块集的 RACH传输格式是否可用。UE应:

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- 若所要求的传输格式只对某一特别的 TTI是可用的:- 选择这个 TTI;- 确定对应的 RACHs;- 随后根据 8.6.6.2的规定进行 RACH选择。

- 若对于 10ms和 20msTTI 两种类型的 RACH,所要求的传输格式都是可用的:- 按下述规则执行 TTI的选择:

- UE计算初始的前缀发射功率(“Preamble_Initial_Power”)的时间见 8.5.8的规定:- 计算发射功率容限,

Margin = {min(Maximum allowed UL tx power , P_MAX) max(Preamble_Initial_Power, Preamble_Initial_Power + Pp-m + 10*log10(1 + (d /c)2)}其中“Maximum allowed UL tx power”是系统信息中指示的上行链路所允许的最大发射功率(dBm),P_MAX是 UE的最大 RF输出功率(dBm)。对 10msTTI RACH消息增益因子d 和 c,计算这个容限。注:表达式 Preamble_Initial_Power + Pp-m + 10*log10(1 + (d /c)2) 表示若这个消息在初始前

缀后被发送时整个 RACH消息的功率。- 若对于 10ms TTI的 RACH,计算出的容限值少于 6dB:

- 判决 20ms TTI的 RACH,按 8.6.6节中所述继续。- 只有在成功地发送了一个传输块集后,才能执行 RACH重选。然而在 PRACH上发送使用 10ms TTI 的 L1消息,失败了至少一次的情况下,UE可以使用 20ms TTI RACH进行重传。RACH消息发送失败的处理是一般错误处理过程的一部分。

8.6.6.4 辅助CCPCH信息(Secondary CCPCH info)在UTRAN连接模式中,UE应按下述规则选择辅助 CCPCH:- 在 Cell_DCH状态:

- 若在 DCCH上发送的消息中包含了信息元素“Secondary CCPCH info”,UE应在下行链路上开始接收所指定的辅助 CCPCH。

- 在 Cell_FACH状态:- 按如下所述,根据 U-RNTI,从系统信息块类型 5和 6(SIB5和 SIB6)中所列的

SCCPCHs中选择一个 SCCPCH:"Index of selected SCCPCH" = U-RNTI mod K, 其中 K等于携带 FACH的 SCCPCH的个数(即只携带 PCH的 SCCPCH不应被计算)。按这些 SCCPCH 在 SIB5 和 SIB6 中出现的顺序,从 0 到 K-1 编上序号;“Index of selected SCCPCH”表示所选择的 SCCPCH。包括在 SIB5中的 SCCPCH应排在前面。

- 在 CELL_PCH和URA_PCH状态: - 按如下所述,从系统信息块类型 5和 6(SIB5和 SIB6)中所列的 SCCPCHs中选择一个 SCCPCH:

"Index of selected SCCPCH" = U-RNTI mod K, 其中 K等于携带 PCH的 SCCPCH的个数(即只携带 FACH的 SCCPCH不应被计算)。按这些 SCCPCH 在 SIB5 和 SIB6 中出现的顺序,从 0 到 K-1 编上序号;“Index of selected SCCPCH”表示所选择的 SCCPCH。包括在 SIB5中的 SCCPCH应排在前面。

UE应按照 8.5.17来设置同当前小区 SFN相关的 CFN。8.6.6.5 上行链路DPCH信息(Uplink DPCH info) 若包含信息元素"Uplink DPCH info",UE应:

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- 释放所有激活的上行物理信道,激活给定的物理信道。8.6.6.6 下行链路DPCH信息(Downlink DPCH info)若包含信息元素"Downlink DPCH info",UE应:- 激活该信息元素所指示的专用物理信道。若消息中包含的信息元素"Downlink DPCH info"用于建立一个 UE的第一个 RL(s)或执行一

个非同步硬切换,在激活该信息元素指示的专用物理信道后,UE应:- 按照 8.5.17来设置与这个消息中所列的第一个 RL(小区)SFN相关的 CFN;若消息中包含的信息元素"Downlink DPCH info"用于执行一个非同步硬切换,并且对于使用

RLC-TM的每一个无线承载,加密都已被激活,在激活该信息元素指示的专用物理信道后,UE应:- RLC-TM的HFN加‘1’;若消息中包含的信息元素"Downlink DPCH info"用于执行一个同步的硬切换,则在激活该信息

元素指示的专用物理信道后,UE应:- 每一帧 CFN(mod 256)加 1,并且保持UL发送定时。

8.6.6.7 最大允许上行链路发送功率(Maximum allowed UL TX power) 若包含信息元素"Maximum allowed UL TX power",UE应:

- 保持 UE上行链路发送功率低于所指示的功率值。如果当前 UE上行链路的发送功率高于指示值,UE应减小功率至低于所指示的功率值。

UE最大发送功率定义为 UE功率类的最大输出功率和该信息元素中指示的最大允许上行链路发送功率两者中较低的那个。不应超过UE的最大发送功率。8.6.6.8 PDSCH with SHO DCH info(FDD only) 若包含信息元素"PDSCH with SHO DCH info",UE应:

- 自身进行配置以便当DSCH分配时能接收激活集中特定基站的 PDSCH;当考虑中的用户 TFCI有一个“硬”分裂(即 TCFI(field 1)和 TCFI(field 2)包含各自的块编码):- 配置 L1为仅将特定的相关DCH激活集中无线链路的DPCCH TFCI(field 2) 进行软合并;- 认为若不包含信息元素"TFCI combining set",其 TCFI(field 2)应软合并的无线链路集将包含激活集中的所有无线链路,并且认为使用信息元素"PDSCH with SHO DCH info"的消息的发送将引起一个传输信道从DSCH传输信道无效的状态变为有效的状态。

8.6.6.9 PDSCH编码映射(PDSCH code mapping) 若包含信息元素"PDSCH code mapping",UE应:

- 配置 L1以支持 TFCI(field 2)值映射到该信息元素指定的 PDSCH 信道化编码。8.6.6.10 上行DPCH功率控制信息(Uplink DPCH power control info) 在 FDD中,若包含信息元素"Uplink DPCH power control info",UE应:

- 计算并设置一个初始的上行链路发射功率;- 启动 8.5.3指定的内部环路功率控制;- 对上行内部环路功率控制使用该信息元素指定的参数。在 TDD中,若包含信息元素"Uplink DPCH power control info",UE应:- 根据 8.5.8的定义,对开环功率控制使用该信息元素指定的参数。在 FDD和 TDD中,若不包含信息元素"Uplink DPCH power control info",UE应使用当前的上

行链路发射功率。

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8.6.6.11 辅助CPICH信息(Secondary CPICH info)若包含信息元素"Secondary CPICH info",UE应:- 根据信息元素"channelisation code"使用信道化编码,根据"Secondary CPICH info"中的"DL

scrambling code"使用扰码,以便在无线链路上进行信道估计;- 在信道估计时,使用DPCCH的导频比特。

8.6.6.12 基本CPICH在信道估计中的使用(Primary CPICH usage for channel estimation)若包含信息元素"Primary CPICH usage for channel estimation",且其值为"Primary CPICH may

be used",UE:- 可使用基本 CPICH做信道估计;- 可在信道估计时使用DPCCH上的导频比特。若包含信息元素"Primary CPICH usage for channel estimation",且其值为"Primary CPICH shall

not be used",UE:- 不使用基本 CPICH做信道估计;- 可能使用辅助 CPICH做信道估计;- 可能使用DPCCH上的导频比特做信道估计。

8.6.6.13 DPCH帧偏移(DPCH frame offset)若包含信息元素"DPCH frame offset" ,UE应:- 使用其值决定DPCH帧的开始

8.6.6.14 DPCH 压缩模式信息(DPCH compressed mode info)若包含信息元素"DPCH compressed mode info"及信息元素组"transmission gap pattern sequence

configuration parameters" ,UE:- 删除所有以前存贮的压缩模式序列;- 根据信息元素"TGPSI",存贮每个模式序列到变量 TGPS_IDENTITY中;- 将信息元素组"transmission gap pattern sequence configuration parameters"定义的配置信息存贮到变量 TGPS_IDENTITY中;

- 激活对应"TGPS status flag"设为"activate"的"TGPSI"存贮的模式序列,并开始根据对应每个激活模式序列的模式序列测量目的进行频率间和/或系统间测量;

- 监视并行的传输间隙模式序列是否造成了非法的重叠,若是,则执行 8.2.11.2规定的动作。若包含信息元素"DPCH compressed mode info"但不包含信息元素组"transmission gap pattern

sequence configuration parameters",UE应:- 激活对应"TGPS status flag"设为"activate"的"TGPSI"存贮的模式序列,并开始根据对应每个激活模式序列的模式序列测量目的进行频率间和/或系统间测量;

- 去活对应"TGPS status flag"设为"deactivate"的"TGPSI"存贮的模式序列,并终止根据对应每个激活模式序列的模式序列测量目的进行频率间和/或系统间测量。

8.6.6.15 重复周期、重复长度、偏移以下描述仅应用于 TDD。帧的分配由以下规定得到:若信息元素"Offset"没有给出,参数"Offset"由下面公式给出:

Activation time mod Repetition period = Offset.

从 CFN CFNoff 到 CFNoff + Repetition 的帧,长度分配 CFNoff 满足以下公式: CFNoff mod Repetition period = Offset.

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重复长度总是 CCTrCH内最大 TTI的倍数,符合如下等式:(largest TTI within CCTrCH)*X = Repetition Length其中,X是整数。举例:

图 50: 在 TDD 帧分配的例子

8.6.6.16基本CCPCH 信息(Primary CCPCH info) 若包含信息元素“Primary CCPCH info”(在 TDD中)和信息元素“New C-RNTI”,并且包含这些信息元素的消息用于启动一个到 CELL_FACH的状态转移,UE应:

- 选择由信息元素“Primary CCPCH info”所指示的小区;- 转移到指示小区后,在这个小区使用 RACH,FACH和 CPCH类型的公共传输信道时,使用给定的 C-RNTI。

8.6.6.17基本CPICH信息(Primary CPICH info) 若包含信息元素“Primary CPICH info”(在 FDD中)和信息元素“New C-RNTI”,并且包含这些信息元素的消息用于初始化一个到 CELL_FACH的状态转移,UE应:

- 选择由信息元素“Primary CCPCH info”所指示的小区;- 转移到指示小区后,在这个小区使用 RACH,FACH和 CPCH类型的公共传输信道时,使用给定的 C-RNTI。

8.6.6.18 CPCH SET Info (仅用于 FDD)

若UE有能力使用 CPCH,则UE应使用下面的通用过程:- 若信息元素“CPCH SET Info”包含在一个专用消息中:

- 读取信息元素中所包含的“CPCH set ID”;- 用“CPCH set ID”作为地址标识来存储该信息元素;- 释放上行链路中所有激活的专用物理信道;- 以 CPCH集中所列的 PCPCH作为上行链路 CPCH的缺省信道;

- 若信息元素“CPCH SET Info”包含在一个系统信息消息中:- 读取信息元素中包含的“CPCH set ID”;- 用“CPCH set ID”作为地址标识来存储该信息元素。

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8.6.6.19 CPCH set ID (FDD only)

若UE有能力使用 CPCH,则UE应使用下述的通用过程:- 若信息元素“CPCH set ID”包含在一个专用消息中,并且不是信息元素“CPCH set Info”的一部分:- 以该信息元素作为一个地址标识来重新找到相应的存储的“CPCH SET Info”;- 释放上行链路中所有激活的专用物理信道;- 以 CPCH集中所列的 PCPCH作为上行链路 CPCH缺省信道。

- 若信息元素“CPCH SET ID”包含在一个专用消息中,并且不是信息元素“CPCH SET Info”的一部分,同时若没有相应存储的“CPCH SET Info”:- 释放上行链路中所有活跃的专用物理信道;- 让最后指配的 PRACH作为上行链路 RACH的缺省信道;- 在 SCCPCH上获取当前的系统信息,并存贮信息元素“CPCH SET Info”;- 接收对应于信息元素“CPCH SET ID”的“CPCH SET Info”时:

- 以 CPCH集中所列的 PCPCHs作为上行链路 CPCH的缺省信道。8.6.6.20缺省DPCH偏移值(Default DPCH Offset Value) UE应:

- 若包含信息元素“Default DPCH Offset Value”:- 使用这个值从小区 SFN时序上来决定帧偏移和码片偏移;

- 若没有包含信息元素“Default DPCH Offset Value”:- 使用存贮在变量 DOFF中先前接收到的值。如果在 DOFF中没有存贮以前接收到的值,则UE应设这个值为 0。

从 CELL_DCH状态转移到其它状态之后,UE应该删除存贮在变量DOFF中的值。8.6.6.21 辅助扰码和码号(Secondary Scrambling Code, Code Number) 下列的描述应用于 FDD。 码号按照下述规则进行分配:

- 当每个 RL被分配了多个DL DPCCH时,应按照 3GPP TS 25.212,把分段的物理信道映射到 DL DPDCH。当每个 RL被分配了 p 个 DL DPDCH时,第一对辅助扰码和码号对应于“PhCH number 1”,第二对对应于“PhCH number 2”,以此类推直到第 p 对对应于“PhCH number p”。

8.6.7 测量信息元素

8.6.7.1测量有效性(measurement validity) 若给定测量的信息元素"measurement validity "值为"release",UE应在转换到新的状态后删除与变量MEASUREMENT IDENTITY相关的测量。 若该测量的信息元素"measurement validity "值为"resume",UE应保存与变量MEASUREMENT IDENTITY相关的测量。信息元素"UE state "定义了恢复测量的范围。 若信息元素"UE state "定义为"all states",UE应在转换到一个新的状态后继续测量。其范围仅为业务量类型的测量。 若信息元素 "UE state "定义为 "all states except CELL_DCH",UE 应存贮测量以备随后从

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CELL_DCH状态转移到连接模式其他状态后恢复测量。其范围仅为业务量类型的测量。若信息元素"UE state "定义为"CELL_DCH",UE应存贮测量以备随后转移到 CELL_DCH状态

后恢复测量。小区重选后,UE应删除与变量MEASUREMENT IDENTITY相关的正在进行的频率内或频率间和系统间类型的测量。但其他测量类型无论小区重选与否都应继续。8.6.7.2 过滤系数(Filter coefficient)若收到信息元素"Filter coefficient",UE应根据下列公式对测量量进行过滤。 UE应在事件评

估前进行过滤。同样,UE应过滤信息元素"Measured results"或"Measurement results on RACH"中报告的测量。在连接或空闲模式下小区重选时,不应执行过滤。过滤应根据下列公式执行:变量定义如下:- Fn 更新后的过滤的测量结果;- Fn-1 旧的过滤的测量结果;- Mn 最近一次从物理层收到的测量结果,Mn 使用的单位与MEASUREMENT REPORT 消息中报告的单位相同或与事件评估中使用的单位相同;

- a = 1/2(k/2), k 是信息元素"Filter coefficient"中接收的参数。注意若 a 为 1 意味着没有第 3层过滤;

- 为初始化一般的过滤,当从物理层收到第一个测量结果时,F0 设置为M1 。物理层测量结果每一测量周期抽样一次。对一个特定测量的测量周期和精确度在 3G TS 25.133中定义。8.6.7.3 频率内/频率间/系统间小区信息列表( Intra-frequency/Iner-frequency/Inter-system

cell info list)若收到信息元素其中之一,并且在收到的信息元素中存在"Removed ***** cells" 或/和"New

****** cells" ,UE应相应地更新测量的测量对象。若包含信息元素之一,但不包含"Removed ***** cells"和"New ****** cells",UE应不改变测

量对象的信息。(这种情况仅适用当Measurement Command为"Modify"时)若当缺少信息元素而又没有收到以上信息元素时,UE应以测量 ID的升序重新排列相同的测

量类型,并使用之前 ID的测量对象信息(例如,假设UE的频率内测量分配有 3个测量 ID(设为ID10,11,15),UE没有收到测量 ID15的"Intra-frequency cell info"。当执行测量 15时,UE应使用测量 ID11分配的测量对象信息。8.6.7.4 系统间测量量(Inter-system measurement quantity)若收到信息元素"Inter-system measurement quantity",并且 CHOICE系统为 GSM,UE应检查

参数"BSIC verification required"。若"BSIC verification required"为"required",UE应只报告有"verified" BSIC的 GSM小区的测量

量。若"BSIC verification required"为"not required",UE 应报告"verified"和"non-verified" BSIC 的

GSM小区的测量量。一个小区是"verified"还是"non-verified",详见 TS 25.133。

8.6.7.5 小区报告量(Cell Reporting Quantities)若 UE 收到信息元素 "Cell Reporting Quantities",应将该信息元素的内容存贮到变量

MEASUREMENT_IDENTITY中。

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UE应在MEASUREMENT REPORT消息中包含信息元素"Cell Reporting Quantities"指定的测量结果,除非是以下情况:若信息元素"Cell Identity"设为 TRUE,UE应:- 在 CELL_FACH状态:

- 报告系统信息块类型 4给出的信息元素"Cell Identity"(若没有广播系统信息块类型4,则在系统信息块类型 3中)

- 在 CELL_DCH状态:- 对待信息元素如同"Cell Identity"设为 FALSE。

8.6.7.6 报告小区状态(Reporting Cell Status)若 UE收到信息元素"Reporting Cell Status",应如下设置消息MEASUREMENT REPORT中的

信息元素"Measurement Result":- 对于频率内测量和频率间测量:

- 包含任何满足"Reporting Cell Status"规定的条件的小区的信息元素"Cell Measurement Result",并按测量量的降序排列;

- 包含在信息元素"Measurement Result"中的"Cell Measurement Result"的最大数目为信息元素"Reporting Cell Status"规定的数目。

若没有收到对于频率内测量和频率间测量的信息元素"Reporting Cell Status",UE应:- 在消息MEASUREMENT REPORT中不包含对任何小区的"Cell Measurement Result"。

8.6.8 其他信息元素

8.6.8.1 RAB NAS Synchronization Indicator

若消息中包含信息元素" RAB NAS Synchronization Indicator ",UE应将 RAB相关的内容传递给非接入层。

9 协议状态9.1.RRC状态和包括GSM的状态转移下图给出了在连接模式下 RRC状态,其中包括对于 PSTN/ISDN业务的 UTRAN连接模式和

GSM连接模式之间的状态转移,以及对于 IP业务的 UTRAN连接模式和 GSM/GPRS连接模式之间的状态转移。同时也包括空闲模式和 UTRAN连接模式之间的转移及UTRAN连接模式内的状态转移。

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图 51:RRC状态及包括GSM的状态转移 [空闲模式中的划分仅为区别。并不能解释为状态]应注意并非所有状态对全部UE连接都适用。对一个给定 QoS需求的UE连接,可能只有部分

状态相关。当打开电源后,UE便处于空闲模式直至 UE发送一个要求建立 RRC连接的请求。当 UE处于

空闲模式时,UE的连接对接入层(AS)中的所有层关闭。空闲模式的 UE由非接入层标识来标识,如 IMSI、TMSI和 P-TMSI。另外,UTRAN并不知道处于空闲模式下的某个 UE的信息,它只能进行寻址一个小区内所有UE或监视同一寻呼时机的全部UE。

当 RRC 连接建立后,系统进入 UTRAN 连接模式。UE 被分配一个无线网络临时标识(RNTI),用来作为在公共传输信道的UE标识。

注:RRC连接的确切定义有待进一步研究。UTRAN连接模式中的 RRC状态反映了UE连接的等级,以及哪些传输信道可被UE使用。对于不活跃的静态数据用户,UE可能退回到 CELL_PCH状态或URA_PCH。也就是说,当需

要寻呼时,UTRAN应检查给定 UE的当前连接等级,并决定寻呼消息是在 URA内发送还是在一个特定的小区内发送。

9.2.从空闲模式到UTRAN连接模式的转移仅当 UE发送一个建立 RRC连接的请求,状态由空闲模式转移到 UTRAN连接模式。此事件

可由网络发送的寻呼请求或UE的高层请求来触发。当 UE从网络收到 RRC连接建立的证实,UE进入 UTRAN连接模式的 CELL_DCH状态或

CELL_FACH状态。当 RRC连接建立失败时,UE回到空闲模式。可能的原因是无线链路失败,收到来自网络的

拒绝回应或网络没有回应(超时)。

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9.2.1 对于紧急呼叫的转移 对于本节提到的所有状态和过程请参考[4]。当 UE为了形成一次紧急呼叫而从 Camped on any cell状态离开空闲模式转移到 Connected mode状态(仅用于紧急呼叫)时,UE应使用立即小区评估过程(仅用于 UTRA),以便选择接入尝试的当前频率上最好的小区。若没有发现合适的小区,UE应使用 Any cell reselection。当返回空闲模式时,UE应使用离开连接模式时的小区选择过程,以找到一个驻留的合适小区,Camped on any cell状态。

9.3.UTRAN连接模式状态及转移

9.3.1 CELL_DCH状态CELL_DCH状态特征为:- 在上行和下行链路上,分配给UE一个专用物理信道;- 根据当前激活集,确定UE在小区级上;- UE能使用专用传输信道、下行链路和上行链路(TDD)共享传输信道,以及这些传输信道的组合。

CELL_DCH状态通过从空闲模式建立 RRC连接进入,或从 CELL_FACH状态建立一个专用物理信道进入。在该状态 UE可能被分配一个 PDSCH,用于 DSCH。在 TDD模式,也可分配一个 PUSCH,

用于 USCH。如果 PDSCH 或 PUSCH 用于 TDD模式, UE可被分配 FACH 传输信道用于物理共享信道配置消息的接收。9.3.1.1 从 CELL_DCH状态到空闲模式的转移通过释放 RRC连接进入空闲模式。

9.3.1.2 从 CELL_DCH状态到 CELL_FACH状态当所有专用物理信道被释放后,转移到 CELL_FACH状态,情况可能为:a) 通过的显式信令;b) 在分配给专用信道的时间周期的结束(TDD)。

9.3.1.3 从 CELL_DCH状态到 CELL_PCH状态通过显式信令。

9.3.1.4 从 CELL_DCH状态到 CELL_FACH状态通过的显式信令。

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9.3.1.5 无线资源分配任务(CELL_DCH)对于 DCH,应提供几个物理信道分配策略。这种分配可能是持久性的(需要一个 DCH释放

消息)或是基于时间或数据量的。对于每一个突发分组,其资源配置可以通过DCH上的高速信令来单独完成。对于每个无线帧,UE和网络使用传输格式组合标识(TFCI)指示当前数据速率(分别对于上

行链路和下行链路)。但在 TDD模式下,DCH和 DSCH或 USCH可能映射到不同的 CCTrCH上它们的 TFCI完全独立。DCH传输不会因 DSCH/USCH的同时存在而改变。若发现组合配置集(如某一传输信道的传输格式集)不足以维持某一传输信道所需的 QoS,网络将为该传输信道启动一个传输格式集(TFS)重配置。该重配置可在数据传输中或数据传输间完成。另外,网络能配置物理信道,允许增加或减小峰值数据速率。对上行链路数据传输,UE向网络报告观测的业务量,以便网络重新评估当前的资源分配。该

报告的内容包含应传输的数据量、UE内的缓冲状态等等。9.3.1.6 RRC连接移动性任务(CELL_DCH)根据数据的数量和频率,决定是否使用宏分集(软切换)。RRC连接移动性由测量报告,软切换和非同步/同步的硬切换过程处理。

9.3.1.7 UE测量(CELL_DCH)UE应根据测量控制信息执行测量并发送测量报告。UE应使用其他状态下收到的连接模式测量控制信息,直至UE被分配一个新的测量控制信息。

9.3.1.8 系统信息的捕获(CELL_DCH)在 FDD模式下,具有特定能力的UE能读取 FACH上广播的系统信息。在 TDD模式下,UE读取 BCH以获得有效的系统信息。对于每次获取,UE需要的可能是在

BCH上广播的系统信息的不同组合。广播信道上的调度应以 UE知道何时能找到所需的信息的方式进行。

9.3.2 CELL_FACH状态CELL_FACH状态特征:- UE没有被分配专用物理信道;- UE持续监听下行链路的一个 FACH;- UE被分配一个缺省的上行链路公共或共享传输信道(如 RACH),UE能根据该传输信道的接入过程在任何时候使用它;

- 根据UE最后进行的小区更新的小区,UTRAN获得UE在小区级别上的位置;- 在 TDD模式,可能建立一个或多个USCH或DSCH传输信道。在 CELL_FACH状态,UE应执行以下动作:- 监听一个 FACH;

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- 监听服务小区的 BCH传输信道,以解码系统消息;- 在小区改变为另一UTRA小区时启动一个小区更新过程;- 使用当前小区中分配的 C-RNTI作为公共传输信道的UE标识,直至选择一个新的小区;- 在 RACH上发送上行控制信号和小数据分组;- 在 FDD模式,当资源分配到小区且分配 UE使用 CPCH资源,在这些 CPCH上发送上行链路控制信令和较大的数据分组;

- 在 TDD模式,当资源分配到小区且分配 UE使用 USCH/DSCH 资源,在 USCH和 /或DSCH上发送上行链路和/或下行链路信令消息或用户数据;

- 在 TDD模式,当分配UE USCH资源时,UE在上行链路使用USCH发送测量报告以触发一个在UTRAN中的切换过程。

9.3.2.1 从 CELL_FACH状态到 CELL_DCH状态当通过显式信令建立一个专用物理信道后,转移发生。

9.3.2.2 从 CELL_FACH状态到 CELL_PCH状态当UTRAN通过显式信令命令UE进入 CELL_PCH状态时,发生状态转移。

9.3.2.3 从 CELL_FACH状态到空闲模式 在释放了 RRC连接后,UE进入空闲模式。9.3.2.4 从 CELL_FACH状态到URA_PCH状态当 UTRAN通过显式信令命令 UE进入 URA_PCH状态时,发生状态转移。如 URA更新过程

完成后。9.3.2.5 无线资源分配任务(CELL_FACH) 在 CELL_FACH状态,UE 监听一个 FACH。UE应能发送上行链路控制信号及在 RACH上发送小的数据包。网络能提前分配给 UE传输信道参数(如传输格式集),以在使用 DCH时使用。当为 DCH

分配物理信道时,UE应进入 CELL_DCH状态并使用为DCH预先分配的 TFS。若没有指定 UE专用物理信道或传输信道配置,UE应根据系统信息使用公共物理信道和传输

信道配置。对上行链路数据传输,UE向网络报告观测的业务量,以便网络重新评估当前资源分配。该报

告包含诸如应传输的数据量或UE内的缓冲状态等信息。当发送用户或控制数据时,启动一个选择过程决定是使用一个公共传输信道传输数据,还是

转移到 CELL_DCH状态。该选择是动态的并依赖特定的参数,如业务参数(数据大小,分组脉冲频率)。在 FDD模式,UTRAN能给处于 CELL_FACH状态的 UE分配 CPCH资源。当分配 CPCH资

源后,UE将继续监听 FACH。UE可能使用 RACH发送上行链路控制信号和小的数据包。UE也能

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选择在 CPCH信道上发送大于 RACH上传送的数据包。UE选择 RACH或一个 CPCH信道,以最大限度地使用信道上的可用容量。在 FDD模式,UE向 UTRAN提供 CPCH测量数据,其中包括数据、队列长度(当前数据缓

冲大小)、对每个使用的 CPCH信道的平均接入时间和业务量。根据这些测量,UTRAN能周期性的重新分配网络资源。UTRAN为每个小区分配 CPCH集并为 UE分配其中之一。UE能动态访问这些 CPCH资源而不需要UTRAN的控制。在 TDD模式,UTRAN能给处于 CELL_FACH状态下的 UE分配 USCH/DSCH资源。当分配

USCH/DSCH资源,UE将根据 UE能力继续监听。若 USCH/DSCH资源分配到小区并且指定 UE使用这些资源,UE可能使用 USCH和/或DSCH在上行链路和/或下行链路上发送信令消息和用户数据。对于上行链路 USCH上的数据传输,UE向网络报告业务量(当前 RLC数据缓冲大小)。

UTRAN能使用这些测量报告重新评估当前USCH/DSCH资源分配。9.3.2.6 RRC连接移动性任务(CELL_FACH)在该状态,已知在小区级别上的 UE位置。当 UE选择一个新的小区来观测其公共下行信道时,

将使用小区更新过程向UTRAN报告。下行链路 FACH上的数据传输启动,不需要预先进行寻呼。UE 监听广播信道和 BCCH上关于自己和相邻小区的系统信息,并据此识别是否进行小区位置

更新。UE应执行小区重选,并在选择一个新的 UTRA小区时,启动小区更新过程。若选择一个非

UTRA的其他无线接入系统的小区,UE应进入空闲模式并按照该系统的规范进行接入。9.3.2.7 UE测量(CELL_FACH)

UE应执行测量并根据测量控制信息发送测量报告。缺省时,UE 应使用系统信息中广播的测量控制信息。但网络也能在 MEASUREMENT

CONTROL消息中提供测量控制信息,这时,后者优先。9.3.2.8 发送和更新系统信息(CELL_FACH)

UE应读 BCH以获取有效的系统信息。对每次获取,UE可能需要在 BCH上广播的系统信息的不同组合。广播信道上的调度应以UE知道何时能找到所需的信息的方式进行。当系统信息修改后,调度信息更新以反映 BCH上传输的系统信息的变化。新的调度信息在

FACH上广播,以通知UE该变化。若该变化适用于UE,修改的系统信息应在 BCH上读取。

9.3.3 CELL_PCH状态CELL_PCH状态特征:- 没有专用物理信道分配给UE;- UE使用DRX通过分配的 PICH 监听 PCH;- 不可能有上行链路活动;- 根据 UE在 CELL_FACH状态时进行最后一次小区更新的小区,UTRAN获得在小区级别上UE位置。

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在该状态,UE应执行以下动作:- 根据DRX周期,监听寻呼时机并接收 PCH上的寻呼信息- 监听服务小区的 BCH传输信道,以解码系统信息消息- 在小区变化时,启动一个小区更新过程- 一个支持小区广播业务(CBS)的UE应能在 CELL_PCH状态收到 BMC消息DCCH逻辑信道不能用于该状态。若网络希望启动任何活动,需要在所知小区的 PCCH逻辑

信道上进行寻呼请求以启动任何下行链路活动。9.3.3.1 从 CELL_PCH状态到 CELL_FACH状态

UE 转移到 CELL_FACH状态通过UTRAN寻呼或任何上行链路接入。9.3.3.2 无线资源分配任务(CELL_PCH)在 CELL_PCH状态,没有资源被指定用于数据传输。为传输数据,必须转移到其他状态。UE可能使用非连续接收(DRX)以减小功率消耗。当使用DRX时,每个DRX周期UE只需

接收一个寻呼时机。网络可能命令 UE使用一个特定的 DRX周期长度。UE应以与空闲模式相同的方式决定它的寻呼时机,见[4]。9.3.3.3 RRC连接移动性任务(CELL_PCH)在 CELL_PCH状态,UE移动性通过小区重选过程执行,这可能与[4]中的定义不同。UE应执行小区重选,在选择一个新的 UTRA小区时,转移到 CELL_FACH状态并在新的小区

启动一个小区更新过程。执行小区更新过程后,若 UE及网络没有数据传输,UE应改变状态返回到 CELL_PCH状态。若选择一个非UTRA的其他无线接入系统小区,UE应进入空闲模式并按照该系统的规范进行

接入。当 UE活动性较低时,UTRAN可能命令 UE 转移到 URA_PCH状态,以减小经常性的小区更

新。这一转移通过 CELL_FACH状态完成。UTRAN可能提供一个非激活的定时器和一个可选的计数器,用于记录小区更新的次数。如当小区更新的次数超过一定的限制(网络参数)时,UTRAN将命令UE 转移到URA_PCH状态。9.3.3.4 UE测量(CELL_PCH)

UE应执行测量并根据测量控制信息发送测量报告。当没有分配UE专用测量控制信息时,UE应根据系统信息使用测量控制信息。

9.3.3.5 传输和更新系统信息(CELL_PCH)UE应读 BCH以获取有效的系统信息。对每次获取,UE可能需要在 BCH上广播的系统信息

不同的组合。广播信道上的调度应以UE知道何时能找到所需的信息的方式进行。

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9.3.4 URA_PCH状态URA_PCH状态特征:- 没有专用信道分配给UE;- UE使用DRX通过分配的 PICH 监听 PCH;- 不可能有上行链路活动;- 根据在 CELL_FACH 状态最后一次 URA 更新期间分配给 UE 的 URA ,知道 UE 在

UTRAN登记区域级别的位置。在该状态UE执行以下动作:- 根据DRX周期监听寻呼时机并在 PCH上接收寻呼信息- 监听服务小区 BCH传输信道,以解码系统信息消息- 在URA变化时,启动URA更新过程- 一个支持小区广播服务(CBS)的UE应能在URA_PCH RRC状态收到 BMC消息DCCH逻辑信道不能用于该状态。若网络希望启动任何活动,需要在 UE所在的 URA的

PCCH逻辑信道上进行寻呼请求。若 UE需要发送消息给网络,它将进入 CELL_FACH状态。到URA_PCH状态的转移通过一个非激活的定时器,和一个可选的用于记录小区更新次数的计数器控制。当小区更新的次数超过一定的限制(网络参数), UE 转移到URA_PCH状态。

URA更新由 UE启动,当检测到登记区域,在新小区 RACH上把登记区域更新信息发送给网络。

9.3.4.1 从URA_PCH状态到 CELL_FACH状态(URA_PCH)任何活动都将导致UE 转移到 CELL_FACH状态。RACH执行上行链路接入。注意,在 URA_PCH状态下不能进行 RRC连接释放。UE必须首先转移到 CELL_FACH状态

执行释放信令。9.3.4.2 无线资源分配任务(URA_PCH)在 URA_PCH 状态,没有资源分配指定用于数据传输。为传输数据,必须转移到

CELL_FACH状态。UE可能使用非连续接收(DRX)以减小功率消耗。当使用DRX时,每个DRX周期UE只需

接收一个寻呼时机。网络可能命令 UE使用一个特定的 DRX周期长度。UE应以与空闲模式相同的方式决定它的寻呼时机。见[4]。9.3.4.3 RRC连接移动性任务(URA_PCH)在 URA_PCH状态,已知UE在UTRAN登记区等级上的位置。 在该状态,UE移动性通过 URA重选过程来完成,这可能与 S2.04中的定义不同。UE应执行

小区重选,并在选择一个不属于UE使用的URA的新的UTRA小区时,UE应转移到 CELL_FACH状态并向网络发起一个 URA更新。执行 URA更新过程后,若 UE及网络都没有数据传输,UE应改变它的状态回到URA_PCH状态。若选择一个非UTRA的其他无线接入系统小区,UE应进入空闲模式并按照该系统的规范进行

接入(此种情况留待将来研究)。

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9.3.4.4 UE测量(URA_PCH) UE应执行测量并根据测量控制信息发送测量报告。 若没有分配UE专用测量控制信息,UE应根据系统信息使用测量控制信息。9.3.4.5 发送和更新系统信息(URA_PCH)

URA_PCH状态下发送和更新系统信息的机制与 CELL_PCH状态相同。

9.3.5 在 URA_PCH,CELL_PCH和 CELL_FACH状态下小区重选的状态和转移

图 52: UTRAN 连接模式小区重选UE在某些状态时执行小区重选过程。UE应根据连接模式的无线测量和小区重选准则,选择

一个合适的小区(在[4]中定义)和无线接入技术。上图表示了在连接模式下小区重选处理的状态和过程。

当一个小区重选触发时,UE应根据无线测量来评估小区重选准则,并当找到一个更好的小区,执行过程小区重选(见[4])。若小区的改变意味着无线接入技术的改变,则释放 RRC连接(见[4]),UE进入其他 RAT的空闲状态。若在小区重选过程中没有发现合适的小区,则释放 RRC连接,UE进入空闲模式。

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UE应根据立即小区评估准则,在任何接入尝试之前使用立即小区评估过程(见[4])选择最好的合适小区。对该过程使用的限制在小节 xxxxxx中描述。 当触发一个初始的小区重选时,UE应使用初始小区重选过程(见[4])寻找一个合适的小区。哪里可能触发的情况在小节 xxxxx中描述。例如,在无线链路失效之处触发该过程,UE可能触发一个初始小区重选过程以便请求 RRC连接的重建。若UE无法找到一个合适的小区,将释放 RRC连接并进入空闲模式。

9.4.支持 PSTN/ISDN业务的系统间切换当使用 PSTN/ISDN业务时,从 UTRAN连接模式转移到 GSM连接模式,UTRAN使用无线接

入系统间的切换过程,GSM使用切换过程。

9.5.支持 IP域业务的系统间切换当使用 IP业务,UE发起从 GSM/GPRS小区转移到 UTRAN小区的小区重选,然后使用 RRC

连接建立过程完成到UTRAN连接模式的转移。当从空闲模式(GPRS分组空闲模式)建立 RRC连接时,RRC CONNECTION REQUEST消

息包含一个指示,此指示表示了 UTRAN需要继续使用一个 CN已经建立的 GPRS UE上下文。该指示允许UTRAN区分来自UE的 RRC CONNECTION REQUEST的优先次序。

UTRAN连接模式下,UTRAN正使用 UE或网络启动小区重选,实现从一个 UTRAN小区转移到一个 GSM/GPRS小区。若小区重选成功,UE进入空闲模式(GPRS分组空闲模式)。UE在空闲模式(GPRS分组空闲模式)下,发送一个分组信道请求,建立一个暂时块流并进入 GPRS分组转移模式。在 GPRS分组转移模式下,UE发送一个 RA更新请求消息。其中包含一个指示,它表示了 GSM/GPRS需要继续使用已经建立的来自 CN的 UTRAN UE上下文。也就是说,无论 RA是否改变,RA更新请求总是用于从UTRAN连接模式转移到GSM/GPRS。注:使用 RA更新而不用一个新的消息的原因,是减少与已存在的GSM/GPRS规范的冲突。

9.6.同时支持 IP和 PSTN/ISDN域业务的系统间切换

9.6.1从UTRAN到GSM/BSS的系统间切换对一个处于 CELL_DCH状态下,同时使用 PSTN/ISDN和 IP业务的 UE,系统间的切换过程

基于UE的测量报告,但由UTRAN启动。UE首先执行从UTRAN连接模式到GSM连接模式的系统间切换。当 UE发送切换完成消息给

GSM/BSS后,UE启动一个暂时块流并发送 RA更新请求。若 UE成功执行从 UTRAN连接模式到 GSM连接模式的系统间切换,无论 UE是否能建立一

个暂时块流,都认为切换成功。 若系统间切换失败,UE可能回到UTRAN连接模式并在原状态重新建立连接,并不试图建立

一个暂时块流。若 UE在系统间切换失败后,是否可以选择建立一个针对 GSM / GPRS的暂时块流有待研究。

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9.6.2 从GSM/BSS到UTRAN的系统间切换对一个处于 GSM连接模式状态下,同时使用 PSTN/ISDN和 IP业务的 UE,系统间切换过程

基于UE的测量报告,但由GSM/BSS启动。UE执行从GSM连接模式到UTRAN连接模式的系统间切换。在UTRAN连接模式下两种服务的建立是平行的。若UE成功执行从GSM连接模式到UTRAN连接模式的系统间切换,则认为切换成功。若系统间切换失败,UE可能回到GSM连接模式并在原状态重新建立连接。

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10 消息和信息元素功能性定义和内容10.1 概述每个无线资源控制消息的功能及内容在 10.2节中用信息元素列表的形式定义。信息元素的功能定义性在 10.3 节中。信息元素的标记:MP-必须存在,MD-必须具有缺省值,OP-可选的,CV-有条件取值或 CH-基于历史取值(见表 10.1)。

表 10.1 RRC 消息和信息元素中缩写的含义

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Abbreviation MeaningMP Mandatory present

A value for that information is always needed, and no information is provided about a particular default value. If ever the transfer syntax allows absence (e.g., due to extension), then absence leads to an error diagnosis.

MD Mandatory with default valueA value for that information is always needed, and a particular default value is mentioned (in the 'Semantical information' column). This opens the possibility for the transfer syntax to use absence or a special pattern to encode the default value.

CV Conditional on valueA value for that information is needed (presence needed) or unacceptable (absence needed) when some conditions are met that can be evaluated on the sole basis of the content of the message.If conditions for presence needed are specified, the transfer syntax must allow for the presence of the information. If the transfer syntax allows absence, absence when the conditions for presence are met leads to an error diagnosis.If conditions for absence needed are specified, the transfer syntax must allow to encode the absence. If the information is present and the conditions for absence are met, an error is diagnosed.When neither conditions for presence or absence are met, the information is treated as optional, as described for 'OP'.

CH Conditional on historyA value for that information is needed (presence needed) or unacceptable (absence needed) when some conditions are met that must be evaluated on the basis of information obtained in the past (e.g., from messages received in the past from the other party).If conditions for presence needed are specified, the transfer syntax must allow for the presence of the information. If the transfer syntax allows absence, absence when the conditions for presence are met leads to an error diagnosis.If conditions for absence needed are specified, the transfer syntax must allow to encode the absence. If the information is present and the conditions for absence are met, an error is diagnosed.When neither conditions for presence or absence are met, the information is treated as optional, as described for 'OP'.

OP OptionalThe presence or absence is significant and modifies the behaviour of the receiver. However whether the information is present or not does not lead to an error diagnosis.

10.1.1 协议扩展在这个规范中,有两种不同的协议扩展:- 通过附加的值或选择对信息元素的扩展;- 通过附加的信息元素对消息的扩展。

这个标准详细地说明了在接收到一条不可理解的扩展时,UE的行为应遵从标准的修订。在 16章中提供了错误处理的细节。

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10.1.1.1 通过附加的值或选择对信息元素的扩展

在这个协议的以后版本中,一些值的范围和选择都可以被扩展。对于这些范围和选择,保留了一个或多个附加值。被编码的信息元素的长度不应该依赖于是否使用了为扩展预留的值。可应用于协议的以后版本的预留选择的信息元素都被放在消息的最后。对每一个为将来的扩展而保留的值和选择,UE的行为应遵从 10.1和 10.2规定的消息和信息

元素的标准修订 UE可能应用一个定义的值,或忽略信息元素和/或拒绝所要求的整个消息。表中使用规定消息和信息元素重要性("default", "ignore" or "reject")的列"semantics"来指定采用哪种动作。

10.1.1.2 通过附加的信息元素对消息的扩展

  这个协议的未来版本中,RRC消息可以扩展新的信息元素。这些附加信息元素应该包括在消息的末尾处。  UTRAN可以通过使用“ignore”或“reject”来指出每个扩展的“重要程度”,从而控制一个UE在接收到一条具有不可理解的附加信息元素的消息时的行为。因而 UTRAN在发送给 UE的所有消息中,不包括广播消息,都指出了该消息提供的扩展的重要程度。从 UE到UTRAN的方向中,在消息的末尾处没有包括对协议扩展的重要程度的信息。如下表所示。此外,这个表也指出了“SYSTEM INFORMATION”消息包括在哪一级扩展中。

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Type MessageExtensions and criticality ACTIVE SET UPDATE 10.2.1

CELL UPDATE CONFIRM 10.2.5DOWNLINK DIRECT TRANSFER 10.2.8DOWNLINK OUTER LOOP CONTROL 10.2.9HANDOVER TO UTRAN COMMAND 10.2.10INTER SYSTEM HANDOVER COMMAND 10.2.13MEASUREMENT CONTROL 10.2.15PAGING TYPE 1 10.2.18PAGING TYPE 2 10.2.19PHYSICAL CHANNEL RECONFIGURATION 10.2.20PHYSICAL SHARED CHANNEL ALLOCATION 10.2.23RADIO BEARER RECONFIGURATION 10.2.25RADIO BEARER RELEASE 10.2.28RADIO BEARER SETUP 10.2.31RRC CONNECTION RE- ESTABLISHMENT 10.2.34RRC CONNECTION REJECT 10.2.37RRC CONNECTION RELEASE 10.2.38RRC CONNECTION SETUP 10.2.41SECURITY MODE COMMAND 10.2.44SIGNALLING CONNECTION RELEASE 10.2.47SIGNALLING CONNECTION RELEASE REQUEST 10.2.48TRANSPORT CHANNEL RECONFIGURATION 10.2.51TRANSPORT FORMAT COMBINATION CONTROL 10.2.54UE CAPABILITY ENQUIRY 10.2.56UE CAPABILITY INFORMATION CONFIRM 10.2.58UPLINK PHYSICAL CHANNEL CONTROL 10.2.60URA UPDATE CONFIRM 10.2.62UTRAN MOBILITY INFORMATION 10.2.63

Extensions ACTIVE SET UPDATE COMPLETE 10.2.2ACTIVE SET UPDATE FAILURE 10.2.3CELL UPDATE 10.2.4INITIAL DIRECT TRANSFER 10.2.12INTER SYSTEM HANDOVER FAILURE 10.2.14MEASUREMENT CONTROL FAILURE 10.2.16MEASUREMENT REPORT 10.2.17PHYSICAL CHANNEL RECONFIGURATION COMPLETE 10.2.21PHYSICAL CHANNEL RECONFIGURATION FAILURE 10.2.22PUSCH CAPACITY REQUEST 10.2.24RADIO BEARER RECONFIGURATION COMPLETE 10.2.26RADIO BEARER RECONFIGURATION FAILURE 10.2.27RADIO BEARER RELEASE COMPLETE 10.2.29RADIO BEARER RELEASE FAILURE 10.2.30RADIO BEARER SETUP COMPLETE 10.2.32RADIO BEARER SETUP FAILURE 10.2.33RRC CONNECTION RE- ESTABLISHMENT COMPLETE 10.2.35RRC CONNECTION RE- ESTABLISHMENT REQUEST 10.2.36RRC CONNECTION RE- ESTABLISHMENT REJECT 10.2.37RRC CONNECTION RELEASE COMPLETE 10.2.39RRC CONNECTION REQUEST 10.2.40RRC CONNECTION SETUP COMPLETE 10.2.42RRC STATUS 10.2.43SECURITY MODE COMPLETE 10.2.45SECURITY MODE FAILURE 10.2.46Master Information Block 10.2.49.8.1System Information Block type 1 to System Information Block type 16 10.2.49.8.2 to 10.2.49.8.18SYSTEM INFORMATION CHANGE INDICATION 10.2.50TRANSPORT CHANNEL RECONFIGURATION COMPLETE 10.2.52TRANSPORT CHANNEL RECONFIGURATION FAILURE 10.2.53TRANSPORT FORMAT COMBINATION CONTROL FAILURE 10.2.55UE CAPABILITY INFORMATION 10.2.57UPLINK DIRECT TRANSFER 10.2.59URA UPDATE 10.2.61UTRAN MOBILITY INFORMATION CONFIRM 10.2.64UTRAN MOBILITY INFORMATION FAILURE 10.2.65

None SYSTEM INFORMATION 10.2.49First Segment 10.2.49.1

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Type MessageSubsequent or last Segment 10.2.49.3Complete SIB 10.2.49.5SIB content 10.2.49.8.1

注 1:对于 SYSTEM INFORMATION消息,只可能在系统信息块级上进行协议扩展。如果需要在SYSTEM INFORMATION 级上进行扩展,就需要定义另外一个消息。

  “扩展和重要程度”可以包括重要的和不重要的扩展。在编码的消息中,重要的扩展应该始终出现在不重要扩展的前面。注 2:以上意味着一个UE可能在遇到第一个不可理解的信息元素时,就停止解码。

  UE应根据支持该消息的协议修订来理解消息中所有的信息元素。10.2 无线资源控制消息  在连接模式中,RB 0,1,2,3和可选的 4都是可以被 RRC消息在 DCCH和 CCH上使用RLC-TM,RLC-UM和 RLC-AM时使用。UE和 UTRAN应该按照以下准则为 RRC消息来选择在DCCH和 CCCH上使用 RLC-TM,RLC-UM和 RLC-AM的无线承载:

- 在 CCCH上发送的所有消息都可以使用 RB 0- 当使用 RLC非确认模式(RLC-UM)时,在DCCH上发送的所有消息可以使用 RB 1。- 当使用 RLC确认模式(RLC-AM)时,除了 INITIAL DIRECT TRANSFER,DOWNLINK

DIRECT TRANSFER 和 UPLINK DIRECT TRANSFER 消息,在 DCCH上发送的所有消息都使用 RB 2。

- 当使用 RLC确认模式(RLC-AM)时,在 DCCH上发送的 INITIAL DIRECT TRANSFER (RB 3),DOWNLINK DIRECT TRANSFER 和 UPLINK DIRECT TRANSFER消息可以使用RB 3 或 4,在 8.1.8, 8.1.9 和 8.1.10有详细说明。

- 对于使用 RLC 透明模式(RLC-TM)时的 DCCH 上的 RRC 消息,应使用透明信令DCCH。

  当在下行链路 CCCH或 SHCCH上使用 RLC UM传输一个 RRC消息时,RRC应该向 RLC指示使用一个特定的 RLC长度指示器[16]。UE可以假设这个指示已经被给出了。这个特定的长度指示器表示一个 RLC SDU在一个 RLC PDU的起始位置处开始。

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10.2.1 ACTIVE SET UPDATE

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now".

New U-RNTI OP U-RNTI 10.3.3.45

CN information elementsCN Information info OP CN

Information info 10.3.1.3

RB information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

Phy CH information elementsUplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing "maximum UL TX power.

Downlink radio resourcesRadio link addition information OP 1 to

<maxRL-1>

Radio link addition information required for each RL to add

>Radio link addition information MP Radio link addition information 10.3.6.67

Radio link removal information OP 1 to <maxRL-1>

Radio link removal information required for each RL to remove

> Radio link removal information MP Radio link removal information 10.3.6.68

TX Diversity Mode MD TX Diversity Mode 10.3.6.84

Default value is the existing TX diversity mode.

SSDT information OP SSDT information 10.3.6.76

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10.2.2 ACTIVE SET UPDATE COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

10.2.3 ACTIVE SET UPDATE FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information 10.3.3.12

10.2.4 CELL UPDATE

RLC-SAP: TM

Logical channel: CCCH

Direction: UEUTRAN

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI MP U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

START list MP 1 to <maxCNdomains>

START [TS 33.102] values for all CN domains.

>CN domain identity MP CN domain identity 10.3.1.1

>START MP START 10.3.3.36

START value to be used in this CN domain.

AM_RLC error indication(for c-plane)

MP Boolean TRUE indicates AM_RLC unrecoverable error occurred on c-plane in the UE

AM_RLC error indication(for u-plane)

MP Boolean TRUE indicates AM_RLC unrecoverable error occurred on u-plane in the UE

Cell update cause MP Cell update cause 10.3.3.3

Protocol error indicator MD Protocol error indicator 10.3.3.27

Default value is FALSE

Measurement information elementsMeasured results on RACH OP Measured

results on RACH 10.3.7.70

Other information elementsProtocol error information CV-ProtErr Protocol

error information 10.3.8.10

Condition ExplanationProtErr If the IE "Protocol error indicator" has the value

"TRUE"

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10.2.5 CELL UPDATE CONFIRM

RLC-SAP: UM

Logical channel: CCCH or DCCH

Direction: UTRANUE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsU-RNTI CV-CCCH U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing DRX cycle length coefficient

RLC reset indicator (for C-plane) MD RLC reset indicator 10.3.3.34

RLC reset indicator (for U-plane) MD RLC reset indicator 10.3.3.34

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN Information ElementsURA identity OP URA identity

10.3.2.6RB information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

PRACH Info (for RACH) OP PRACH Info (for RACH) 10.3.6.51

Downlink radio resourcesDownlink information for one radio link

OP Downlink information for each radio link 10.3.6.26

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Condition ExplanationCCCH This IE is only sent when CCCH is used and ciphering

is not required

10.2.6 COUNTER CHECK

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Presence Multi IE type and reference

Semantics description

Message Type MPUE information elementsIntegrity check info MP Integrity

check info 10.3.3.14

RB information elementsRB COUNT-C MSB information MP 1 to <

maxRBallRABs >

For each RB (excluding SRBs) using UM or AM RLC.

>RB COUNT-C MSB information MP RB COUNT-C MSB information 10.3.4.14

10.2.7 COUNTER CHECK RESPONSE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Presence Multi IE type and reference

Semantics description

Message Type MPUE information elementsIntegrity check info MP Integrity

check info 10.3.3.14

RB information elementsRB COUNT-C information OP 1 to <

maxRBallRABs >

For each RB (excluding SRBs) using UM or AM RLC whose COUNT-C MSB values did not match with the values received from the UTRAN.

>RB COUNT-C information MP RB COUNT-C information 10.3.4.15

10.2.8 DOWNLINK DIRECT TRANSFER

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRAN -> UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

CN information elementsCN Domain Identity MP Core

Network Domain Identity 10.3.1.1

NAS message MP NAS message 10.3.1.8

10.2.9 DOWNLINK OUTER LOOP CONTROL

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

PhyCH information elementsDownlink Outer Loop Control MP Downlink

Outer Loop Control 10.3.6.28

Indicates whether the UE is allowed or not to increase its SIR-target value above its current value

Downlink DPCH power control information

MD Downlink DPCH power control information 10.3.6.22

Default value is the existing "Downlink DPCH power control information"

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10.2.10 HANDOVER TO UTRAN COMMAND

RLC-SAP: N/A (Sent through a different RAT)

Logical channel: N/A (Sent through a different RAT)

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

New U-RNTI MP U-RNTI Short 10.3.3.46

Activation time MD Activation time 10.3.3.1

Default value is "now"

Ciphering algorithm OP Ciphering algorithm 10.3.3.4

RAB info MP RAB info short 10.3.4.9

One RAB is established

CHOICE specification mode MP>Complete specificationUE information elements>>Re-establishment timer MP Re-

establishment timer10.3.3.29

RB information elements>>Signalling RB information to setup list

MP 1 to <maxSRBsetup>

For each signalling radio bearer established

>>>Signalling RB information to setup

MP Signalling RB information to setup 10.3.4.24

>>RB information to setup list MP 1 to <maxRBperRAB>

>>>RB information to setup MP RB information to setup10.3.4.20

Uplink transport channels>>UL Transport channel information common for all transport channels

MP UL Transport channel information common for all transport channels 10.3.5.24

>>Added or Reconfigured TrCH information

MP 1 to <maxTrCH>

>>>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

Downlink transport channels>>DL Transport channel information common for all transport channels

MP DL Transport channel information common for all transport channels 10.3.5.6

>>Added or Reconfigured TrCH information

MP 1 to <maxTrCH>

>>>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.5.1

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Information Element/Group name

Need Multi Type and reference

Semantics description

Uplink radio resources>>Uplink DPCH info MP Uplink

DPCH info 10.3.6.86

>>CPCH SET Info OP CPCH SET Info 10.3.6.12

Downlink radio resources>>CHOICE mode MP>>>FDD>>>>Downlink PDSCH information

OP Downlink PDSCH information10.3.6.29

>>>TDD (no data)>>Downlink information common for all radio links

MP Downlink information common for all radio links10.3.6.23

>>Downlink information per radio link

MP 1 to <maxRL>

>>>Downlink information for each radio link

MP Downlink information for each radio link 10.3.6.26

>Preconfiguration>>Predefined configuration identity

MP Predefined configuration identity 10.3.4.5

>>Uplink DPCH info MP Uplink DPCH info Post 10.3.6.87

Downlink radio resources>>CHOICE mode>>>FDD>>>>Downlink information common for all radio links

Downlink information common for all radio links Post 10.3.6.24

>>>TDD (no data)>>Downlink information per radio link

MP 1 to <maxRL>

Send downlink information for each radio link to be set-up. In TDD MaxRL is 1.

>>>Downlink information for each radio link

MP Downlink information for each radio link Post10.3.6.27

Frequency info MP Frequency info10.3.6.35

Maximum allowed UL TX power MP Maximum allowed UL TX power10.3.6.38

CHOICE mode MP>FDD (no data)>TDD

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Information Element/Group name

Need Multi Type and reference

Semantics description

>>Primary CCPCH Tx Power MP Primary CCPCH Tx Power 10.3.6.58

10.2.11 HANDOVER TO UTRAN COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

START list CH 1 to <maxCNdomains>

START [TS 33.102] values for all CN domains. The IE is mandatory if it has not been transferred prior to the handover.

>CN domain identity MP CN domain identity 10.3.1.1

>START MP START 10.3.3.36

10.2.12 INITIAL DIRECT TRANSFER

RLC-SAP: AM

Logical channel: DCCH

Direction: UE -> UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

CN information elementsService Descriptor MP Service

Descriptor 10.3.1.17

Flow Identifier MP Flow Identifier 10.3.1.4

Allocated by UE for a particular flow

CN domain identity MP CN domain identity 10.3.1.1

NAS message MP NAS message 10.3.1.8

Measurement information elementsMeasured results on RACH OP Measured

results on RACH 10.3.7.70

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10.2.13 INTER-SYSTEM HANDOVER COMMAND

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

Integrity check info CH Integrity check info 10.3.3.14

Activation time MD Activation time 10.3.3.1

Default value is "now"

RAB info OP RAB info 10.3.4.8

Remaining radio access bearer if any

Inter-System message MP Inter-System message 10.3.8.6

10.2.14 INTER-SYSTEM HANDOVER FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Other information elementsInter-System handover failure OP Inter-System

handover failure 10.3.8.5

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10.2.15 MEASUREMENT CONTROL

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message TypeUE information elementsIntegrity check info CH Integrity check

info 10.3.3.14Measurement Information elementsMeasurement Identity Number MP Measurement

Identity Number 10.3.7.73

Measurement Command MP Measurement Command 10.3.7.71

Measurement Reporting Mode OP Measurement Reporting Mode 10.3.7.74

Additional measurements list OP Additional measurements list 10.3.7.1

CHOICE Measurement type CV command

>Intra-frequency measurement Intra-frequency measurement 10.3.7.36

>Inter-frequency measurement Inter-frequency measurement 10.3.7.16

>Inter-system measurement Inter-system measurement 10.3.7.27

>LCS measurement LCS measurement 10.3.7.57

>Traffic Volume measurement Traffic Volume measurement 10.3.7.93

>Quality measurement Quality measurement 10.3.7.81

>UE internal measurement UE internal measurement 10.3.7.102

Physical channel information elementsDPCH compressed mode status info

OP DPCH compressed mode status info 10.3.6.33

Condition ExplanationCommand The IE is mandatory if the "Measurement command"

IE is set to "Setup", optional if the "Measurement command" IE is set to "modify", otherwise the IE is not needed.

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10.2.16 MEASUREMENT CONTROL FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

10.2.17 MEASUREMENT REPORT

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Measurement Information ElementsMeasurement identity number MP Measuremen

t identity number 10.3.7.73

Measured Results OP Measured Results 10.3.7.69

Additional Measured results OP 1 to <maxAdditionalMeas>

>Measured Results MP Measured Results 10.3.7.69

Event results OP Event results 10.3.7.7

10.2.18 PAGING TYPE 1

RLC-SAP: TM

Logical channel: PCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information elementsPaging record list OP 1 to

<maxPage1>

>Paging record MP Paging record 10.3.3.23

Other information elementsBCCH modification info OP BCCH

modification info 10.3.8.1

10.2.19 PAGING TYPE 2

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Paging cause MP Paging cause 10.3.3.22

CN Information elementsCN domain identity MP CN domain

identity 10.3.1.1

Paging Record Type Identifier MP Paging Record Type Identifier 10.3.1.10

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10.2.20 PHYSICAL CHANNEL RECONFIGURATION

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsIntegrity check info CH Integrity

check info 10.3.3.1415

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing value of the maximum allowed UL TX power

CHOICE channel requirement OP At least one criticality=reject spare value needed for future extension

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH) 10.3.6.51

>CPCH SET Info CPCH SET Info 10.3.6.12

>CPCH set ID CPCH set ID 10.3.5.3

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Information Element/Group name

Need Multi Type and reference

Semantics description

Downlink radio resourcesCHOICE mode MP>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

> TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

Send downlink information for each radio link

>Downlink information for each radio link

MP Downlink information for each radio link 10.3.6.26

10.2.21 PHYSICAL CHANNEL RECONFIGURATION COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode MP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

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10.2.22 PHYSICAL CHANNEL RECONFIGURATION FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message type MP Message type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

10.2.23 PHYSICAL SHARED CHANNEL ALLOCATION

RLC-SAP: UM on SHCCH, UM on DCCH

Logical channel: SHCCH or DCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message type

C-RNTI OP C-RNTI 10.3.3.8

Uplink timing advance Control MD Uplink Timing Advance Control 10.3.6.94

Default value is the existing value for uplink timing advance

PUSCH capacity allocation info OP PUSCH Capacity Allocation info 10.3.6.63

PDSCH capacity allocation info OP PDSCH Capacity Allocation info 10.3.6.41

Confirm request MD Enumerated(No Confirm, Confirm PDSCH, Confirm PUSCH)

Default value is No Confirm

ISCP Timeslot list OP 1 to maxTS

>Timeslot number MP Timeslot number 10.3.6.81

Timeslot numbers, for which the UE shall report the timeslot ISCP in PUSCH CAPACITY REQUEST message.

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10.2.24 PUSCH CAPACITY REQUEST

RLC-SAP: TM

Logical channel: SHCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

C-RNTI OP C-RNTI 10.3.3.8

Traffic Volume OP Traffic Volume, measured results list 10.3.7.92

Timeslot list OP 1 to maxTS

>Timeslot number MP Timeslot number 10.3.6.81

>Timeslot ISCP MPPrimary CCPCH RSCP OPCHOICE Allocation confirmation OP>PDSCH Confirmation MP Integer(1..Hi

PDSCHIdentities)

>PUSCH Confirmation MP Integer(1..HiPUSCHIdentities)

Protocol error indicator MD Protocol error indicator 10.3.3.27

Default value is FALSE

Protocol error information CV-ProtErr Protocol error information 10.3.8.10

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10.2.25 RADIO BEARER RECONFIGURATION

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN information elementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB information elementsRAB information to reconfigure list

OP 1 to < maxRABsetup >

>RAB information to reconfigure MP RAB information to reconfigure 10.3.4.11

RB information to reconfigure list OP 1to <maxRB>

>RB information to reconfigure MP RB information to reconfigure 10.3.4.18

RB information to be affected list OP 1 to <maxRB>

>RB information to be affected MP RB information to be affected 10.3.4.17

TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel information common for all transport channels

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.5.24

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Information Element/Group name

Need Multi Type and reference

Semantics description

Deleted TrCH information list OP 1 to <maxTrCH>

> Deleted UL TrCH information MP Deleted UL TrCH information 10.3.5.5

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

CHOICE mode OP>FDD>>CPCH set ID OP CPCH set ID

10.3.5.3>> Added or Reconfigured TrCH information for DRAC list

OP 1 to <maxTrCH>

>>>DRAC static information MP DRAC static information 10.3.5.7

>TDD (no data)Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels 10.3.5.6

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted DL TrCH information MP Deleted DL TrCH information 10.3.5.4

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information 10.3.5.1

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH)

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.6.51>CPCH SET Info CPCH SET

Info 10.3.6.12

Downlink radio resourcesCHOICE mode MP>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

>TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

>Downlink information for each radio link

MP Downlink information for each radio link 10.3.6.26

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10.2.26 RADIO BEARER RECONFIGURATION COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode MP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

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10.2.27 RADIO BEARER RECONFIGURATION FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

RB information elementsRadio bearers for which reconfiguration would have succeeded

OP 1.to.<maxRB>

RB identity, 10.3.4.16

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10.2.28 RADIO BEARER RELEASE

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB Information ElementsRAB information to reconfigure list

OP 1 to < maxRABsetup >

>RAB information to reconfigure MP RAB information to reconfigure 10.3.4.11

RB information to release list MP 1 to <maxRB>

>RB information to release MP RB information to release 10.3.4.19

RB information to be affected list OP 1 to <maxRB>

>RB information to be affected MP RB information

to be affected

10.3.4.17TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel

information common for all transport

channels 10.3.5.24

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Information Element/Group name

Need Multi Type and reference

Semantics description

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted UL TrCH information MP Deleted UL TrCH information 10.3.5.5

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

CHOICE mode OP>FDD>>CPCH set ID OP CPCH set ID

10.3.5.3>> Added or Reconfigured TrCH information for DRAC list

OP 1 to <maxTrCH>

>>>DRAC static information MP DRAC static information 10.3.5.7

>TDD (no data)Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels 10.3.5.6

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted DL TrCH information MP Deleted DL TrCH

information 10.3.5.4

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information

10.3.5.1PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH)

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.6.51>CPCH SET Info CPCH SET

Info 10.3.6.12

Downlink radio resourcesCHOICE mode MP>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

>TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

Send downlink information for each radio link to be set-up

>Downlink information for each radio link

MP Downlink information

for each radio link 10.3.6.26

10.2.29 RADIO BEARER RELEASE COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode MP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

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10.2.30 RADIO BEARER RELEASE FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

RB information elementsRadio bearers for which reconfiguration would have succeeded

OP 1.to.<maxRB>

RB identity, 10.3.4.16

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10.2.31 RADIO BEARER SETUP

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB Information ElementsSignalling RB information to setup list

OP 1 to <maxSRBsetup>

For each signalling radio bearer established

>Signalling RB information to setup

MP Signalling RB information to setup 10.3.4.24

RAB information to setup list OP 1 to <maxRABsetup>

For each RAB established

>RAB information for setup MP RAB information for setup 10.3.4.10

RB information to be affected list OP 1 to <maxRB>

>RB information to be affected MP RB information to be affected 10.3.4.17

TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel information common for all transport channels

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.5.24

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Information Element/Group name

Need Multi Type and reference

Semantics description

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted UL TrCH information MP Deleted UL TrCH information 10.3.5.5

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

CHOICE mode OP>FDD>>CPCH set ID OP CPCH set ID

10.3.5.3>> Added or Reconfigured TrCH information for DRAC list

OP 1 to <maxTrCH>

>>>DRAC static information MP DRAC static information 10.3.5.7

>TDD (no data)Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels10.3.5.6

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted DL TrCH information MP Deleted DL TrCH information 10.3.5.4

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information 10.3.5.1

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH)

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.6.51>CPCH SET Info CPCH SET

Info 10.3.6.12

Downlink radio resourcesCHOICE mode MP>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

>TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

Send downlink information for each radio link

>Downlink information for each radio link

MP Downlink information for each radio link 10.3.6.26

10.2.32 RADIO BEARER SETUP COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode OP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

START OP START 10.3.3.36

This information element is not needed for transparent mode RBs

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

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10.2.33 RADIO BEARER SETUP FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

RB information elementsRadio bearers for which reconfiguration would have succeeded

OP 1.to.<maxRB>

RB identity, 10.3.4.16

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10.2.34 RRC CONNECTION RE-ESTABLISHMENT

RLC-SAP: UM

Logical channel: CCCH, DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsU-RNTI CV-CCCH U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

RLC reset indicator (for C-plane) MP RLC reset indicator 10.3.3.35

RLC reset indicator (for U-plane) MP RLC reset indicator 10.3.3.35

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

RB Information ElementsSignalling RB information to setup list

OP 1 to <maxSRBsetup>

For each signalling radio bearer established

>Signalling RB information to setup

MP Signalling RB

information to setup

10.3.4.24RAB information for setup list OP 1 to

<maxRABsetup>

For each RAB established

>RAB information for setup MP RAB information for setup 10.3.4.10

RB information to release list OP 1 to <maxRB>

>RB information to release MP RB information to release 10.3.4.19

RB information to reconfigure list OP 1 to <maxRB>

>RB information to reconfigure MP RB information

to

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Information Element/Group name

Need Multi Type and reference

Semantics description

reconfigure 10.3.4.18

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Information Element/Group name

Need Multi Type and reference

Semantics description

RB information to be affected list OP 1 to <maxRB>

>RB information to be affected MP RB information

to be affected

10.3.4.17TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel

information common for all transport

channels 10.3.5.24

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted UL TrCH information MP Deleted UL TrCH

information 10.3.5.5

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information

10.3.5.2CHOICE mode OP>FDD>>CPCH set ID OP CPCH set ID

10.3.5.3>> Added or Reconfigured TrCH information for DRAC list

OP 1 to <maxTrCH>

>>>DRAC static information MP DRAC static information

10.3.5.7>TDD (no data)Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels 10.3.5.6

Deleted TrCH information list OP 1 to <maxTrCH>

>Deleted DL TrCH information MP Deleted DL TrCH

information 10.3.5.4

Added or Reconfigured TrCH information list

OP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information

10.3.5.1

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Information Element/Group name

Need Multi Type and reference

Semantics description

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86.

>PRACH Info (for RACH) PRACH Info (for RACH) 10.3.6.51

>CPCH SET Info CPCH SET Info

10.3.6.12Downlink radio resourcesCHOICE mode>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

>TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

Send downlink information for each radio link to be set-up

>Downlink information for each radio link

MP Downlink information

for each radio link 10.3.6.26

Condition ExplanationCCCH This IE is only sent when CCCH is used

10.2.35 RRC CONNECTION RE-ESTABLISHMENT COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode OP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

START OP START 10.3.3.36

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

10.2.36 RRC CONNECTION RE-ESTABLISHMENT REQUEST

RLC-SAP: TM

Logical channel: CCCH

Direction: UE UTRAN

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI MP U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

START list MP 1 to <maxCNdomains>

START [TS 33.102] values for all CN domains.

>CN domain identity MP CN domain identity 10.3.1.1

>START MP START 10.3.3.36

START value to be used in this CN domain.

AM_RLC error indication(for C-plane)

MP Boolean TRUE indicates AM_RLC unrecoverable error occurred on c-plane in the UE

AM_RLC error indication(for U-plane)

MP Boolean TRUE indicates AM_RLC unrecoverable error occurred on u-plane in the UE

Protocol error indicator MD Protocol error indicator 10.3.3.27

Default value is FALSE

Measurement information elementsMeasured results on RACH OP Measured

results on RACH 10.3.7.70

Other information elementsProtocol error information CV-ProtErr Protocol

error information 10.3.8.10

Condition ExplanationProtErr If the IE "Protocol error indicator" has the value

"TRUE"

10.2.37 RRC CONNECTION REJECT

RLC-SAP: UM

Logical channel: CCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsInitial UE identity MP Initial UE

identity 10.3.3.13

Rejection cause MP Rejection cause 10.3.3.30

Wait time MP Wait time 10.3.3.48

Redirection info OP Redirection info 10.3.3.28

10.2.38 RRC CONNECTION RELEASE

RLC-SAP: UM or TM

Logical channel: CCCH or DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI CV-CCCH U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

Number of RRC Message Transmissions

CH Cell_DCH

Number of RRC Message Transmissions 10.3.3.21

Release cause MP Release cause 10.3.3.31

Condition ExplanationCCCH This IE is only sent when CCCH is used.Cell_DCH This IE is present when UE is in CELL_DCH state.

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10.2.39 RRC CONNECTION RELEASE COMPLETE

RLC-SAP: AM or UM or TM

Logical channel: CCCH or DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI CV-CCCH U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

Error indication OP Failure cause and error information 10.3.3.12

Condition ExplanationCCCH This IE is only sent when CCCH is used.

10.2.40 RRC CONNECTION REQUEST

RLC-SAP: TM

Logical channel: CCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsInitial UE identity MP Initial UE

identity 10.3.3.13

Establishment cause MP Establishment cause 10.3.3.11

Protocol error indicator MD Protocol error indicator 10.3.3.27

Default value is FALSE

Measurement information elementsMeasured results on RACH OP Measured

results on RACH 10.3.7.70

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10.2.41 RRC CONNECTION SETUP

RLC-SAP: UM

Logical channel: CCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsInitial UE identity MP Initial UE

identity 10.3.3.13

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI MP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

UTRAN DRX cycle length coefficient

MP UTRAN DRX cycle length coefficient 10.3.3.47

Capability update requirement MD Capability update requirement 10.3.3.2

Default value is defined in subclause 10.3.3.3

RB Information ElementsSignalling RB information to setup list

MP 3 to 4 Information for signalling radio bearers, in the order RB 1 up to 4.

>Signalling RB information to setup

MP Signalling RB information to setup 10.3.4.24

TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel information common for all transport channels 10.3.5.24

Added or Reconfigured TrCH information list

MP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels 10.3.5.6

Added or Reconfigured TrCH information list

MP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information10.3.5.1

PhyCH information elementsFrequency info MD Frequency

info Default value is the existing value of frequency information

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.6.35Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH) 10.3.6.51

>CPCH SET Info CPCH SET Info 10.3.6.12

Downlink radio resourcesDownlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <MaxRL>

Send downlink information for each radio link to be set-up

>Downlink information for each radio link

MP Downlink information

for each radio link 10.3.6.26

10.2.42 RRC CONNECTION SETUP COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

START list MP 1 to <maxCNdomains>

START [TS 33.102] values for all CN domains.

>CN domain identity MP CN domain identity 10.3.1.1

>START MP START 10.3.3.36

START value to be used in this CN domain.

UE information elementsUE radio access capability OP UE radio

access capability 10.3.3.40

UE system specific capability OP Inter-system message 10.3.8.6

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10.2.43 RRC STATUS

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

Other information elementsProtocol error information MP Protocol

error information 10.3.8.10

10.2.44 SECURITY MODE COMMAND

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRAN to UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info MP Integrity

check info 10.3.3.14

Security capability MP Security capability 10.3.3.36

Ciphering mode info OP Ciphering mode info 10.3.3.5

Only present if ciphering shall be controlled

Integrity protection mode info OP Integrity protection mode info 10.3.3.1718

Only present if integrity protection shall be controlled

CN Information elementsCN domain identity MP CN domain

identity 10.3.1.1

Indicates which cipher and integrity protection keys are applicable

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10.2.45 SECURITY MODE COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE to UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info MP Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info 10.3.4.13

10.2.46 SECURITY MODE FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information 10.3.3.12

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10.2.47 SIGNALLING CONNECTION RELEASE

RLC-SAP: AM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

CN information elementsSignalling Flow related information list

MP 1 to <maxSignallingFlow>

Flow identifier to be provided for each signalling flow to be released.

>Flow Identifier MP Flow Identifier 10.3.1.4

10.2.48 SIGNALLING CONNECTION RELEASE REQUEST

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi IE type and reference

Semantics description

Message Type MP Message type

CN information elementsFlow Identifier MP Flow

Identifier 10.3.1.4

Flow identifier of signalling flow to be released by UTRAN.

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10.2.49 SYSTEM INFORMATION

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message type OP Message type

The message type is mandatory on the FACH, and absent on the BCH

SFNprime CV channel

Integer(0..4094 by step of 2)

SFN=SFNprime (for first 10ms frame of 20ms TTI), SFN=SFNprime+1 (for last 10ms frame of 20ms TTI)

CHOICE Segment combination MP>Combination 1 (no data)>Combination 2>>First Segment MP First

Segment,10.2.49.1

>Combination 3>>Subsequent Segment MP Subsequent

Segment,10.2.49.3

>Combination 4>>Last segment MP Last

segment (short), 10.2.49.5

>Combination 5>>Last segment MP Last

Segment (short) 10.2.49.5

>>First Segment MP First Segment (short),10.2.49.2

>Combination 6>>Last Segment MP Last

Segment (short),10.2.49.5

>>Complete list 1 to maxSIBperMsg

Note 1

>>>Complete Complete SIB (short), 10.2.49.7

>Combination 7>>Last Segment MP Last

Segment (short),10.2.49.5

>>Complete list MP 1..16 Note 1>>>Complete MP Complete

SIB (short), 10.2.49.7

>>First Segment MP First Segment (short),10.2.49.2

>Combination 8>>Complete list MP 1 to

maxSIBperMsg

Note 1

>>>Complete MP Complete SIB (short), 10.2.49.7

>Combination 9>>Complete list MP 1..MaxSIB

perMsgNote 1

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>>>Complete MP Complete SIB (short), 10.2.49.7

>>First Segment MP First Segment (short),10.2.49.2

>Combination 10>>> Complete SIB of size 215 to 222

MP Complete SIB, 10.2.49.6

>Combination 11>>Last segment of size 215 to 222

MP Last segment, 10.2.49.4

10.2.49.1 First Segment

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17SEG_COUNT MP SEG

COUNT, 10.3.8.13

SIB data fixed MP SIB data fixed, 10.3.8.15

10.2.49.2 First Segment (short)

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17SEG_COUNT MP SEG

COUNT, 10.3.8.13

SIB data variable MP SIB data variable, 10.3.8.16

10.2.49.3 Subsequent Segment

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17Segment index MP Segment

Index, 10.3.8.14

SIB data fixed MP SIB data fixed, 10.3.8.15

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10.2.49.4 Last Segment

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17Segment index MP Segment

Index, 10.3.8.14

SIB data fixed MP SIB data fixed, 10.3.8.15

In case the SIB data is less than 222 bits, padding shall be used. The same padding bits shall be used as defined in clause 12.1

10.2.49.5 Last Segment (short)

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17Segment index MP Segment

Index, 10.3.8.14

SIB data variable MP SIB data variable, 10.3.8.15

10.2.49.6 Complete SIB

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17SIB data fixed MP SIB data

fixed, 10.3.8.15

In case the SIB data is less than 222 bits, padding shall be used. The same padding bits shall be used as defined in clause 12.1

10.2.49.7 Complete SIB (short)

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsSIB type MP SIB Type,

10.3.8.17SIB data variable MP 10.2.49.6

SIB data variable, 10.3.8.16

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10.2.49.8 System Information Blocks

10.2.49.8.1 Master Information Block

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsMIB Value tag MP MIB Value

tag 10.3.8.7CN information elementsSupported PLMN types MP PLMN Type

10.3.1.12PLMN Identity CV GSM PLMN

Identity 10.3.1.11

ANSI-41 information elementsANSI-41 Core Network Information

CV ANSI-41

ANSI-41 Core Network Information 10.3.9.1

References to other system information blocks

MP References to other system information blocks 10.3.8.11

Condition ExplanationGSM The IE is mandatory if the IE "Supported PLMN

Types" is set to 'GSM-MAP' or 'GSM-MAP AND ANSI-41', and not needed otherwise

ANSI-41 The IE is mandatory if the IE "Supported PLMN Types" is set to 'ANSI-41' or 'GSM-MAP AND ANSI-41', and not needed otherwise

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10.2.49.8.2 System Information Block type 1

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "PLMN" and update mechanism "value tag" may be referenced.

CN information elementsCN common GSM-MAP NAS system information

MP NAS system information (GSM-MAP) 10.3.1.9

CN domain system information list

MP 1 to <maxCNdomains>

Send CN information for each CN domain.

>CN domain system information MP CN domain system information 10.3.1.2

UE information UE Timers and constants in CELL_DCH

MD UE Timers and constants in CELL_DCH 10.3.3.41

Default value means that for all timers and constants- For parameters with need MD, the defaults specified in 10.3.3.41 apply and - For parameters with need OP, the parameters are absent

UE Timers and constants in idle mode

MD UE Timers and constants in idle mode 10.3.3.43

Default value means that for all timers and constants- For parameters with need MD, the defaults specified in 10.3.3.43 apply and - For parameters with need OP, the parameters are absent

10.2.49.8.3 System Information Block type 2

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "PLMN" and update mechanism "value tag" may be referenced.

UTRAN mobility information elementsURA identity list MP 1 ..<maxU

RA>>URA identity MP URA identity

10.3.2.6UE information elementsUE Timers and constants in connected mode

MP UE Timers and constants in connected mode 10.3.3.42

Default value means that for all timers and constants- For parameters with need MD, the defaults specified in 10.3.3.42 apply and - For parameters with need OP, the parameters are absent

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10.2.49.8.4 System Information Block type 3

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

UTRAN mobility information elementsCell identity MP Cell identity

10.3.2.2Cell selection and re-selection info

MP Cell selection and re-selection info for SIB3/4 10.3.2.3

Cell Access Restriction MP Cell Access Restriction 10.3.2.1

10.2.49.8.5 System Information Block type 4

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

UTRAN mobility information elementsCell identity MP Cell identity

10.3.2.2Cell selection and re-selection info

MP Cell selection and re-selection info for SIB3/4 10.3.2.3

Cell Access Restriction MP Cell Access Restriction 10.3.2.1

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10.2.49.8.6 System Information Block type 5

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

PhyCH information elementsCHOICE mode MP>FDD>>PICH Power offset MP PICH Power

offset 10.3.6.49

>>AICH Power offset MP AICH Power offset 10.3.6.3

>TDD>>PUSCH system information OP PUSCH

system information 10.3.6.65

>>PDSCH system information OP PDSCH system information 10.3.6.45

>>Midamble configuration MD Midamble configuration10.3.6.39

Default value is defined in 10.3.6.39

>>Primary CCPCH Tx Power OP Primary CCPCH Tx Power 10.3.6.58

For path loss calculation

>>PRACH Constant Value OP Constant Value10.3.6.10

Operator controlled PRACH Margin

>>DPCH Constant Value OP Constant Value10.3.6.10

Operator controlled UL DPCH Margin

>>PUSCH Constant Value OP Constant Value10.3.6.10

Operator controlled PUSCH Margin

Primary CCPCH info OP Primary CCPCH info 10.3.6.56

Note 1

PRACH system information list MP PRACH system information list 10.3.6.54

Secondary CCPCH system information

MP Secondary CCPCH system information 10.3.6.71

CBS DRX Level 1 information CV CTCH CBS DRX Level 1 information 10.3.8.3

Condition ExplanationCTCH The IE is mandatory if the IE "CTCH indicator" is

equal to TRUE for at least one FACH, otherwise the IE is not needed in the message

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10.2.49.8.7 System Information Block type 6

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

PhyCH information elementsCHOICE mode MP>FDD>>PICH Power offset MP PICH Power

offset 10.3.6.49

>>AICH Power offset MP AICH Power offset 10.3.6.3

>>CSICH Power offset OP CSICH Power offset 10.3.6.14

>TDD>>PUSCH system information OP PUSCH

system information 10.3.6.65

>>PDSCH system information OP PDSCH system information 10.3.6.45

>>Midamble configuration MD Midamble configuration10.3.6.39

Default value is defined in 10.3.6.39

>>Primary CCPCH Tx Power OP Primary CCPCH Tx Power 10.3.6.58

For path loss calculation

>>PRACH Constant Value OP Constant Value10.3.6.10

Operator controlled PRACH Margin for SF 16 case. In the SF 8 case 3dB is added.

>>DPCH Constant Value OP Constant Value10.3.6.10

Operator controlled UL DPCH Margin

>>PUSCH Constant Value OP Constant Value10.3.6.10

Operator controlled PUSCH Margin

Primary CCPCH info OP Primary CCPCH info 10.3.6.56

Note 1

PRACH system information list MP PRACH system information list 10.3.6.54

Secondary CCPCH system information

MP Secondary CCPCH system information 10.3.6.71

CBS DRX Level 1 information CV CTCH CBS DRX Level 1 information 10.3.8.3

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Condition ExplanationCTCH The IE is mandatory if the IE "CTCH indicator" is

equal to TRUE for at least one FACH, otherwise the IE is not needed

10.2.49.8.8 System Information Block type 7

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "expiration timer" may be referenced.

CHOICE mode MP>FDD>>UL interference MP UL

interference 10.3.6.85

>TDD (no data)PhyCH information elementsPRACHs listed in system information block type 5

MP 1 to<maxPRACH>

The order of the PRACHs is the same as in system information block type 5.

>Dynamic persistence level MP Dynamic persistence level 10.3.6.34

PRACHs listed in system information block type 6

OP 1 to <maxPRACH>

The order of the PRACHs is the same as in system information block type 6.

>Dynamic persistence level MP Dynamic persistence level 10.3.6.34

10.2.49.8.9 System Information Block type 8

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

UE information CPCH parameters MP CPCH

parameters 10.3.3.7

PhyCH information elementsCPCH set info list MP 1 to

<maxCPCHsets>

>CPCH set info MP CPCH set info 10.3.6.12

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10.2.49.8.10 System Information Block type 9

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "expiration timer" may be referenced.

PhyCH information elementsCPCH set persistence levels list MP ..1 to

<maxCPCHsets>

>CPCH set persistence levels MP CPCH persistence levels 10.3.6.11

10.2.49.8.11 System Information Block type 10

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "expiration timer" may be referenced.

UE information DRAC system information MP DRAC

system information 10.3.3.9

DRAC information is sent for each class of terminal

10.2.49.8.12 System Information Block type 11

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

Measurement information elementsFACH measurement occasion info

OP FACH measurement occasion info 10.3.7.8

Measurement control system information

MP Measurement control system information 10.3.7.72

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10.2.49.8.13 System Information Block type 12

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

Measurement information elementsFACH measurement occasion info

OP FACH measurement occasion info 10.3.7.8

Measurement control system information

MP Measurement control system information 10.3.7.72

10.2.49.8.14 System Information Block type 13

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsReferences to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

CN Information ElementsCN Domain system information list

1 to <maxCNdomains>

Send CN information for each CN domain.

>CN Domain system information CN Domain system information 10.3.1.2

UE InformationUE timers and constants in idle mode

OP UE timers and constants in idle mode 10.3.3.43

Capability update requirement OP Capability update requirement 10.3.3.2

10.2.49.8.14.1 System Information Block type 13.1

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 information elementsANSI-41 RAND information MP ANSI-41

RAND information 10.3.9.6

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10.2.49.8.14.2 System Information Block type 13.2

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 information elementsANSI-41 User Zone

Identification informationMP ANSI-41

User Zone Identification information 10.3.9.7

10.2.49.8.14.3 System Information Block type 13.3

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 information elementsANSI-41 Private Neighbor List information

MP ANSI-41 Private Neighbor List information 10.3.9.5

10.2.49.8.14.4 System Information Block type 13.4

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 information elementsANSI-41 Global Service

Redirection informationMP ANSI-41

Global Service Redirection information 10.3.9.2

10.2.49.8.15 System Information Block type 14

Information Element/Group name

Need Multi Type and reference

Semantics description

Other information elementsReferences to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

PhyCH information elementsIndividual Timeslot interference list

MP 1 to <maxTS>

>Individual Timeslot interference MP Individual Timeslot interference 10.3.6.37

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10.2.49.8.16 System Information Block type 15

Information Element/Group name

Need Multi Type and Reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

LCS Cipher GPS Data Indicator OP LCS Cipher GPS Data Indicator 10.3.7.43

This is included if the SIB types 15.1, 15.2 & 15.3 are ciphered in accordance with the Data Assistance Ciphering Algorithm specified in [18]

LCS OTDOA assistance for SIB OP LCS OTDOA assistance for SIB 10.3.7.61

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10.2.49.8.16.1 System Information Block type 15.1

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Information Element/Group name

Need Multi Type and Reference

Semantics description

UTRAN Time Flag MP Bitstring(1)Node B Clock Drift Flag MP Bitstring(1)Node B Clock Drift OP Real(-

0.1..0.1 by a proper step)

This IE provides an estimate of the drift rate of the Node B clock relative to GPS time. It has units of sec/sec (ppm) and a range of 0.1. This IE aids the UE in maintaining the relation between GPS and cell timing over a period of time. A positive value for Node B Clock Drift indicates that the Node B clock is running at a greater frequency than desired.

Reference Location MP As defined in TS23.032

Provides a prior knowledge of the approximate location of the UE

SFN OP Integer(0..4095)

The SFN that occurs at the Reference GPS TOW time

Reference GPS TOW MP Integer(0..6.047*1011)

GPS Time of Week with scaling factor of 1 usec. This field time-stamps the start of the frame with SFN=0.

Status/Health MP Enumerated(UDRE scale 1.0, UDRE scale 0.75, UDRE scale 0.5, UDRE scale 0.3, UDRE scale 0.2, UDRE scale 0.1, no data, invalid data)

This field indicates the status of the differential corrections.

DPGS information CV-Status 1..<maxSat>

The following fields contain the DPGS corrections. If the Cipher information is included these fields are ciphered.

>SatID MP Enumerated (0…63)

The satellite ID number.

>IODE MP Integer(0..255)

This IE is the sequence number for the ephemeris for the particular satellite. The MS can use this IE to determine if new ephemeris is used for calculating the corrections that are provided in the broadcast message. This eight-bit IE is incremented for each new set of ephemeris for the satellite and may occupy the numerical range of [0, 239] during normal operations.

>UDRE MP Enumerated(UDRE 1.0 m,1.0m < UDRE 4.0m,4.0m < UDRE 8.0m,8.0m < UDRE)

User Differential Range Error. This field provides an estimate of the uncertainty (1-) in the corrections for the particular satellite. The value in this field shall be multiplied by the UDRE Scale Factor in the Status field to determine the final UDRE estimate for the particular satellite.

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Information Element/Group name

Need Multi Type and Reference

Semantics description

>PRC MP Integer(-2047..2047)

Scaling factor 0.32 meters (different from [13])

>RRC MP Integer(-127..127)

Scaling factor 0.032 meters/sec (different from [13])

>Delta PRC2 MP Integer(-127..127)

The difference in the pseudorange correction between the satellite's ephemeris identified by IODE and the previous ephemeris two issues ago IODE –2.

>Delta RRC2 MP Integer(-7..7) The difference in the pseudorange rate-of-change correction between the satellite's ephemeris identified by IODE and IODE-2.

Condition ExplanationStatus/Health This IE is mandatory if "status" is not equal to "no

data" or "invalid data", otherwise the IE is not needed

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10.2.49.8.16.2 System Information Block type 15.2

Information Element/Group name

Need Multi Type and Reference

Semantics description

Transmission TOW MP Enumerated(0. 1048575)

The approximate GPS time-of-week when the message is broadcast

SatID MP Enumerated(0..63)

Satellite ID

TLM Message MP Bit string(14)TLM Revd (C) MP Bit string(2)HOW MP Bit string(22)WN MP Bit string(10)C/A or P on L2 MP Bit string(2)URA Index MP Bit string(4)SV Health MP Bit string(6)IODC MP Bit

string(10(1))

L2 P Data Flag MP Bit string(1)SF 1 Reserved MP Bit string(87)TGD MP Bit string(8)toc MP Bit

string(16(1))

af2 MP Bit string(8)af1 MP Bit string(16)af0 MP Bit string(22)Crs MP Bit string(16)n MP Bit string(16)M0 MP Bit string(32)Cuc MP Bit string(16)e MP Bit

string(32(1))

Cus MP Bit string(16)(A)1/2 MP Bit

string(32(1))

toe MP Bit string(16(1))

Fit Interval Flag MP Bit string(1)AODO MP Bit string(5)Cic MP Bit string(16)OMEGA0 MP Bit string(32)Cis MP Bit string(16)i0 MP Bit string(32)Crc MP Bit string(16) MP Bit string(32)OMEGAdot MP Bit string(24)Idot MP Bit string(14)Spare/zero fill MP Bit string(20)

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10.2.49.8.16.3 System Information Block type 15.3

Information Element/Group name

Need Multi Type and Reference

Semantics description

Transmission TOW MP Enumerated(0. 1048575)

The approximate GPS time-of-week when the message is broadcast

SatMask MP Bitstring(1..32)

indicates the satellites that contain the pages being broadcast in this data set

LSB TOW MP Bit string(8)GPS Info MP 1 to

<Max_Dat_rep>

>SFIO 0 MP Bit string(1)

Each repetition corresponds to a different page no. as described in the table below

>Data ID MP Bit string(2)>Page No. MP Bit string(6)>Word 3 MP Bit string(16)>Word 4 MP Bit string(24)>Word 5 MP Bit string(24)>Word 6 MP Bit string(24)>Word 7 MP Bit string(24)>Word 8 MP Bit string(24)>Word 9 MP Bit string(24)>Word 10 MP Bit string(22)Spare/zero fill MP Bit string(5)

Mapping of Almanac, Health, Iono, and UTC Data to Subframe Number and Page Number

Data Type Subframe Page(s)Almanac Data (SV1 – 24) 5 1 - 24

Almanac Data (SV25 – 32) 4 2, 3, 4, 5, 7, 8, 9, 10SV Health (SV1 – 24) 5 25

SV Health (SV25 – 32) 4 25Iono/UTC Corrections 4 18

Multi Bound ExplanationMax_Dat_rep Maximum number of repeats=3

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10.2.49.8.17 System Information Block type 16

Information Element/Group name

Need Multi Type and Reference

Semantics description

Other information elementsReferences to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

UE information elementsRe-establishment timer MP Re-

establishment timer10.3.3.29

RB information elementsPredefined RB configuration MP Predefined

RB configuration10.3.4.7

TrCH Information ElementsPredefined TrCH configuration MP Predefined

TrCH configuration10.3.5.9

PhyCH Information ElementsPredefined PhyCH configuration MP Predefined

PhyCH configuration10.3.6.55

10.2.49.8.18 System Information Block type 17

Information Element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

OP References to other system information blocks 10.3.8.11

Only system information blocks with area scope "Cell" and update mechanism "value tag" may be referenced.

PhyCH information elementsPUSCH system information OP PUSCH

system information 10.3.6.65

PDSCH system information OP PDSCH system information 10.3.6.45

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10.2.50 SYSTEM INFORMATION CHANGE INDICATION

RLC-SAP: TM

Logical channel: BCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

Other information elementsBCCH modification info MP BCCH

modification info 10.3.8.1

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10.2.51 TRANSPORT CHANNEL RECONFIGURATION

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRAN UE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

Activation time MD Activation time 10.3.3.1

Default value is "now"

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

TrCH Information ElementsUplink transport channelsUL Transport channel information common for all transport channels

OP UL Transport channel information common for all transport channels 10.3.5.24

Added or Reconfigured TrCH information list

MP 1 to <maxTrCH>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

CHOICE mode OP>FDD>>CPCH set ID OP CPCH set ID

10.3.5.3>> Added or Reconfigured TrCH information for DRAC list

OP 1 to <maxTrCH

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Information Element/Group name

Need Multi Type and reference

Semantics description

>>>>DRAC static information MP DRAC static

information 10.3.5.7

>TDD (no data)Downlink transport channelsDL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels 10.3.5.6

Added or Reconfigured TrCH information list

MP 1 to <maxTrCH>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information10.3.5.1

PhyCH information elementsFrequency info MD Frequency

info 10.3.6.35

Default value is the existing value of frequency information

Uplink radio resourcesMaximum allowed UL TX power MD Maximum

allowed UL TX power 10.3.6.38

Default value is the existing maximum UL TX power

CHOICE channel requirement OP At least one spare choice (criticality = reject) required

>Uplink DPCH info Uplink DPCH info 10.3.6.86

>PRACH Info (for RACH) PRACH Info (for RACH) 10.3.6.51

>CPCH SET Info CPCH SET Info 10.3.6.12

Downlink radio resourcesCHOICE mode>FDD>>Downlink PDSCH information OP Downlink

PDSCH information 10.3.6.29

>TDD (no data)Downlink information common for all radio links

OP Downlink information common for all radio links 10.3.6.23

Downlink information per radio link list

OP 1 to <maxRL>

Send downlink information for each radio link

>Downlink information for each radio link

MP Downlink information for each radio link 10.3.6.26

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10.2.52 TRANSPORT CHANNEL RECONFIGURATION COMPLETE

RLC-SAP: AM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

CHOICE mode OP>FDD (no data)>TDD>>Uplink Timing Advance OP Uplink

Timing Advance 10.3.6.93

This information element shall be present in case of handover procedure if timing advance is enabled. Calculated timing advance value for the new cell after handover in a synchronous TDD network

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

10.2.53 TRANSPORT CHANNEL RECONFIGURATION FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

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10.2.54 TRANSPORT FORMAT COMBINATION CONTROL

RLC-SAP: TM, AM or UM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type CV-notTM Message Type

UE information elementsIntegrity check info CV-notTM Integrity

check info 10.3.3.14

TrCH information elementsCHOICE mode MP>FDD (no data)>TDD>>TFCS Id OP Transport

Format Combination Set Identity 10.3.5.21

DPCH/PUSCH TFCS in uplink MP Transport Format Combination subset 10.3.5.22

TFC Control duration CV-notTMopt

TFC Control duration 10.3.6.78

Condition ExplanationNotTM The message type is not included when transmitting the

message on the transparent mode signalling DCCHNotTMopt The information element is not included when

transmitting the message on the transparent mode signalling DCCH and is optional otherwise.

10.2.55 TRANSPORT FORMAT COMBINATION CONTROL FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

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10.2.56 UE CAPABILITY ENQUIRY

RLC-SAP: TBD

Logical channel: DCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

Capability update requirement MP Capability update requirement 10.3.3.2

10.2.57 UE CAPABILITY INFORMATION

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UE UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

UE radio access capability OP UE radio access capability 10.3.3.40

Other information elementsUE system specific capability OP Inter-system

message 10.3.8.6

Includes inter-system classmark

10.2.58 UE CAPABILITY INFORMATION CONFIRM

RLC-SAP: AM orUM

Logical channel: DCCH

Direction: UTRAN UE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

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10.2.59 UPLINK DIRECT TRANSFER

RLC-SAP: AM

Logical channel: DCCH

Direction: UE ->UTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

CN information elementsFlow Identifier MP Flow

Identifier 10.3.1.4

Allocated by UE for a particular flow

NAS message MP NAS message 10.3.1.8

Measurement information elementsMeasured results on RACH OP Measured

results on RACH 10.3.7.70

10.2.60 UPLINK PHYSICAL CHANNEL CONTROL

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and Reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info OP Integrity

check info 10.3.3.14

PhyCH information elementsCCTrCH power control info OP CCTrCH

power control info 10.3.6.7

Power control information for one CCTrCH

Timing Advance Control OP UL Timing Advance Control 10.3.6.94

PRACH Constant Value OP Constant value 10.3.6.10

Operator controlled PRACH Margin

PUSCH Constant Value OP Constant value 10.3.6.10

Operator controlled PUSCH Margin

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10.2.61 URA UPDATE

RLC-SAP: TM

Logical channel: CCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI MP U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

URA update cause MP URA update cause 10.3.3.44

Protocol error indicator MD Protocol error indicator 10.3.3.27

Default value is FALSE

Other information elementsProtocol error information CV-ProtErr Protocol

error information 10.3.8.10

Condition ExplanationProtErr If the IE "Protocol error indicator" has the value

"TRUE"

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10.2.62 URA UPDATE CONFIRM

RLC-SAP: UM

Logical channel: CCCH or DCCH

Direction: UTRANUE

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsU-RNTI CV-CCCH U-RNTI

10.3.3.45Integrity check info CH Integrity

check info 10.3.3.14

Integrity check info is included if integrity protection is applied

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN mobility information elementsURA identity OP URA identity

10.3.2.6RB information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

Condition ExplanationCCCH This IE is only sent when CCCH is used

10.2.63 UTRAN MOBILITY INFORMATION

RLC-SAP: AM or UM

Logical channel: DCCH

Direction: UTRANUE

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE Information ElementsIntegrity check info CH Integrity

check info 10.3.3.14

Integrity protection mode info OP Integrity protection mode info 10.3.3.17

Ciphering mode info OP Ciphering mode info 10.3.3.5

New U-RNTI OP U-RNTI 10.3.3.45

New C-RNTI OP C-RNTI 10.3.3.8

DRX Indicator MP DRX Indicator 10.3.3.10

UTRAN DRX cycle length coefficient

MD UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

CN Information ElementsCN Information info OP CN

Information info 10.3.1.3

UTRAN Information ElementsURA identity OP URA identity

10.3.2.6RB Information elementsRB with PDCP information list OP 1 to

<maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

10.2.64 UTRAN MOBILITY INFORMATION CONFIRM

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

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Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Uplink integrity protection activation info

OP Integrity protection activation info 10.3.3.15

RB Information elementsRadio bearer uplink ciphering activation time info

OP RB activation time info10.3.4.13

RB with PDCP information list OP 1 to <maxRBallRABs>

This IE is needed for each RB having PDCP in the case of lossless SRNS relocation

>RB with PDCP information MP RB with PDCP information10.3.4.22

10.2.65 UTRAN MOBILITY INFORMATION FAILURE

RLC-SAP: AM

Logical channel: DCCH

Direction: UEUTRAN

Information Element/Group name

Need Multi Type and reference

Semantics description

Message Type MP Message Type

UE information elementsIntegrity check info CH Integrity

check info 10.3.3.14

Failure cause MP Failure cause and error information10.3.3.12

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10.3 信息元素的功能性定义

10.3.1 CN信息元素

10.3.1.1 CN domain identity

Information Element/Group name

Need Multi Type and reference

Semantics description

CN domain identity MP Enumerated (CS domain, PS domain, Don't care)

At least 1 spare value neededCriticality: criticality reject is needed

10.3.1.2 CN Domain System Information

Information Element/Group name

Need Multi Type and reference

Semantics description

CN domain identity MP CN domain identity 10.3.1.1

CHOICE CN Type MP>GSM-MAP>>CN domain specific NAS system information

MP NAS system information (GSM-MAP) 10.3.1.9

>ANSI-41>>CN domain specific NAS system information

MP ANSI-41 NAS system information, 10.3.9.4

CN domain specific DRX cycle length coefficient

MP CN domain specific DRX cycle length coefficient, 10.3.3.6

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10.3.1.3 CN Information info

Information Element/Group name

Need Multi Type and reference

Semantics description

PLMN identity OP PLMN identity 10.3.1.11

CN common GSM-MAP NAS system information

OP NAS system information (GSM-MAP) 10.3.1.9

CN domain related information OP 1 to <maxCNdomains>

>CN domain identity MP CN domain identity 10.3.1.1

>CN domain specific GSM-MAP NAS system info

MPNAS system information (GSM-MAP) 10.3.1.9

10.3.1.4 Flow Identifier

Information Element/Group name

Need Multi Type and reference

Semantics description

Flow Identifier MP Integer (0…63)

10.3.1.5 IMEI

Information Element/Group name

Need Multi Type and reference

Semantics description

IMEI MP 15>IMEI digit MP INTEGER(0.

.15)

10.3.1.6 IMSI (GSM-MAP)

Information Element/Group name

Need Multi Type and reference

Semantics description

IMSI MP 6 to 15>IMSI digit MP INTEGER(0.

.9)

10.3.1.7 Location Area Identification

Information Element/Group name

Need Multi Type and reference

Semantics description

PLMN identity MP PLMN identity 10.3.1.11

LAC MP Bit string(16)

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10.3.1.8 NAS message

Information Element/Group name

Need Multi Type and reference

Semantics description

NAS message MP Octet string (1..4095)

10.3.1.9 NAS system information (GSM-MAP)

Information Element/Group name

Need Multi Type and reference

Semantics description

GSM-MAP NAS system information

MP Octet string(1..8 )

10.3.1.10 Paging record Type identifier

Information Element/Group name

Need Multi Type and reference

Semantics description

Paging Record Type Identifier MP Enumerated (IMSI (GSM-MAP), TMSI (GSM-MAP)/ P-TMSI, IMSI (DS-41), TMSI (DS-41))

10.3.1.11 PLMN identity

Information Element/Group name

Need Multi Type and reference

Semantics description

MCC MP 3>MCC digit MP INTEGER(0..9)MNC MP 2 to 3>MNC digit MP INTEGER(0..9)

10.3.1.12 PLMN Type

Information Element/Group name

Need Multi Type and reference

Semantics description

PLMN Type MP Enumerated (GSM-MAP, ANSI-41, GSM-MAP and ANSI-41)

At least 1 spare value neededCriticality: reject is needed

10.3.1.13 P-TMSI (GSM-MAP)

Information Element/Group name

Need Multi Type and reference

Semantics description

P-TMSI MP Bit string (32)

Setting specified in [TS 23.003]

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10.3.1.14 RAB identity

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE RAB identity type MP>RAB identity (GSM-MAP) Bit string (8) Formatted according to

[TS 24.008].>RAB identity (ANSI-41) Bit string (8)

CHOICE NAS binding info type Condition under which the given RAB identity type is chosen

RAB identity (GSM-MAP) PLMN is of type GSM-MAPRAB identity (ANSI-41) PLMN is of type ANSI-41

10.3.1.15 Routing Area Code

Information Element/Group name

Need Multi Type and reference

Semantics description

Routing Area Code MP Bit string(8) Setting specified in [TS 23.003]

10.3.1.16 Routing Area Identification

Information Element/Group name

Need Multi Type and reference

Semantics description

LAI MP Location area identification 10.3.1.7

RAC MP Routing area code 10.3.1.15

10.3.1.17 Service Descriptor

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Service descriptor type MP>Service Descriptor (GSM-MAP) Bit string (4) Protocol Discriminator [TS

24.007]The value of RR in the above reference is reserved for paging response.

>Service Descriptor (ANSI-41) Bit string(4) TIA/EIA IS-834

CHOICE Service descriptor type Condition under which the given Service descriptor type is chosen

Service descriptor (GSM-MAP) PLMN is of type GSM-MAPService descriptor (ANSI-41) PLMN is of type ANSI-41

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10.3.1.18 TMSI (GSM-MAP)

Information Element/Group name

Need Multi Type and reference

Semantics description

TMSI (GSM-MAP) MP Bit string (32)

Setting specified in [TS 23.003]

10.3.2 UTRAN移动性信息元素

10.3.2.1 Cell Access Restriction

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell Barred MP Enumerated(not barred, barred)

Intra-frequency cell re-selection indicator

CV-Barred Enumerated(not allowed, allowed)

Tbarred CV-Barred Integer (10,20,40,80,160,320,640,1280)

[4](TS25.304)

Cell Reserved for operator use MP Enumerated(reserved, not reserved)

Cell Reserved for SoLSA exclusive use

MP Enumerated(reserved, not reserved)

Access Class Barred list MD maxAC Default is no access class barred is applied.The first instance of the parameter corresponds to Access Class 0, the second to Access Class 1 and so on up to Access Class 15. UE reads this IE of its access class stored in SIM.

>Access Class Barred MP Enumerated(not barred, barred)

Condition ExplanationBarred Presence is mandatory if the IE "Cell Barred" has the

value "Barred"; otherwise the element is not needed in the message.

10.3.2.2 Cell identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell identity MP bit string(28)

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10.3.2.3 Cell selection and re-selection info for SIB3/4

Information Element/Group name

Need Multi Type and reference

Semantics description

Mapping Info MD Mapping info 10.3.2.5

Contains mapping function for quality measurements. Default is an implicit mapping: Qmap = Qmeas,LEV, TS 25.304.

Cell_selection_and_reselection_quality_measure

MP Enumerated (CPICH Ec/N0, CPICH RSCP)

Choice of measurement (CPICH Ec/N0 or CPICH RSCP) to use as quality measure Q for FDD cells.

CHOICE mode MP>FDD>>Sintrasearch OP Integer (-

32..20 by step of 2)

TS 25.304[dB]

>>Sintersearch OP Integer (-32..20 by step of 2)

TS 25.304[dB]

>>SsearchHCS OP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>RAT List OP 1 to <maxOtherRAT>

>>>RAT identifier MP Enumerated (GSM, cdma2000)

At least 2 spare valuesCriticality: reject are needed

>>>Ssearch,RAT MP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>>SHCS,RAT OP Integer (-32..20 by step of 2)

TS 25.304[dB]

>>Slimit,ShearchRAT OP Integer (-32..20 by step of 2)

TS 25.304[dB]

>TDD>>Sintrasearch OP Integer (-

105..91 by step of 2)

TS 25.304[dB]

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>>Sintersearch OP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>SsearchHCS OP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>RAT List OP 1 to <maxOtherRAT>

>>>RAT identifier MP Enumerated (GSM, cdma2000)

At least 2 spare valuesCriticality: reject are needed

>>>Ssearch,RAT OP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>>SHCS,RAT OP Integer (-105..91 by step of 2)

TS 25.304[dB]

>>>Slimit,ShearchRAT OP Integer (-105..91 by step of 2)

TS 25.304[dB]

Qhyst1s MP Integer (0..40 by step of 2)

TS 25.304

Qhyst2s CV-FDD-Quality-Measure

Integer (0..40 by step of 2)

Default value is Qhist1s

TS 25.304

Treselections MP Integer (0..31)

[s]

HCS Serving cell Information OP HCS Serving cell information 10.3.7.12

Maximum allowed UL TX power MP Maximum allowed UL TX power 10.3.6.38

[dBm] UE_TXPWR_MAX_RACH in 25.304.

CHOICE mode MP>FDD>>Qqualmin MP Integer (-

20..0)Ec/N0, [dB]

>>>Qrxlevmin MP Integer (-115..-25 by step of 2)

RSCP, [dBm]

>TDD>>Qrxlevmin MP Integer (-

115..-25 by step of 2)

RSCP, [dBm]

Condition ExplanationCV-FDD-Quality-Measure Presence is not allowed if the IE

"Cell_selection_and_reselection_quality_measure" has the value CPICH RSCP, otherwise the IE is mandatory and has a default value.

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10.3.2.4 Cell selection and re-selection info for SIB11/12

Information Element/Group name

Need Multi Type and reference

Semantics description

Qoffset1s,n MD Real(-50.0..50.0 by step of 1)

Default value is 0.

Qoffset2s,n CV-FDD-Quality-Measure

Real(-50.0..50.0 by step of 1)

Default value is 0.

Maximum allowed UL TX power MD Maximum allowed UL TX power 10.3.6.38

[dBm] UE_TXPWR_MAX_RACH in 25.304.Default is the Maximum allowed UL TX power for the serving cell

HCS neighbouring cell information

OP HCS Neighbouring cell information 10.3.7.11

CHOICE mode MP>FDD>>Qqualmin MD Integer (-

20..0)Ec/N0, [dB]Default value is Qqualmin for the serving cell

>>Qrxlevmin MD Integer (-115..-25 by step of 2)

RSCP, [dBm]Default value is Qrxlevmin for the serving cell

>TDD>>Qrxlevmin MD Integer (-

115..-25 by step of 2)

RSCP, [dBm]Default value is Qrxlevmin for the serving cell

Condition ExplanationFDD-Quality-Measure Presence is not allowed if the IE

"Cell_selection_and_reselection_quality_measure" has the value CPICH RSCP, otherwise the IE is mandatory and has a default value.

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10.3.2.5 Mapping Info

Information Element/Group name

Need Multi Type and Reference

Semantics description

Mapping List MP 1 to <MaxRAT>

>RAT MP Enumerated (UTRA FDD, UTRA TDD, GSM, cdma2000)

>Mapping Function Parameter List

MP 1 to <maxMeasIntervals>

>> Function type MP Enumerated (linear, function type 2, function type 3, function type 4)

Type of the function within the interval.

>>Map_parameter_1 MD Integer (0..99)

Parameter describing the mapping function between the quality measurement and the representing quality value, see TS 25.304.Default value is zero for the first interval or otherwise the value of Map_parameter_2 of the interval before.

>>Map_parameter_2 MP Integer (0..99)

Parameter describing the mapping function between the quality measurement and the representing quality value, see TS 25.304.

>>Upper_limit CV - MaxInt

Integer (1..MaxMeas)

Upper limit of interval for which the Map_parameter_1 and Map_parameter_2 are valid.MaxMeas = 25 if RAT = UTRA FDD / CPICH Ec/N0, MaxMeas = 91 if RAT = UTRA TDD or if RAT = UTRA FDD/ CPICH RSCP, MaxMeas = 63 if RAT = GSM.

Condition ExplanationMaxInt This information is only sent if Mapping Function

Parameter List has not reached maxMeasIntervals.

10.3.2.6 URA identity

Information Element/Group name

Need Multi Type and reference

Semantics description

URA identity MP bit string(16)

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10.3.3 UE信息元素

10.3.3.1 Activation time

Information Element/Group name

Need Multi Type and reference

Semantics description

Activation time MP Integer(0..255, Now)

CFN [TS 25.402]

10.3.3.2 Capability Update Requirement

Information Element/Group name

Need Multi Type and reference

Semantics description

UE radio access capability update requirement

MP Boolean TRUE indicates update required

System specific capability update requirement list

OP 1 to <maxSystemCapability>

>System specific capability update requirement

MP Enumerated (GSM)

At least 15 spare valuesCriticality: reject are needed

10.3.3.3 Cell update cause

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell update cause MP Enumerated (cell reselection, periodic cell update, UL data transmission, paging response, RB control response, re-entered service area)

At least 2 spare values, Criticality: reject, are needed

10.3.3.4 Ciphering Algorithm

Information Element/Group name

Need Multi Type and reference

Semantics description

Ciphering algorithm MP Enumerated (UEA0, UEA1)

14 spare values needed. Criticality: criticality reject is needed.

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10.3.3.5 Ciphering mode info

Information Element/Group name

Need Multi Type and reference

Semantics description

Ciphering mode command MP Enumerated (start/restart, stop)

Ciphering algorithm CV-notStop

Ciphering algorithm 10.3.3.4

Activation time for DPCH OP Activation time10.3.3.1

Used for radio bearers mapped on RLC-TM

Radio bearer downlink ciphering activation time info

OP RB activation time info, 10.3.4.13

Used for radio bearers mapped on RLC-AM or RLC-UM

Condition ExplanationnotStop The IE is mandatory if the IE "Ciphering mode

command" has the value "start/restart", otherwise the IE is not needed in the message.

10.3.3.6 CN domain specific DRX cycle length coefficient

Information Element/Group name

Need Multi Type and reference

Semantics description

CN domain specific DRX cycle length coefficient

MP Integer(6...12) Refers to 'k' in the formula as specified in 25.304, Discontinuous reception

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10.3.3.7 CPCH Parameters

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Information Element/Group name

Need Multi Type and reference

Semantics description

Initial Priority Delay OP 1 to maxASC

Initial delays for ASC priority.

>NS_IP MP Integer (0…28)

Number of slots for initial fixed delay for each ASC priority level

Backoff control parameters MP>N_ap_retrans_max MP Integer

(1…64)Max number of AP transmissions without AP-AICH response, a PHY parameter.

>N_access_fails MP Integer (1…64)

Max number of preamble ramping cycles when NAK response received, a MAC parameter.

>NF_bo_no aich MP Integer (0…31)

Number of frames for UE backoff after N ap_retrans_max unsuccessful AP access attempts, a MAC parameter.

>NS_bo_busy MP Integer (0…63)

Number of slots for UE fixed backoff after access attempt to busy CPCH, a MAC parameter.

>NF_bo_all_busy MP Integer (0…31)

Max number of frames for UE backoff after access attempt to last busy CPCH, a MAC parameter. UE randomly selects backoff value from range (0..NF_bo_all_busy)

>NF_bo_ mismatch MP Integer (0…127)

Max number of frames for the UE backoff after received mismatch on CD/CA-ICH, a MAC parameter. UE randomly selects backoff value from range (0..NF_bo_mismatch)

>T_CPCH MP Enumerated (0, 1)

CPCH channel timing used to determine Tau, a PHY parameter

Power Control Algorithm MP Enumerated (algorithm 1, algorithm 2)

Specifies algorithm to be used by UE to interpret TPC commands

TPC step size CV algo Integer (1, 2)

In dB

DL DPCCH BER MP Integer (0..63)

The BER quality value shall be set in the range0 DPCCH BER 1 in the unit BER_dB where:

BER_dB_0: DPCCH BER = 0

BER_dB_1: - < Log10(DPCCH BER) < -4.03

BER_dB_2: -4.03 Log10(DPCCH BER) < -3.965

BER_dB_3: -3.965 Log10(DPCCH BER) < -3.9...BER_dB_61: -0.195 Log10(DPCCH BER) < -0.13

BER_dB_62: -0.13 Log10(DPCCH BER) < -0.065

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BER_dB_63: -0.065 Log10(DPCCH BER) 0

Condition Explanationalgo The IE is mandatory if "Power Control Algorithm" is

set to "algorithm 1", otherwise the IE is not needed

10.3.3.8 C-RNTI

Information Element/Group name

Need Multi Type and reference

Semantics description

C-RNTI MP bit string(16)

10.3.3.9 DRAC system information

Information element Need Multi Type and reference

Semantics description

DRAC system information MP 1 to <maxDRACclasses>

DRAC information is sent for each class of terminal

>Transmission probability MP Transmission probability 10.3.3.37

>Maximum bit rate MP Maximum bit rate 10.3.3.19

10.3.3.10 DRX Indicator

Information Element/Group name

Need Multi Type and reference

Semantics description

DRX indicator MP Enumerated(no DRX, DRX with cell updating, DRX with URA updating)

At least 1 spare value, Criticality: reject, are needed

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10.3.3.11 Establishment cause

Information Element/Group name

Need Multi Type and reference Semantics description

Establishment cause MP Enumerated(Originating Conversational Call,Originating Streaming Call,Originating Interactive Call,Originating Background Call, Originating Subscribed traffic Call,Terminating Conversational Call,Terminating Streaming Call,Terminating Interactive Call,Terminating Background Call,Emergency Call,Inter-system cell re-selection,Registration,

Detach,SMS,Call re-establishment)

At least 17 spare values, Criticality: reject, are needed

10.3.3.12 Failure cause and error information

Information Element/Group name

Need Multi Type and reference

Semantics description

Failure cause MP Enumerated (Configuration unsupported, physical channel failure, incompatible simultaneous reconfiguration, protocol error) , compressed mode runtime error)

At least 3 spare values, Criticality: reject, are needed

Protocol error information CV-ProtErr Protocol error information 10.3.8.10

Deleted TGPSI CV-CompModeErr

TGPSI10.3.6.80

Condition ExplanationProtErr Presence is mandatory if the IE "Failure cause" has

the value "Protocol error"; otherwise the element is not needed in the message.

CompModeErr Presence is mandatory if the IE "Failure cause" has the value " Compressed mode runtime error"; otherwise the element is not needed in the message

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10.3.3.13 Initial UE identity

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE UE id type MP At least 8 spare choices, Criticality: reject, is needed

>IMSI (GSM-MAP) IMSI (GSM-MAP) 10.3.1.6

>TMSI and LAI (GSM-MAP)>>TMSI (GSM-MAP) MP TMSI (GSM-

MAP) 10.3.1.18

>>LAI (GSM-MAP) MP Location Area Identification 10.3.1.7

>P-TMSI and RAI (GSM-MAP)>>P-TMSI (GSM-MAP) MP P-TMSI

(GSM-MAP) 10.3.1.13

>>RAI (GSM-MAP) MP Routing Area Identification 10.3.1.16

>IMEI IMEI 10.3.1.5

>ESN (DS-41) TIA/EIA/IS-2000-4

>IMSI (DS-41) TIA/EIA/IS-2000-4

>IMSI and ESN (DS-41) TIA/EIA/IS-2000-4

>TMSI (DS-41) TIA/EIA/IS-2000-4

10.3.3.14 Integrity check info

Information Element/Group name

Need Multi Type and reference

Semantics description

Message authentication code MP bit string(32) MAC-I [TS 33.102] The 27 MSB of the IE shall be set to zero and the 5 LSB of the IE shall be set to the used signalling radio bearer identity when the encoded RRC message is used as the MESSAGE parameter in the integrity protection algorithm.

RRC Message sequence number

MP Integer (0..15)

The local RRC hyper frame number (RRC HFN) is concatenated with the RRC message sequence number to form the input parameter COUNT-I for the integrity protection algorithm. The IE value shall be set to zero when the encoded RRC message is used as the MESSAGE parameter in the integrity protection algorithm.

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10.3.3.15 Integrity protection activation info

Information Element/Group name

Need Multi Type and reference

Semantics description

RRC message sequence number list

MP 4 to 5 The RRC sequence number when a new integrity protection configuration shall be applied, for CCCH (=RB0) and signalling radio bearers in the order RB0, RB1, RB2, RB3, RB4.

>RRC message sequence number

MP Integer (0..15)

10.3.3.16 Integrity protection Algorithm

Information Element/Group name

Need Multi Type and reference

Semantics description

Integrity protection algorithm MP Enumerated (UIA1)

15 spare values needed. Criticality: criticality reject is needed.

10.3.3.17 Integrity protection mode info

Information Element/Group name

Need Multi Type and reference

Semantics description

Integrity protection mode command

MP Enumerated(start, modify)

At least 2 spare values, Criticality: reject, are needed

Downlink integrity protection activation info

CV-modify Integrity protection activation info 10.3.3.15

Integrity protection algorithm OP Integrity protection algorithm 10.3.3.16

Integrity protection initialization number

CV-start Bitstring(32) FRESH [TS 33.102]

Condition ExplanationStart The IE is mandatory if the IE "Integrity protection mode

command" has the value "start ", otherwise it is not needed in the message.

Modify The IE is only present if the IE "Integrity protection mode command" has the value "modify"

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10.3.3.18 LCS capability

Information Element/Group name

Need Multi Type and reference

Semantics description

Standalone location method(s) supported

MP Boolean Defines if a UE can measure its location by some means unrelated to UTRAN TRUE means supported

UE based OTDOA supported MP Boolean TRUE means supportedNetwork Assisted GPS support MP Enumerated

('Network based', 'UE based', 'Both', 'None')

Defines if the UE supports network based or UE based GPS methods.

GPS reference time capable MP Boolean Defines if a UE has the capability to measure GPS reference time as defined in 25.215.TRUE means capable

Support for IPDL MP Boolean Defines if a UE has the capability to use IPDL to enhance its 'SFN-SFN observed time difference –type 2' measurement. TRUE means supported

10.3.3.19 Maximum bit rate

Information Element/Group name

Need Multi Type and reference

Semantics description

Maximum bit rate MP integer(0..512 by step of 16)

=kbit/s

10.3.3.20 Measurement capability

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Information Element/Group name

Need Multi Type and reference

Semantics description

Need for downlink compressed modeFDD measurements DL MP Boolean TRUE means that the UE

requires DL compressed mode in order to perform measurements on FDD

TDD measurements DL CVtdd_sup

Boolean TRUE means that the UE requires DL compressed mode in order to perform measurements on TDD

GSM measurements DL CVgsm_sup

> GSM 900 DL MP Boolean TRUE means that the UE requires DL compressed mode in order to perform measurements on GSM 900

> DCS 1800 DL MP Boolean TRUE means that the UE requires DL compressed mode in order to perform measurements on DCS 1800

> GSM 1900 DL MP Boolean TRUE means that the UE requires DL compressed mode in order to perform measurements on GSM 1900

Multi-carrier measurement DL CVmc_sup

Boolean TRUE means that the UE requires DL compressed mode in order to perform measurements on multi-carrier

Need for uplink compressed modeFDD measurements UL MP Boolean TRUE means that the UE

requires UL compressed mode in order to perform measurements on FDD

TDD measurements UL CVtdd_sup

Boolean TRUE means that the UE requires UL compressed mode in order to perform measurements on TDD

GSM measurements UL CVgsm_sup

> GSM 900 UL MP Boolean TRUE means that the UE requires UL compressed mode in order to perform measurements on GSM 900

> DCS 1800 UL MP Boolean TRUE means that the UE requires UL compressed mode in order to perform measurements on DCS 1800

> GSM 1900 UL MP Boolean TRUE means that the UE requires UL compressed mode in order to perform measurements on GSM 1900

Multi-carrier measurement UL CVmc_sup

Boolean TRUE means that the UE requires UL compressed mode in order to perform measurements on multi-carrier

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Condition Explanationtdd_sup Presence is mandatory if IE Multi-mode capability =

TDD. Otherwise this field is not needed in the message.

gsm_sup Presence is mandatory if IE Multi-RAT capability = GSM. Otherwise this field is not needed in the message.

mc_sup Presence is mandatory if IE Multi-RAT capability = multi-carrier. Otherwise this field is not needed in the message.

10.3.3.21 Number of RRC Message Transmissions

Information Element/Group name

Need Multi Type and reference

Semantics description

Number of RRC Message Transmissions

MP Integer(1..8)

10.3.3.22 Paging cause

Information Element/Group name

Need Multi Type and reference Semantics description

Paging cause MP Enumerated(Terminating Conversational Call,Terminating Streaming Call,Terminating Interactive Call,Terminating Background Call, SMS)

At least 3 spare values, Criticality: reject, are needed

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10.3.3.23 Paging record

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE paging originator MP> CN originator>> Paging cause MP Paging

cause 10.3.3.22

>> CN domain identity MP CN domain identity 10.3.1.1

>>CHOICE UE Identity MP At least 3 spare choice, Criticality: reject, are needed

>>>IMSI (GSM-MAP) IMSI (GSM-MAP) 10.3.1.6

>>>TMSI (GSM-MAP) TMSI (GSM-MAP) 10.3.1.18

>>>P-TMSI (GSM-MAP) P-TMSI (GSM-MAP) 10.3.1.13

>>>IMSI (DS-41) TIA/EIA/IS-2000-4

>>>TMSI (DS-41) TIA/EIA/IS-2000-4

> UTRAN originator>>U-RNTI MP U-RNTI

10.3.3.45

Condition ExplanationCHOICE Paging originator Condition under which the given paging

originator is chosenCN Originating For CN originating pages (idle mode)UTRAN Originating For UTRAN originating pages (connected mode)

10.3.3.24 PDCP capability

Information Element/Group name

Need Multi Type and reference

Semantics description

Support for lossless SRNS relocation

MP Boolean TRUE means supported

Support for RFC2507 MP Boolean TRUE means supportedMax HC context space CV-hc_sup Integer(512,

1024, 2048, 4096, 8192)

Maximum header compression context space in bytes supported by the UEAt least 3 spare values needed, criticality: reject

Condition Explanationhc_sup Presence is mandatory if IE Support for RFC 2507 =

TRUE. Otherwise this field is not needed in the message

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10.3.3.25 Physical channel capability

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Information Element/Group name

Need Multi Type and Reference

Semantics description

Downlink physical channel capability information elementsCHOICE mode MP>FDD>>Maximum number of simultaneous CCTrCH

MP Integer (1..8)

>> Max no DPCH/PDSCH codes

MP Integer(1..8)

Maximum number of DPCH/PDSCH codes to be simultaneously received

>> Max no physical channel bits received

MP Integer(600, 1200, 2400, 3600, 4800, 7200, 9600, 14400, 19200, 28800, 38400, 48000, 57600, 67200, 76800)

Maximum number of physical channel bits received in any 10 ms interval (DPCH, PDSCH, S-CCPCH)

At least 1 spare values needed

>>Support for SF 512 MP Boolean TRUE means supported>>Support of PDSCH MP Boolean TRUE means supported>>Simultaneous reception of SCCPCH and DPCH

MP Boolean TRUE means supported

>>Simultaneous reception of SCCPCH, DPCH and PDSCH

CV-if_sim_rec_pdsch _sup

Boolean TRUE means supported

>>Max no of S-CCPCH RL CV-if_sim_rec

Integer(1) Maximum number of simultaneous S-CCPCH radio linksAt least 7 spare values needed.

>TDD>>Maximum number of simultaneous CCTrCH

MP Integer (1..8)

>>Maximum number of timeslots per frame

MP Integer(1..14)

At least 2 spare values needed.

>>Maximum number of physical channels per frame

MP Integer(1..224)

At least 32 spare values needed

>>Minimum SF MP Integer (1, 16)

>>Support of PDSCH MP Boolean TRUE means supported>>Maximum number of physical channels per timeslot

MP Integer (1..16)

Uplink physical channel capability information elementsCHOICE mode MP>FDD>>Maximum number of DPDCH bits transmitted per 10 ms

MP Integer (600, 1200, 2400, 4800. 9600, 19200. 28800, 38400, 48000, 57600)

At least 6 spare values needed

>>Support of PCPCH MP Boolean TRUE means supported>TDD>>Maximum number of simultaneous CCTrCH

MP Integer (1..8)

>>Maximum Number of MP Integer At least 2 spare values needed

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timeslots per frame (1..14)>>Maximum number of physical channels per timeslot

MP Integer(1, 2)

>>Minimum SF MP Integer(1, 2, 4, 8, 16)

At least 3 spare values needed

>>Support of PUSCH MP Boolean TRUE means supported

Condition Explanationif_sim_rec_pdsch_sup Presence is mandatory if IE Simultaneous reception

of SCCPCH and DPCH = True and IE Support of PDSCH = True. Otherwise this field is not needed in the message.

if_sim_rec Presence is mandatory if IE capability Simultaneous reception of SCCPCH and DPCH = True. Otherwise this field is not needed in the message.

10.3.3.26 Protocol error cause

Information Element/Group name

Need Multi Type and reference

Semantics description

Protocol error cause MP Enumerated (ASN.1 violation or encoding error, Message type non-existent or not implemented, Message not compatible with receiver state, Information element value not comprehended, Conditional information element error, Message extension not comprehended)

At least 2 spare values are needed.

10.3.3.27 Protocol error indicator

Information Element/Group name

Need Multi Type and Reference

Semantics description

Protocol error indicator MP Boolean TRUE means a protocol error occurred. FALSE means a protocol error did not occur.

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10.3.3.28 Redirection info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Redirection Information MP At least one spare choice, Criticality: reject, is needed.

>Frequency info Frequency info 10.3.6.35

>Inter-system info Inter-system info 10.3.7.25

10.3.3.29 Re-establishment timer

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Timer value MP>T314>>T314 value OP Integer(0,

2, 4, 6, 8, 12, 16, 20)

>T315>>T315 value OP Integer(0,1

0, 30, 60, 180, 600, 1200, 1800)

10.3.3.30 Rejection cause

Information Element/Group name

Need Multi Type and reference

Semantics description

Rejection cause MP Enumerated(congestion, unspecified)

At least 2 spare values, Criticality: reject, are needed

10.3.3.31 Release cause

Information Element/Group name

Need Multi Type and reference

Semantics description

Release cause MP Enumerated(normal event, unspecified, pre-emptive release, congestion, re-establishment reject, user inactivity), directed signalling connection re-establishment)

At least 9 spare values, Criticality: reject, are needed

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10.3.3.32 RF capability

Information Element/Group name

Need Multi Type and Reference

Semantics description

CHOICE mode MP>FDD>>UE power class MP Enumerated(

1..4)as defined in 25.101 subclause 6.2.1

>>Tx/Rx frequency separation MP Enumerated(190, 174.8-205.2, 134.8-245.2)

In MHzas defined in 25.101 subclause 5.3. NOTE: Not applicable if UE is not operating in frequency band a (as defined in 25.101).

At least 1 spare value needed>TDD>>UE power class MP Enumerated

(1..4) as defined in 25.102 subclause 6.2.1

>>Radio frequency bands MP 1 to <maxFrequencybands>

Enumerated(a, b, c)

as defined in 25.102 subclause 5.2

At least 1 spare value needed>>Chip rate capability MP Enumerated(

3.84Mcps,1.28Mcps)

as defined in 25.102

10.3.3.33 RLC capability

Information Element/Group name

Need Multi Type and Reference

Semantics description

Total RLC AM buffer size MP Integer(2,10,50,100,150,500,1000)

Total receiving and transmitting RLC AM buffer capability in kBytesAt least 1 spare value needed

Maximum RLC AM Window Size MP Integer(2047,4095)

Maximum supported RLC TX and RX window in UE

Maximum number of AM entities MP Integer(3,4,5,6,8,16,32)

At least 1 spare value needed

10.3.3.34 RLC reset indicator

Information Element/Group name

Need Multi Type and reference

Semantics description

RLC reset indicator MP Boolean TRUE means reset requiredFALSE means reset not required

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10.3.3.35 Security capability

Information Element/Group name

Need Multi Type and reference

Semantics description

Ciphering algorithm capability MP Bit string(16) "00000000000000012": UEA0, no encryption supported; "00000000000000102": UEA1, Kasumi supported

Integrity protection algorithm capability

MP Bit string(16) "00000000000000102": UIA1, Kasumi supported

10.3.3.36 START

Information Element/Group name

Need Multi Type and Reference

Semantics description

START MP Bit string (20)

[TS 33.102]

10.3.3.37 Transmission probability

Information Element/Group name

Need Multi Type and reference

Semantics description

Transmission probability MP Real(0.125.. 1.0 by step of 0.125)

probability

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10.3.3.38 Transport channel capability

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Information Element/Group name

Need Multi Type and Reference

Semantics description

Downlink transport channel capability information elementsMax no of bits received MP Integer(640,

1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920, 163840)

Maximum sum of number of bits of all transport blocks received in TTIs that end within the same arbitrary interval of length T<10 ms

At least 3 spare values are needed.

Max convolutionally coded bits received

MP Integer(640, 1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920, 163840)

Maximum sum of number of bits of all convolutionally coded transport blocks received in TTIs that end within the same arbitrary interval of length T<10 ms

At least 3 spare values are needed

Max turbo coded bits received CV turbo_dec_sup

Integer(640, 1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920, 163840)

Maximum sum of number of bits of all turbo coded transport blocks received in TTIs that end within the same arbitrary interval of length T<10 ms

At least 3 spare values are needed

Maximum number of simultaneous transport channels

MP Integer(4, 8, 16, 32)

Max no of received transport blocks

MP Integer(4, 8, 16, 32, 48, 64, 96, 128, 256, 512)

Maximum total number of transport blocks received within TTIs that end at within the same 10ms interval

At least 6 spare values neededMaximum number of TFC in the TFCS

MP Integer(16, 32, 48, 64, 96, 128, 256, 512, 1024)

At least 7 spare values needed

Maximum number of TF MP Integer(32, 64, 128, 256, 512, 1024)

At least 2 spare values needed

Support for turbo decoding MP Boolean TRUE means supportedUplink transport channel capability information elementsMax no of bits transmitted MP Integer(640,

1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920, 163840)

Maximum sum of number of bits of all transport blocks transmitted in TTIs that start at the same time

At least 3 spare values needed

Max convolutionally coded bits transmitted

MP Integer(640, 1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920,

Maximum sum of number of bits of all convolutionally coded transport blocks transmitted in TTIs that start at the same time

At least 3 spare values needed

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163840)Max turbo coded bits transmitted CV

turbo_enc_sup

Integer(640, 1280, 2560, 3840, 5120, 6400, 7680, 8960, 10240, 20480, 40960, 81920, 163840)

Maximum sum of number of bits of all turbo coded transport blocks transmitted in TTIs that start at the same time

At least 3 spare values needed

Maximum number of simultaneous transport channels

MP Integer(2, 4, 8, 16, 32)

At least 3 spare values needed

Max no of transmitted transport blocks

MP Integer(2, 4, 8, 16, 32, 48, 64, 96, 128, 256, 512)

Maximum total number of transport blocks transmitted within TTIs that start at the same time

At least 5 spare values neededMaximum number of TFC in the TFCS

MP Integer(4, 8, 16, 32, 48, 64, 96, 128, 256, 512, 1024)

At least 5 spare values needed

Maximum number of TF MP Integer(32, 64, 128, 256, 512, 1024)

At least 2 spare values needed

Support for turbo encoding MP Boolean TRUE means supported

Condition Explanationturbo_dec_sup Presence is mandatory if IE Support of turbo

decoding = True. Otherwise this field is not needed in the message.

turbo_enc_sup Presence is mandatory if IE Support of turbo encoding = True. Otherwise this field is not needed in the message.

10.3.3.39 UE multi-mode/multi-RAT capability

Information Element/Group name

Need Multi Type and Reference

Semantics description

Multi-RAT capability Support of GSM MP BooleanSupport of multi-carrier MP BooleanMulti-mode capability MP Enumerated

(TDD, FDD, FDD/TDD)

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10.3.3.40 UE radio access capability

Information Element/Group name

Need Multi Type and reference

Semantics description

ICS version MP Enumerated(R99)

Indicates the release version of TS 34.123-2 (Implementation Conformance Statement (ICS) proforma specification) that is applicable for the UE..At least 7 spare values needed

PDCP capability MP PDCP capability 10.3.3.24

RLC capability MP RLC capability 10.3.3.33

Transport channel capability MP Transport channel capability 10.3.3.38

RF capability MP RF capability 10.3.3.32

Physical channel capability MP Physical channel capability 10.3.3.25

UE multi-mode/multi-RAT capability

MP UE multi-mode/multi-RAT capability 10.3.3.39

Security capability MP Security capability 10.3.3.35

LCS capability MP LCS capability 10.3.3.18

CHOICE mode MP>FDD>>Measurement capability MP Measuremen

t capability 10.3.3.20

>TDD (no data)

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10.3.3.41 UE Timers and Constants in CELL_DCH

Information Element/Group name

Need Multi Type and reference

Semantics description

T304 MD Integer(100, 200, 400, 1000, 2000)

Value in milliseconds. Default value is 2000.At least 3 spare values are neededCriticality: reject is needed

N304 MD Integer(0..7)

Default value is 2.

T308 MD Integer(40, 80, 160, 320)

Value in milliseconds. Default value is 160.

T309 MD Integer(1…8)

Value in seconds. Default value is 5.

T310 MD Integer(40 .. 320 by step of 40)

Value in milliseconds. Default value is 160

N310 MD Integer(0 .. 7)

Default value is 4

T311 MD Integer(250 .. 2000 by step of 250)

Value in milliseconds. Default value is 2000

T313 MD Integer (0..15)

Value in seconds. Default value is 3.

N313 MD Integer (1, 2, 4, 10, 20, 50, 100, 200)

Default value is 20.

T314 MD Integer (2,4,6,8,12, 16,20)

Value in seconds. Default value is 12.

T315 MD Integer (0,10, 30, 60, 180, 600, 1200, 1800)

Value in seconds. Default value is 180.

N315 MD Integer (1, 50, 100, 200, 400, 600, 800, 1000)

Default value is 1.

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10.3.3.42 UE Timers and Constants in connected mode

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Information Element/Group name

Need Multi Type and reference

Semantics description

T301 MD Integer(100, 200 .. 2000 by step of 200, 3000, 4000, 6000, 8000)

Value in milliseconds. Default value is 2000.

N301 MD Integer(0..7)

Default value is 2.

T302 MD Integer(100, 200... 2000 by step of 200, 3000, 4000, 6000, 8000)

Value in milliseconds. Default value is 4000.

N302 MD Integer(0..7)

Default value is 3.

T303 MD Integer(100, 200... 2000 by step of 200, 3000, 4000, 6000, 8000)

Value in milliseconds. Default value is 2000.

N303 MD Integer(0..7)

Default value is 3.

T304 MD Integer(100, 200, 400, 1000, 2000)

Value in milliseconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.At least 3 spare values are neededCriticality: reject is needed

N304 MD Integer(0..7)

Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T305 MD Integer(5, 10, 30, 60, 120, 360, 720, infinity)

Value in minutes. Default value is 30.Infinity means no update

T306 MD Integer(5, 10, 30, 60, 120, 360, 720, infinity)

Value in minutes. Default value is 30.Infinity means no update

T307 MD Integer(5, 10, 15, 20, 30, 40, 50)

Value in seconds. Default value is 30.At least 1 spare value neededCriticality: reject is needed

T308 MD Integer(40, 80, 160, 320)

Value in milliseconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T309 MD Integer(1…8)

Value in seconds. Default value is the actual value of the

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equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T310 MD Integer(40 .. 320 by step of 40)

Value in milliseconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

N310 MD Integer(0 .. 7)

Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T311 MD Integer(250 .. 2000 by step of 250)

Value in milliseconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T312 MD Integer (0..15)

Value in seconds. Default value is 1.

N312 MD Integer (1, 50, 100, 200, 400, 600, 800, 1000)

Default value is 1.

T313 MD Integer (0..15)

Value in seconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

N313 MD Integer (1, 2, 4, 10, 20, 50, 100, 200)

Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T314 MD Integer(0, 2, 4, 6, 8, 12, 16, 20)

Value in seconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

T315 MD Integer (0,10, 30, 60, 180, 600, 1200, 1800)

Value in seconds. Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

N315 MD Integer (1, 50, 100, 200, 400, 600, 800, 1000)

Default value is the actual value of the equivalent parameter in IE "UE timers and Constants in CELL_DCH" received within SIB1. Note 1.

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10.3.3.43 UE Timers and Constants in idle mode

Information Element/Group name

Need Multi Type and reference

Semantics description

T300 MP Integer(100, 200... 2000 by step of 200, 3000, 4000, 6000, 8000)

Value in milliseconds

N300 MP Integer(0..7)

T312 MP Integer(0 .. 15)

Value in seconds

N312 MP Integer (1, 50, 100, 200, 400, 600, 800, 1000)

10.3.3.44 URA update cause

Information Element/Group name

Need Multi Type and reference

Semantics description

URA update cause MP Enumerated(change of URA, periodic URA update, re-entered service area)

At least 5 spare values Criticality: reject, are needed

10.3.3.45 U-RNTI

Information Element/Group name

Need Multi Type and reference

Semantics description

SRNC identity MP bit string(12)S-RNTI MP bit string(20)

10.3.3.46 U-RNTI Short

Information Element/Group name

Need Multi Type and reference

Semantics description

SRNC identity MP bit string(12)S-RNTI 2 MP bit string(10)

10.3.3.47 UTRAN DRX cycle length coefficient

Information Element/Group name

Need Multi Type and reference

Semantics description

DRX cycle length coefficient MP Integer(3...12) Refers to 'k' in the formula as specified in 25.304, Discontinuous reception

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10.3.3.48 Wait time

Information Element/Group name

Need Multi Type and reference

Semantics description

Wait time MP Integer(0..15)

Wait time in secondsThe value 0 indicates that repetition is not allowed.

10.3.4 RB信息元素

10.3.4.1 Downlink RLC STATUS info

Information Element/Group name

Need Multi Type and reference

Semantics description

Timer_Status_Prohibit OP Integer(10..550 by step of 10)

Minimum time in ms between STATUS reportsAt least 16 spare values with criticality reject is needed

Timer_EPC OP Integer(50, 60, 70, 80, 90, 100, 120, 140, 160, 180, 200, 300, 400, 500, 700, 900)

Time in msAt least 16 spare values with criticality reject is needed

Missing PU Indicator MP Boolean Value true indicates that UE should send a STATUS report for each missing PU that is detected

Timer_STATUS_periodic OP Integer(100,200, 300, 400, 500, 750, 1000, 2000)

Time in milliseconds

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10.3.4.2 PDCP info

Information Element/Group name

Need Multi Type and reference

Semantics description

Support for lossless SRNS relocation

CV- LosslessCriteria

Boolean TRUE means support

Max PDCP SN CV Lossless

Integer (255, 65535)

Maximum PDCP sequence number. Default value is 65535.

PDCP PDU header MD Enumerated (present, absent)

Whether a PDCP PDU header is existent or not. Default value is "present"

Header compression information OP 1 to <maxPDCPAlgoType>

>CHOICE algorithm type MP 7 spare values needed, criticality: reject

>>RFC2507 Header compression according to IETF standard RFC2507

>>>F_MAX_PERIOD MD Integer (1..65535)

Largest number of compressed non-TCP headers that may be sent without sending a full header. Default value is 256.

>>>F_MAX_TIME MD Integer (1..255)

Compressed headers may not be sent more than F_MAX_TIME seconds after sending last full header. Default value is 5.

>>>MAX_HEADER MD Integer (60..65535)

The largest header size in octets that may be compressed. Default value is 168.

>>>TCP_SPACE MD Integer (3..255)

Maximum CID value for TCP connections. Default value is 15.

>>>NON_TCP_SPACE MD Integer (3..65535)

Maximum CID value for non-TCP connections. Default value is 15.

>>>EXPECT_REORDERING MD Enumerated (reordering not expected, reordering expected)

Whether the algorithm shall reorder PDCP SDUs or not. Default value is "reordering not expected".

Condition ExplanationLosslessCriteria This IE is present only if the IE "RLC mode" is

"Acknowledged" and the IE "In-sequence delivery " is "True".

Lossless This IE shall be present if the IE "Support for lossless SRNS relocation" Is TRUE, otherwise it shall be absent.

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10.3.4.3 PDCP SN info

Information Element/Group name

Need Multi Type and Reference

Semantics description

Receive PDCP sequence number

MP Integer(0..65535)

The PDCP sequence number which the sender of the message is expecting next to be received.

10.3.4.4 Polling info

Information Element/Group name

Need Multi Type and reference

Semantics description

Timer_poll_prohibit OP Integer(50, 60, 70, 80, 90, 100, 120, 140, 160, 180, 200, 300, 400, 500, 700, 900)

Minimum time between polls in ms16 spare values needed, criticality: reject

Timer_poll OP Integer(10..550 by step of 10, 600..1000 by step of 50)

Time in ms. 16 spare values needed, criticality: reject

Poll_PU OP Integer(1,2,4,8,16,32,64,128)

Number of PUs, interval between pollings 8 spare values needed, criticality: reject

Poll_SDU OP Integer(1,4,16,64)

Number of SDUs, interval between pollings4 spare values needed, criticality: reject

Last transmission PU poll MP Boolean TRUE indicates that poll is made at last PU in transmission buffer

Last retransmission PU poll MP Boolean TRUE indicates that poll is made at last PU in retransmission buffer

Poll_Window OP Integer(50,60,70,80,85,90,95,99)

Percentage of transmission window, threshold for polling 8 spare values needed, criticality: reject

Timer_poll_periodic OP Integer(100,200, 300, 400, 500, 750, 1000, 2000)

Time in milliseconds Timer for periodic polling. 8 spare values needed, criticality: reject

10.3.4.5 Predefined configuration identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Predefined radio configuration identity

MP Integer (0..15)

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10.3.4.6 Predefined configuration value tag

Information Element/Group name

Need Multi Type and Reference

Semantics description

Predefined configuration value tag

MP Integer(0..15)

10.3.4.7 Predefined RB configuration

Information Element/Group name

Need Multi Type and Reference

Semantics description

Signalling radio bearer informationSignalling RB information to setup List

MP 1 to <maxSRBsetup>

For each signalling radio bearer

>Signalling RB information to setup

MP Signalling RB information to setup10.3.4.24

RB information Only one RAB supportedRB information to setup list MP 1 to

<maxRBcount>

>RB information to setup MP RB information to setup10.3.4.20

10.3.4.8 RAB info

Information Element/Group name

Need Multi Type and reference

Semantics description

RAB identity MP RAB identity 10.3.1.14

CN domain identity MP CN domain identity 10.3.1.1

RAB NAS Synchronization Indicator

OP RAB NAS Synchronization info 10.3.4.12

Re-establishment timer MP Re-establishment timer 10.3.3.29

10.3.4.9 RAB info short

Information Element/Group name

Need Multi Type and reference

Semantics description

RAB identity MP RAB identity 10.3.1.14

CN domain identity MP CN domain identity 10.3.1.1

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10.3.4.10 RAB information for setup

Information Element/Group name

Need Multi Type and reference

Semantics description

RAB info MP RAB info 10.3.4.8

RB information to setup list MP 1 to <maxRBperRAB>

>RB information to setup MP RB information to setup10.3.4.20

10.3.4.11 RAB information to reconfigure

Information Element/Group name

Need Multi Type and reference

Semantics description

RAB identity MP RAB Identity 10.3.1.14

RAB NAS synchronization indicator

MP RAB NAS Synchronization info 10.3.4.12

10.3.4.12 RAB NAS Synchronization info

Information Element/Group name

Need Multi Type and reference

Semantics description

NAS Synchronization info MP Bitstring(4)

10.3.4.13 RB activation time info

Information Element/Group name

Need Multi Type and reference

Semantics description

Radio bearer activation time OP 1 to <maxRB>

>RB identity MP RB identity 10.3.4.16

>RLC sequence number MP Integer (0..4095)

RLC SN [TS 25.322]

10.3.4.14 RB COUNT-C MSB information

Information Element/Group name

Needed Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

COUNT-C-MSB-uplink MP Integer (0..2^25-1)

25 MSBs from COUNT-C associated to this RB

COUNT-C-MSB-downlink MP Integer (0..2^25-1)

25 MSBs from COUNT-C associated to this RB

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10.3.4.15 RB COUNT-C information

Information Element/Group name

Needed Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

COUNT-C-uplink MP Integer (0..2^32-1)

COUNT-C-downlink MP Integer (0..2^32-1)

10.3.4.16 RB identity

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP Integer(0..31)

Values 0-4 shall only be used for signalling radio bearers

10.3.4.17 RB information to be affected

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

RB mapping info MP RB mapping info 10.3.4.21

10.3.4.18 RB information to reconfigure

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

PDCP info OP PDCP info 10.3.4.2

PDCP SN info C PDCP PDCP SN info10.3.4.3

PDCP sequence number info from the network. Present only in case of lossless SRNS relocation.

CHOICE RLC info type OP>RLC info RLC info

10.3.4.23RB mapping info OP RB mapping

info 10.3.4.21

RB suspend/resume OP Enumerated(suspend, resume)

Condition ExplanationPDCP This IE is optional only if "PDCP info" is present.

Otherwise it is absent.

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10.3.4.19 RB information to release

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

10.3.4.20 RB information to setup

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

PDCP info OP PDCP info 10.3.4.2

RLC info MP RLC info 10.3.4.23

RB mapping info MP RB mapping info 10.3.4.21

Multi Bound ExplanationMaxSetupRBcount The maximum number of RBs to setup.

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10.3.4.21 RB mapping info

Information Element/Group name

Need Multi Type and reference

Semantics description

Information for each multiplexing option

MP 1 to <maxRBMuxOptions>

>RLC logical channel mapping indicator

CV-UL-RLCLogicalChannels

Boolean TRUE indicates that the first logical channel shall be used for data PDUs and the second logical channel shall be used for control PDUs.FALSE indicates that control and data PDUs can be sent on either of the two logical channels.

>Number of uplink RLC logical channels

CV-UL-RLC info

1 to MaxLoCHperRLC

1 or 2 logical channels per RLC entity or radio bearerRLC [TS 25.322]

>>Uplink transport channel type MP Enumerated(DCH,RACH,CPCH,USCH)

CPCH is FDD onlyUSCH is TDD only

>>ULTransport channel identity CV-UL-DCH/USCH

Transport channel identity 10.3.5.18

This is the ID of a DCH or USCH (TDD only) that this RB could be mapped onto.

>>Logical channel identity OP Integer(1..15)

This parameter is used to distinguish logical channels multiplexed by MAC on a transport channel.

>>MAC logical channel priority MP Integer(1..8) This is priority between a user's different RBs (or logical channels). [25.321]

>>Logical channel max loss MD Integer(0,5,10,15,20,25,30,35,40,45,50,55,60,65,70,75,80,85,90,95,100)

[see 25.321]. Default value is 0.

>Number of downlink RLC logical channels

CV-DL-RLC info

1 to MaxLoCHperRLC

1 or 2 logical channels per RLC entity or radio bearerRLC [TS 25.322]

>>Downlink transport channel type

MP Enumerated(DCH,FACH,DSCH)

>>DL Transport channel identity CV-DL-DCH/DSCH

Transport channel identity 10.3.5.18

>>Logical channel identity OP Integer(1..15)

16 is reserved

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Condition ExplanationUL-RLC info If "CHOICE Uplink RLC mode" in IE "RLC info" is

present this IE is MP. Otherwise the IE is not needed.DL-RLC info If "CHOICE Downlink RLC mode" in IE "RLC info" is

present this IE is MP. Otherwise the IE is not needed.UL-RLCLogicalChannels If "Number of uplink RLC logical channels" in IE "RB

mapping info" is 2, then this is present. Otherwise this IE is not needed.

UL-DCH/USCH If IE "Uplink transport channel type" is equal to "DCH" or "USCH" (TDD only) this IE is MP. Otherwise the IE is not needed.

DL-DCH/DSCH If IE "Downlink transport channel type" is equal to "DCH" or "DSCH" this IE is MP. Otherwise the IE is not needed.

10.3.4.22 RB with PDCP information

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MP RB identity 10.3.4.16

PDCP SN info MP PDCP SN info 10.3.4.3

PDCP sequence number info from the sender of the message for lossless SRNS relocation.

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10.3.4.23 RLC info

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Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Uplink RLC mode OP Indicates if Acknowledged, Unacknowledged or Transparent mode RLC shall be used. One spare value needed, criticality: reject.

>AM RLC>>Transmission RLC discard MP Transmission

RLC discard 10.3.4.25

>>Transmission window size MP Integer(1,8,16,32,64,128,256,512,768,1024,1536,2047,2560,3072,3584,4095)

Maximum number of RLC PUs sent without getting them acknowledged. This parameter is needed if acknowledged mode is used. UE shall also assume that the UTRAN receiver window is equal to this value.

>>Timer_RST MP Integer(50, 100, 150, 200, 250, 300, 350, 400, 450, 500, 550, 600, 700, 800, 900, 1000)

It is used to detect the loss of RESET ACK PDU. 16 spare values needed, criticality: reject

>>Max_RST MP Integer(1, 4, 6, 8, 12 16, 24, 32)

The maximum number of retransmission of RESET PDU.8 spare values needed, criticality: reject

>> Polling info OP Polling info 10.3.4.4

>UM RLC>> Transmission RLC discard OP Transmission

RLC discard 10.3.4.25

>TM RLC>>Transmission RLC discard OP Transmission

RLC discard 10.3.4.25

>>Segmentation indication MP Boolean TRUE indicates that segmentation is performed.

CHOICE Downlink RLC mode OP Indicates if Acknowledged, Unacknowledged or Transparent mode RLC shall be used. One spare value needed, criticality: reject.

>AM RLC>>In-sequence delivery MP Boolean TRUE indicates that RLC shall

preserve the order of higher layer PDUs when these are delivered.FALSE indicates that receiving RLC entity could allow SDUs to be delivered to the higher layer in different order than submitted to RLC sublayer at the transmitting side.

>>Receiving window size MP Integer(1,8,16,32,64,128,256,512,768,1024,1536,2047,2560,3072,3584,4095)

Maximum number of RLC PUs allowed to be received. This parameter is needed if acknowledged mode is used. UE shall also assume that the UTRAN transmitter window is equal to this value.

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At least one spare value with criticality reject needed

>>Downlink RLC status Info MP Downlink RLC status info10.3.4.1

>UM RLC (No data)>TM RLC (No data)>>Segmentation indication MP Boolean TRUE indicates that

segmentation is performed.

10.3.4.24 Signalling RB information to setup

Information Element/Group name

Need Multi Type and reference

Semantics description

RB identity MD RB identity 10.3.4.16

Default value is the smallest value not yet used as default in the message (e.g., 0, then 1, and so on)

CHOICE RLC info type MP At least one spare choice needed, critically: reject

>RLC info RLC info 10.3.4.23

RB mapping info MP RB mapping info 10.3.4.21

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10.3.4.25 Transmission RLC Discard

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Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE SDU Discard Mode MP Different modes for discharge the RLC buffer on the transmitter side;"Timer based with explicit signalling", "Timer based without explicit signalling", "Discard after Max_DAT retransmissions" or "No_discard". For unacknowledged mode and transparent mode, only Timer based without explicit signalling is applicable. If "No_discard" is used, reset procedure shall be done after Max_DAT retransmissions

>Timer based explicit>>Timer_MRW MP Integer(50,6

0, 70, 80, 90, 100, 120, 140, 160, 180, 200, 300, 400, 500, 700, 900)

It is used to trigger the retransmission of a STATUS PDU containing an MRW SUFI field.16 spare values needed, criticality: reject

>>Timer_discard MP Integer(100, 250, 500, 750, 1000, 1250, 1500, 1750, 2000, 2500, 3000, 3500, 4000, 4500, 5000, 7500)

Elapsed time in milliseconds before a SDU is discarded.

>>MaxMRW MP Integer(1, 4, 6, 8, 12 16, 24, 32)

It is the maximum value for the number of retransmissions of a MRW command8 spare values needed, criticality: ffs

>Timer based no explicit>>Timer_discard MP Integer(10,2

0,30,40,50,60,70,80,90,100)

Elapsed time in milliseconds before a SDU is discarded.

>Max DAT retransmissions>> Max_DAT MP Integer(1, 2,

3, 4, 5, 6, 7, 8, 9, 10, 15, 20, 25, 30, 35, 40)

Number of retransmissions of a PU before a SDU is discarded.

>>Timer_MRW MP Integer(50, 60, 70, 80, 90, 100, 120, 140, 160, 180, 200, 300, 400, 500, 700, 900)

It is used to trigger the retransmission of a STATUS PDU containing an MRW SUFI field.16 spare values needed, criticality: reject

>>MaxMRW MP Integer(1, 4, 6, 8, 12 16, 24, 32)

It is the maximum value for the number of retransmissions of a MRW command8 spare values needed, criticality: ffs

>No discard>> Max_DAT MP Integer(1, 2,

3, 4, 5, 6, 7, Number of retransmissions of a PU before the RLC entity is

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8, 9, 10, 15, 20, 25, 30, 35, 40)

reset.

CHOICE SDU Discard Mode Condition under which the given SDU Discard Mode is chosen

Timer based explicit If the modes for discharge of the RLC buffer on the transmitter side is "Timer based with explicit signalling"

Timer based no explicit If the modes for discharge of the RLC buffer on the transmitter side is "Timer based without explicit signalling"For unacknowledged mode, only Timer based without explicit signalling is applicable.

Max DAT retransmissions If the modes for discharge of the RLC buffer on the transmitter side is "Discard after Max_DAT retransmissions"

No discard If the modes for discharge the of RLC buffer on the transmitter side is "Reset procedure shall be done after Max_DAT retransmissions"

10.3.5 传输信道信息元素

10.3.5.1 Added or Reconfigured DL TrCH information

Information Element/Group name

Need Multi Type and reference

Semantics description

DL Transport channel identity MP Transport channel identity 10.3.5.18

CHOICE DL parameters>Independent>>TFS MP Transport

Format Set 10.3.5.23

>SameAsUL>>UL TrCH identity MP Transport

channel identity 10.3.5.18

Same TFS applies as specified for indicated UL TrCH

DCH quality target OP Quality target 10.3.5.10

Transparent mode signalling info OP Transparent mode signalling info 10.3.5.17

This IE is not used in RB RELEASE message nor RB RECONFIGURATION message

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10.3.5.2 Added or Reconfigured UL TrCH information

Information Element/Group name

Need Multi Type and reference

Semantics description

UL Transport channel identity MP Transport channel identity 10.3.5.18

TFS MP Transport Format Set 10.3.5.23

10.3.5.3 CPCH set ID

Information Element/Group name

Need Multi Type and reference

Semantics description

CPCH set ID MP Integer(1...maxCPCHsets)

Identifier for CPCH set info and CPCH persistency value messages

10.3.5.4 Deleted DL TrCH information

Information Element/Group name

Need Multi Type and reference

Semantics description

DL Transport channel identity MP Transport channel identity 10.3.5.18

10.3.5.5 Deleted UL TrCH information

Information Element/Group name

Need Multi Type and reference

Semantics description

UL Transport channel identity MP Transport channel identity 10.3.5.18

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10.3.5.6 DL Transport channel information common for all transport channels

Information Element/Group name

Need Multi Type and reference

Semantics description

SCCPCH TFCS OP Transport Format Combination Set 10.3.5.20

This IE should be absent within IE "Predefined RB configuration"

CHOICE mode OP>FDD>>CHOICE DL parameters MP>>>Independent>>>>DL DCH TFCS OP Transport

Format Combination Set 10.3.5.20

>>>SameAsUL (no data)>TDD>>Individual DL CCTrCH information

OP 1 to >maxCCTrCH>

>>>DL TFCS Identity MP Transport format combination set identity 10.3.5.21

Identifies a special CCTrCH for shared or dedicated channels.

>>>CHOICE DL parameters MP>>>>Independent>>>>>DL TFCS MP Transport

format combination set 10.3.5.20

>>>>SameAsUL>>>>>UL DCH TFCS Identity MP Transport

format combination set identity 10.3.5.21

Same TFCS applies as specified for the indicated UL DCH TFCS identity except for information applicable for UL only

10.3.5.7 DRAC Static Information

Information Element/Group name

Need Multi Type and reference

Semantics description

Transmission Time Validity MP Integer(1..256) number of framesTime duration before retry MP Integer(1..256) number of framesDRAC Class Identity MP Integer(1..8) Indicates the class of

DRAC parameters to use in SIB10 message

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10.3.5.8 Power Offset Information

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Gain Factors MP>Signalled Gain Factors>>CHOICE mode>>>FDD>>>>Gain Factor c MP Integer

(0.. 15)For UL DPCCH or control part of PRACH or PCPCH

>>>TDD (no data)>>Gain Factor d MP Integer

(0..15)For UL DPDCH or data part of PRACH or PCPCH in FDD and all uplink channels in TDD

>>Reference TFC ID OP Integer (0..3) If this TFC is a reference TFC, indicates the reference ID.

>Computed Gain Factors>>Reference TFC ID MP Integer

(0.. 3)Indicates the reference TFC Id of the TFC to be used to calculate the gain factors for this TFC. In case of using computed gain factors, at least one signalled gain factor is necessary for reference.

CHOICE mode>FDD>>Power offset P p-m OP Integer(-

5..10)In dB. Power offset between the last transmitted preamble and the control part of the message (added to the preamble power to receive the power of the message control part )Needed only for PRACH

>TDD (no data)

CHOICE Gain Factors Condition under which the way to signal the Gain Factors is chosen

Signalled Gain Factors The values for gain factors c (only in FDD mode) and d are signalled directly for a TFC.

Computed Gain Factors The gain factors c (only in FDD mode) and d

are computed for a TFC, based on the signalled settings for the associated reference TFC.

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10.3.5.9 Predefined TrCH configuration

Information Element/Group name

Need Multi Type and Reference

Semantics description

UL Transport channel information common for all transport channels

MP UL Transport channel information common for all transport channels10.3.5.24

Added or Reconfigured TrCH informationAdded or Reconfigured UL TrCH information

MP 1 to <maxTrCHpreconf>

>Added or Reconfigured UL TrCH information

MP Added or Reconfigured UL TrCH information 10.3.5.2

DL Transport channel information common for all transport channels

MP DL Transport channel information common for all transport channels 10.3.5.6

Downlink transport channelsAdded or Reconfigured DL TrCH information

MP 1 to <maxTrCHpreconf>

>Added or Reconfigured DL TrCH information

MP Added or Reconfigured DL TrCH information10.3.5.1

10.3.5.10 Quality Target

Information Element/Group name

Need Multi Type and reference

Semantics description

BLER Quality value MP Real(0.00..1.00, by ste p of 0.02)

In dB=-Log10(Transport channel BLER)

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10.3.5.11 Semi-static Transport Format Information

Information Element/Group name

Need Multi Type and reference

Semantics description

Transmission time interval MP Integer(10, 20, 40, 80, dynamic)

In ms. The value dynamic is only used in TDD mode3 spare values are neededCriticality reject

Type of channel coding MP Enumerated(No coding, Convolutional, Turbo)

Coding Rate CV-Coding Enumerated(1/2, 1/3)

Rate matching attribute MP Integer(1..hiRM)

CRC size MP Integer(0, 8, 12, 16, 24)

in bits

Condition ExplanationCoding This IE is only present if IE "Type of channel coding"

is "Convolutional"

10.3.5.12 TFCI Field 2 Information

Information Element/Group name

Need Multi IE type and reference

Semantics description

CHOICE Signalling method MP> TFCI range>> TFCI(field 2) range MP 1 to

<maxPDSCH-TFCIgroups>

>>>Max TFCI(field2) value MP Integer(1..1023)

This is the Maximum value in the range of TFCI(field2) values for which the specified CTFC(field2) applies

>>>TFCS Information for DSCH (TFCI range method)

MP TFCS Information for DSCH (TFCI range method)10.3.5.14

> Explicit>>TFCS explicit configuration MP TFCS

explicit configuration10.3.5.13

CHOICE Signalling method Condition under which Split type is chosenTFCI rangeExplicit

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10.3.5.13 TFCS Explicit Configuration

Information Element/Group name

Need Multi IE type and reference

Semantics description

CHOICE TFCS representation MP>Complete reconfiguration>>TFCS complete reconfiguration information

MP TFCS Reconfiguration/Addition information10.3.5.15

>Addition>> TFCS addition information MP TFCS

Reconfiguration/Addition information10.3.5.15

>Removal>> TFCS removal information MP TFCS

Removal Information 10.3.5.16

>Replace>> TFCS removal information MP TFCS

Removal Information 10.3.5.16

>> TFCS addition information MP TFCS Reconfiguration/Addition information10.3.5.15

10.3.5.14 TFCS Information for DSCH (TFCI range method)

Information Element/Group name

Need Multi IE type and reference

Semantics description

CHOICE CTFC Size MP At least one, criticality: reject, spare value needed for future extension

>2 bit CTFC >>2bit CTFC MP Integer(0..3)>4 bit CTFC >>4bit CTFC MP Integer(0..15

)>6 bit CTFC >>6 bit CTFC MP Integer(0..63

)>8 bit CTFC >>8 bit CTFC MP Integer(0..25

5)>12 bit CTFC >>12 bit CTFC MP Integer(0..40

95)>16 bit CTFC >>16 bit CTFC MP Integer(0..65

535)>24 bit CTFC >>24 bit CTFC MP Integer(0..16

777215)

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10.3.5.15 TFCS Reconfiguration/Addition Information

Information Element/Group name

Need Multi IE type and reference

Semantics description

CHOICE CTFC Size MP At least one, criticality: reject, spare value needed for future extension

>2 bit CTFC >>CTFC information MP 1 to

<maxTFC>>>>2bit CTFC MP Integer(0..3)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>4 bit CTFC >>CTFC information MP 1 to

<maxTFC>>>>4bit CTFC MP Integer(0..15

)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>6 bit CTFC >>CTFC information MP 1 to

<maxTFC>>>>6 bit CTFC MP Integer(0..63

)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>8 bit CTFC >>CTFC information MP 1 to

<MaxTFC>>>>8 bit CTFC MP Integer(0..25

5)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>12 bit CTFC >>CTFC information MP 1 to

<maxTFC>>>>12 bit CTFC MP Integer(0..40

95)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>16 bit CTFC >>CTFC information MP 1 to

<maxTFC>>>>16 bit CTFC MP Integer(0..65

535)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

>24 bit CTFC >>CTFC information MP 1 to

<MaxTFC>>>>24 bit CTFC MP Integer(0..16

777215)>>>Power offset Information OP Power Offset

Information 10.3.5.8

Needed only for uplink physical channels.

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10.3.5.16 TFCS Removal Information

Information Element/Group name

Need Multi IE type and reference

Semantics description

Removal TFCI information MP 1 to <maxTFC>

>TFCI MP Integer(0.. 1023)

Range Bound ExplanationMaxDelTFCcount Maximum number of Transport Format Combinations

to be removed.

10.3.5.17 Transparent mode signalling info

Information Element Need Multi Type and reference

Semantics description

Type of message MP Enumerated (TRANSPORT FORMAT COMBINATION CONTROL)

Indicates which type of message sent on the transparent mode signalling DCCHAt least 1 spare value neededCriticality: criticality reject is needed

CHOICE Transparent signalling mode

MP

>Mode 1 (no data)

>Mode 2>>Controlled transport channels list

MP 1 to <maxTrCH>

The transport channels that are effected by the rate control commands sent on this transparent mode DCCH

>>>UL Controlled transport channels

MP Transport channel identity, 10.3.5.18

10.3.5.18 Transport channel identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Transport channel identity MP Integer(1..32)

10.3.5.19 Transport Format Combination (TFC)

Information Element/Group name

Need Multi Type and reference

Semantics description

Transport format combination MP Integer (0.. 1023)

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10.3.5.20 Transport Format Combination Set

Information Element/Group name

Need Multi IE type and reference

Semantics description

CHOICE TFCI signalling MP 'Normal' : meaning no split in the TFCI field (either 'Logical' or 'Hard')'Split' : meaning there is a split in the TFCI field (either 'Logical' or 'Hard'). This value is only valid for FDD downlink when using DSCH.

> Normal>> TFCI Field 1 Information MP TFCS

explicit Configuration 10.3.5.13

> Split>> Split type OP Enumerated

('Hard', 'Logical')

'Hard' : meaning that TFCI (field 1) and TFCI (field 2) are each 5 bits long and each field is block coded separately. 'Logical' : meaning that on the physical layer TFCI (field 1) and TFCI (field 2) are concatenated, field 1 taking the most significant bits and field 2 taking the least significant bits). The whole is then encoded with a single block code.

>> Length of TFCI(field2) OP Integer (1..10)

This IE indicates the length measured in number of bits of TFCI(field2)

>> TFCI Field 1 Information OP TFCS explicit Configuration 10.3.5.13

>> TFCI Field 2 Information OP TFCI field 2 information 10.3.5.12

CHOICE TFCI signalling Condition under which TFCI signalling type is chosen

Normal It is chosen when no split in the TFCI field.Split It is chosen when split in the TFCI field. This value is

only valid for FDD downlink when using DSCH.

10.3.5.21 Transport Format Combination Set Identity

Information Element/Group name

Need Multi Type and reference

Semantics description

TFCS ID MD Integer (1...8)

Indicates the identity of every TFCS within a UE. Default value is 1.

Shared Channel Indicator MP Boolean TRUE indicates the use of shared channels. Default is false.

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10.3.5.22 Transport Format Combination Subset

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Subset representation MP>Minimum allowed Transport format combination index

MP Transport format combination 10.3.5.19

The integer number is a reference to the Transport format combination, which arrived at that position in the Transport Format Combination Set.

>Allowed transport format combination list

MP 1 to <maxTFC>

>>Allowed transport format combination

MP Transport format combination 10.3.5.19

The integer number is a reference to the Transport format combination, which arrived at that position in the Transport Format Combination Set.

>Non-allowed transport format combination list

MP 1 to <maxTFC>

>>Non-allowed transport format combination

MP Transport format combination 10.3.5.19

The integer number is a reference to the Transport format combination, which arrived at that position in the Transport Format Combination Set.

>Restricted TrCH information MP 1 to <maxTrCH>

>>Restricted UL TrCH identity MP Transport channel identity 10.3.5.18

The integer number(s) is a reference to the transport channel that is restricted.

>>Allowed TFIs OP 1 to <maxTF>

>>>Allowed TFI MP Integer(0..31)

The integer number is a reference to the transport format that is allowed. If no elements are given, all transport formats or the TrCH with non-zero rate are restricted.

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10.3.5.23 Transport Format Set

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Transport channel type MP>Dedicated transport channels The transport channel that is

configured with this TFS is of type DCH

>>Dynamic Transport Format Information

MP 1 to <maxTF>

The first instance of the parameter Dynamic transport format information correspond to Transport format 0 for this transport channel, the second to transport format 1 and so on.

>>>Transmission Time Interval CV-dynamicTTI

Integer(10,20,40,80)

ms4 spare values are neededCriticality reject

>>>Number of Transport blocks MP Integer(0..512)

Note

>>>RLC Size MP Integer(0..4992)

Unit is bits

>>Semi-static Transport Format Information

MP Semi-static Transport Format Information 10.3.5.11

>Common transport channels The transport channel that is configured with this TFS is of a type not equal to DCH

>>Dynamic Transport Format Information

MP 1 to <maxTF>

The first instance of the parameter Dynamic transport format information correspond to Transport format 0 for this transport channel, the second to transport format 1 and so on.

>>>Number of Transport blocks MP Integer(0..512)

Note

>>>RLC Size MP Integer(0..4992)

Unit is bits

>>>CHOICE mode MP>>>>FDD (no data)>>>>TDD>>>>> Transmission Time Interval

CV-dynamicTTI

Integer(10,20,40,80)

ms4 spare values needed.Criticality reject

>>Semi-static Transport Format Information

MP Semi-static Transport Format Information 10.3.5.11

Condition ExplanationdynamicTTI This IE is included if dynamic TTI usage is indicated

in IE Transmission Time Interval in Semi-static Transport Format Information. Otherwise it is not needed.

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10.3.5.24 UL Transport channel information common for all transport channels

Information Element/Group name

Need Multi Type and reference

Semantics description

TFC subset MD Transport Format Combination Subset10.3.5.22

Default value is the complete existing set of transport format combinations

PRACH TFCS OP Transport format combination set 10.3.5.20

This IE should be absent within IE "Predefined RB configuration"

CHOICE mode OP>FDD>>UL DCH TFCS MP Transport

formation combination set 10.3.5.20

>TDD>>Individual UL CCTrCH information

OP 1 to <maxCCTrCH>

>>>UL TFCS Identity MP Transport format combination set identity 10.3.5.21

Identifies a special CCTrCH for shared or dedicated channels.

>>>UL TFCS MP Transport format combination set 10.3.5.20

10.3.6 物理信道信息元素

10.3.6.1 AC-to-ASC mapping

Information Element/Group name

Need Multi Type and reference

Semantics description

AC-to-ASC mapping table MP maxASCmap

> AC-to-ASC mapping MP Integer(0…7)

Mapping of Access Classes to Access Service Classes (cf. Sec. 8.5.15.)

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10.3.6.2 AICH Info

Information Element/Group name

Need Multi Type and reference

Semantics description

Secondary scrambling code MD Secondary scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

Channelization code MP Integer(0..255)

SF is fixed and equal to 256

STTD indicator MP STTD Indicator 10.3.6.77

AICH transmission timing MP Enumerated (0, 1)

See parameter AICH_Transmission_Timing in TS 25.211

10.3.6.3 AICH Power offset

Information Element/Group name

Need Multi Type and reference

Semantics description

AICH Power offset MP Integer(-22..+5)

Offset in dB

10.3.6.4 Allocation period info

Information Element/Group name

Need Multi Type and reference

Semantics description

Allocation Activation Time MP Integer (1..256)

Frame number start of the allocation period.

Allocation Duration MP Integer (1..256)

Total number of frames for the allocation period.

10.3.6.5 ASC setting

Information Element/Group name

Need Multi Type and reference

Semantics description

Available signature Start Index MP Integer(0..15)

Available signature End Index MP Integer(0..15)

Available sub-channel Start Index

MP Integer(0..11)

Available sub-channel End Index

MP Integer(0..11)

10.3.6.6 Block STTD indicator

Information Element/Group name

Need Multi Type and reference

Semantics description

Block STTD indicator MP Boolean TRUE indicates that block STTD is used

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10.3.6.7 CCTrCH power control info

Information Element/Group name

Need Multi Type and Reference

Semantics description

TFCS Identity OP Transport Format Combination Set Identity 10.3.5.21

TFCS Identity of this CCTrCH. Default value is 1.

Uplink DPCH power control info MP Uplink DPCH power control info 10.3.6.89

10.3.6.8 Cell parameters Id

Information Element/Group name

Need Multi Type and Reference

Semantics description

Cell parameter Id MP Integer(0..127)

10.3.6.9 Common timeslot info

Information Element/Group name

Need Multi Type and reference

Semantics description

2nd interleaving mode MD Enumerated(Frame, Timeslot)

Frame timeslot related interleaving. Default value is "Frame"

TFCI coding MD Integer(4,8,16,32)

Describes the way the TFCI bits are coded in bits. Defaults is no TFCI bit:4 means1 TFCI bit is coded with 4 bits.8 means2 TFCI bits are coded with 8 bits.16 means3 – 5 TFCI bits are coded with 16 bits.32 means6 – 10 TFCI bits coded with 32 bits.

Puncturing limit MP Real(0.40..1.0 by step of 0.04)

Repetition period MD Integer(1, 2,4,8,16,32,64)

Default is continuous allocation. Value 1 indicate continuous

Repetition length MP Integer(1.. Repetition period –1 )

Note that this is empty if repetition period is set to 1

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10.3.6.10 Constant value

Information Element/Group name

Need Multi Type and reference

Semantics description

Constant value MP Integer (-35..-10)

At least 6 spare values neededCriticality: reject is needed

10.3.6.11 CPCH persistence levels

Information Element/Group name

Need Multi Type and reference

Semantics description

CPCH set ID MP Integer (1 .. <maxCPCHsets>)

Identifier for CPCH set info.

Dynamic persistence level MP 1 to <maxTF-CPCH>

Dynamic persistence level 10.3.6.34

Persistence level for transport format.

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10.3.6.12 CPCH set info

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Information Element/Group name

Need Multi Type and reference

Semantics description

CPCH set ID MP CPCH set ID 10.3.5.3

Indicates the ID number for a particular CPCH set allocated to a cell.

TFS MP Transport Format Set 10.3.5.23

Transport Format Set Information allocated to this CPCH set.

TFCS MP Transport Format Combination Set 10.3.5.20

Transport Format Set Information allocated to this CPCH set

AP preamble scrambling code MP Integer (0..79)

Preamble scrambling code for AP in UL

AP-AICH scrambling code MP Secondary Scrambling Code10.3.6.73

Default is the same scrambling code as for the primary CPICH.

AP-AICH channelization code MP Integer(0..255)

Channelization code for AP-AICH in DL

CD preamble scrambling code MP Integer (0..79)

Preamble scrambling code for CD in UL

CD/CA-ICH scrambling code MD Secondary Scrambling Code10.3.6.73

Default is the same scrambling code as for the primary CPICH.

CD/CA-ICH channelization code MP Integer (0..255)

Channelization code for CD/CA-ICH in DL

Available CD access slot subchannel

CV-CDSigPresent

1 to <maxPCPCH-CDsubCh>

Lists the set of subchannels to be used for CD access preambles. Note: if not present, all subchannels are to be used without access delays.

>CD access slot subchannel MP Integer (0..11)

Available CD signatures OP 1 to <maxPCPCH-CDsig>

Signatures for CD preamble in UL. Note: if not present, all signatures are available for use.

>CD signatures MP Integer (0..15)

DeltaPp-m MP Integer (-10..10)

In dB. Power offset between the transmitted CD preamble and UL DPCCH of the power control preamble or message part (added to the preamble power to calculate the power of the UL DPCCH )

UL DPCCH Slot Format MP Enumerated(0,1,2)

Slot format for UL DPCCH in power control preamble and in message part

N_start_message MP Integer (1..8) Number of Frames for start of message indication

N_EOT MP Integer(0...7) Actual number of appended EOT indicators is T_EOT = N_TTI * ceil(N_EOT/N_TTI), where N_TTI is the number of frames per TTI and "ceil" refers to rounding up to nearest integer.

Channel Assignment Active OP Boolean When present, indicates that Node B send a CA message and VCAM mapping rule (14.11) shall be used.

CPCH status indication mode MP Enumerated(PCPCH

Defines the status information type broadcast on the CPCH

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availability, PCPCH availability and minimum available Spreading Factor)

Status Indication Channel (CSICH)

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PCPCH Channel Info. MP 1 to <maxPCPCHs>

> UL scrambling code MP Integer (0..79)

For PCPCH message part

> DL channelization code MP Integer (0…511)

For DL DPCCH for PCPCH message part

> DL scrambling code MD Secondary Scrambling Code10.3.6.73

Default is the same scrambling code as for the primary CPICH.

> PCP length MP Enumerated (0, 8)

Indicates length of power control preamble, 0slots (no preamble used) or 8 slots

> UCSM Info CV-NCAA

>>Minimum Spreading Factor MP Integer (4,8,16,32,64,128,256 )

The UE may use this PCPCH at any Spreading Factor equal to or greater than the indicated minimum Spreading Factor. The Spreading Factor for initial access is the minimum Spreading Factor.

>> NF_max MP Integer (1…64)

Maximum number of frames for PCPCH message part

>> Channel request parameters for UCSM

MP 1 to <maxSig>

Required in UE channel selection mode.

>>>Available AP signature MP 1 to <maxPCPCH-APsig>

AP preamble signature codes for selection of this PCPCH channel.

>>>> AP signature MP Integer (0..15)

>>>Available AP access slot subchannel

OP 1 to <maxPCPCH-APsubCh>

Lists the set of subchannels to be used for AP access preambles in combination with the above AP signature(s). Note: if not present, all subchannels are to be used without access delays.

>>>> AP access slot subchannel

MP Integer (0..11)

VCAM info CV-CAA> Available Minimum Spreading Factor

MP 1 to <maxPCPCH-SF>

>> Minimum Spreading Factor MP Enumerated (4,8,16,32,64,128,256 )

>>NF_max MP Integer (1..64)

Maximum number of frames for PCPCH message part

>> Maximum available number of PCPCH

MP Integer (1..64)

Maximum available number of PCPCH for the indicated Spreading Factor.

>> Available AP signatures MP 1 to <maxPCPCH-APsig>

Signatures for AP preamble in UL.

>>> AP signature Integer (0..15)

>> Available AP sub-channel OP 1 to <maxPCPCH-APsubCh>

AP sub-channels for the given AP signature in UL. Note: if not present, all subchannels are to be used without access delays.

>>> AP sub-channel MP Integer (0..11)

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Condition Explanation CDSigPresent This IE may be included if IE "Available CD

signatures" is present. NCAA This IE is included if IE "Channel Assignment Active"

is not presentCAA This IE is included if IE ""Channel Assignment Active"

is present.

10.3.6.13 CPCH Status Indication mode

  "CPCH Status Indication mode"可能有两个取值:PCPCH可用性(PA)模式和具有最小可用的扩频因子的 PCPCH可用性(PAMASF)模式。当信道指派是激活状态时使用 PAMASF模式。当信道指派为非激活(UE信道选择是激活)时使用 PA模式。这两种不同的模式将分别在下面的小节中分别加以描述。TS25.211定义了 CSICH信道的状态指示(SI),它传递 CPCH状态信息。一个 CSICH可以包含 3个到最多 60个状态指示。10.3.6.13.1 PCPCH Availability (PA) mode

  在 PA模式中,CPCH状态指示传递 PCPCH信道可用性的值,PCPCH信道可用性的值是一个1到 16 比特的值,它指示了在 CPCH 集中所定义的 1到 16 个 PCPCHs中的每一个的可用性。PCPCHs从 PCPCH0开始编号,一直到 PCPCH15。对于每一个定义的 PCPCH信道,都有一个比特的 PCPCH信道可用性(PCA)值。如果在 CPCH集中定义了 2个 PCPCHs,则在 PCA值中就有2个比特。以此类推,当 UE信道选择激活时,每个 CPCH集中对于定义的其它数目(最大为 16)的 CPCH信道,也是同样的。  每帧中 SIs(状态指示) 的个数是定义的 PCPCH信道个数的一个函数。

Number of defined PCPCHs(=K) Number of SIs per frame(=N)1, 2, 3 3

4,5 56,7,8,9,10,11,12,13,14,15 15

16 30

  对于某个定义的 PCPCH,SI的值应该指示 PCA的值,其中 PCA(n)=1表示 PCPCH是可用的,PCA(n)=0 表示这个 PCPCHn 是不可用的。对于 PCPCH0,SI(0)表示 PCA(0) ;对于PCPCH1,SI(1)表示 PCA(1);等等。当每一帧的 SI超过了定义的 PCPCHs (K)的值,超过K的 SIs 应设为重复所定义的 PCPCHs的 PCA值。一般而言,

SI(n) = PCA(n mod (K)),

其中 PCA(i)是 PCPCHi的可用性,且 n的取值范围为 0 到 N-1。

10.3.6.13.2 PCPCH Availability with Minimum Available Spreading Factor (PAMASF) mode

   在 PAMASF 模式中,CPCH 状态指示表达了两个信息。一个是最小可用的扩频因子(MASF)值,另一个是 PCPCH信道可用性(PCA)值。

- MASF是一个 3比特数,比特位从MASF0到MASF2。其中MASF0是MASF值的最高有效位,MASF2是MASF的最低有效位。

  下表定义了MASF(0),MASF(1),MASF(2)值,用以表示MASF。所有的扩频因子都比可用的MASF大。

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Minimum Available Spreading Factor (MASF)

MASF(0) MASF(1) MASF(2)

N/A(No available CPCH resources)

0 0 0

256 0 0 1128 0 1 064 0 1 132 1 0 016 1 0 108 1 1 004 1 1 1

每帧的 SIs(状态指示)的个数N是定义的 PCPCH信道个数K的一个函数。Number of defined PCPCHs(K) Number of SIs per frame(N)

1, 2, 53,4,5,6,7,8,9,10,11,12 15

13,14,15,16,17,18,19,20,21,22,23,24,25,26,27 3028….57 60

  PCA(n)=1表示 PCPCHn是可用的,而 PCA(n)=0表示 PCPCHn是不可用的。对于在一个 CPCH集中定义的每一个 PCPCH信道的 PCA值都分配一个 SI(状态指示),一个 3比特的MASF值也应该分配给 SIs,如下图所示。

All 0

N

J

PCAs PCA(0) PCA(K-1)

...

MASF(0)MASF

...

SIs

MASF(1) MASF(2)

PCA(1)

K

Figure 61: Mapping of MASF and PCAs to SIs in CSICH

  3-比特MASF值重复的次数是

  其中x是小于或等于 x的最大整数。每个MASF值比特,MASF(n)都应按如下规则映射到SI。

,

其中

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  每个 PCA值比特,PCA(n),都应按如下规则映射到 SI。

  其余

  SIs 都应被设为 0。10.3.6.14 CSICH Power offset

Information Element/Group name

Need Multi Type and reference

Semantics description

CSICH Power offset MP Integer(-10..+5)

Offset in dB, granularity of 1 dB

10.3.6.15 Default DPCH Offset Value

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode>FDD>>Default DPCH Offset Value (DOFF)

MP Integer (0..306688 by step of 512)

Number of chips=.0 to 599 time 512 chips, see TS 25.402.At least 424 spare values neededCriticality: reject is needed

>TDD>>Default DPCH Offset Value (DOFF)

MP Integer(0..7) Number of frames; See TS 25.402

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10.3.6.16 Downlink channelization codes

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE codes representation MP>Consecutive codes>>First channelization code MP Enumerated (

(16/1)...(16/16))

The codes from First channelization code to Last channelization code shall be used in that order by the physical layer in this timeslot. If a TFCI exists in this timeslot, it is mapped in the First channelization code.

>>Last channelization code MP Enumerated ((16/1)...(16/16))

If this is the same as First channelization code, only one code is used by the physical layer.

>Bitmap>>Channelization codes bitmap MP Bitmap(16) The first bit in this bitmap

corresponds to channelization code (16/1) the second to (16/2) and so on. A 1 in the bitmap means that the code is used in this timeslot, a 0 that the code is not used. The codes shall be used in the order from (16/1) to (16/16) by the physical layer.

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10.3.6.17 Downlink DPCH info common for all RL

Information Element/Group name

Need Multi Type and reference

Semantics description

Timing Indication MP Enumerated(Initialise, Maintain)

CFN-targetSFN frame offset OP Integer(0..255)

In frame

CHOICE mode>FDD>>Downlink DPCH power control information

OP Downlink DPCH power control information 10.3.6.22

>>Downlink rate matching restriction information

OP Downlink rate matching restriction information 10.3.6.30

If this IE is set to "absent", no Transport CH is restricted in TFI.

>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256, 512)

>>Fixed or Flexible Position MP Enumerated (Fixed, Flexible)

>>TFCI existence MP Boolean TRUE indicates that TFCI exists

>>CHOICE SF MP>>> SF = 256>>>> Number of bits for Pilot bits

MP Integer (2,4,8)

In bits

>>> SF = 128>>>>Number of bits for Pilot bits MP Integer(4,8) In bits

>>> Otherwise (no data)>TDD>>Common timeslot info MD Common

Timeslot Info 10.3.6.9

Default is the current Common timeslot info

CHOICE SF Condition under which the given SF is chosenSF=128 "Spreading factor" is set to 128SF=256 "Spreading factor" is set to 256Otherwise "Spreading factor" is set to a value distinct from 128

and 256

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10.3.6.18 Downlink DPCH info common for all RL Post

Information Element/Group name

Need Multi Type and reference

Semantics description

Timing Indication MP Enumerated(Initialise, Maintain)

CFN-targetSFN frame offset OP Integer(0..255)

In frame

Downlink DPCH power control information

OP Downlink DPCH power control information 10.3.6.22

10.3.6.19 Downlink DPCH info common for all RL Pre

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Timing Indication MP Enumerated(

Initialise, Maintain)

>>CFN-targetSFN frame offset OP Integer(0..255)

In frame

>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256, 512)

Defined in CHOICE SF512-Andpilot with "number of its for pilot bits" in ASN.1

>>Fixed or Flexible Position MP Enumerated (Fixed, Flexible)

>>TFCI existence MP Boolean TRUE indicates that TFCI exists

>>CHOICE SF MP>>> SF = 256>>>> Number of bits for Pilot bits

MP Integer (2,4,8)

In bits

>>> SF = 128>>>>Number of bits for Pilot bits MP Integer(4,8) In bits

>>> Otherwise (no data)>TDD>>Common timeslot info MP Common

Timeslot Info 10.3.6.9

CHOICE SF Condition under which the given SF is chosenSF=128 "Spreading factor" is set to 128SF=256 "Spreading factor" is set to 256Otherwise "Spreading factor" is set to a value distinct from 128

and 256

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10.3.6.20 Downlink DPCH info for each RL

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Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Primary CPICH usage for channel estimation

MP Primary CPICH usage for channel estimation 10.3.6.61

>>DPCH frame offset MP Integer(0..38144 by step of 256)

Offset (in number of chips) between the beginning of the P-CCPCH frame and the beginning of the DPCH frameThis is called DPCH,n in TS 25.211

>>Secondary CPICH info OP Secondary CPICH info 10.3.6.72

>>DL channelization code MP 1 to <maxDPCH-DLchan>

SF of the channelization code of the data part for each DPCH

>>>Secondary scrambling code MD Secondary scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

>>> CHOICE Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256, 512)

Defined in CHOICE SF512-AndCodenumber with "code number" in ASN.1

>>>Code number MP Integer(0..Spreading factor - 1)

>>> Scrambling code change CH SF/2 Enumerated (code change, no code change)

Indicates whether the alternative scrambling code is used for compressed mode method 'SF/2'.

>>TPC combination index MP TPC combination index 10.3.6.83

>>SSDT Cell Identity OP SSDT Cell Identity 10.3.6.75

>>Closed loop timing adjustment mode

CH TxDiversity Mode

Integer(1, 2) It is present if current TX Diversity Mode in UE is "closed loop mode 1" or "closed loop mode 2".Value in slots

>TDD>>DL CCTrCh List MP 1..<maxCC

TrCH>>>>TFCS ID MD Integer(1..8) Identity of this CCTrCh.

Default value is 1 >>>Time info MP Time Info

10.3.6.81>>>Downlink DPCH timeslots and codes

MD Downlink Timeslots and Codes 10.3.6.31

Default is to use the old timeslots and codes.

>>>UL CCTrCH TPC List MD 1..<maxCCTrCH>

UL CCTrCH identities for TPC commands associated with this DL CCTrCH. Default is previous list or all defined UL CCTrCHs

>>>>UL TPC TFCS Identity MP Transport Format Combination Set Identity

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Information Element/Group name

Need Multi Type and reference

Semantics description

10.3.5.21

Condition ExplanationSF/2 The information element is mandatory if the UE has

an active compressed mode pattern sequence, which is using compressed mode method "SF/2". Otherwise the IE is not needed.

TxDiversity Mode This IE is present if current TX Diversity Mode in UE is "closed loop mode 1" or "closed loop mode 2". Otherwise the IE is not needed.

10.3.6.21 Downlink DPCH info for each RL Post

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Primary CPICH usage for channel estimation

MP Primary CPICH usage for channel estimation 10.3.6.61

>>Secondary scrambling code MD Secondary scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

>>Code number MP Integer(0..maxCodeNum)

>>TPC combination index MP TPC combination index 10.3.6.83

>TDD>>Downlink DPCH timeslots and codes

MP Downlink Timeslots and Codes 10.3.6.31

10.3.6.22 Downlink DPCH power control information

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>DPC Mode MP Enumerated

(Single TPC, TPC triplet in soft)

"Single TPC" is DPC_Mode=0 and "TPC triplet in soft" is DPC_mode=1 in [TS 25.214]

> TDD>>TPC Step Size OP Integer

(1, 2, 3)In dB

10.3.6.23 Downlink information common for all radio links

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Information Element/Group name

Need Multi Type and reference

Semantics description

Downlink DPCH info common for all RL

OP Downlink DPCH info common for all RL 10.3.6.17

CHOICE mode>FDD>>DPCH compressed mode info MD DPCH

compressed mode info 10.3.6.32

Default value is the existing value of DPCH compressed mode information

>>TX Diversity Mode MD TX Diversity Mode 10.3.6.84

Default value is the existing value of TX Diversity mode

>>SSDT information OP SSDT information 10.3.6.76

>TDD (no data)>>Default DPCH Offset Value OP Default

DPCH Offset Value,10.3.6.15

10.3.6.24 Downlink information common for all radio links Post

Information Element/Group name

Need Multi Type and reference

Semantics description

Downlink DPCH info common for all RL

MP Downlink DPCH info common for all RL Post 10.3.6.18

10.3.6.25 Downlink information common for all radio links Pre

Information Element/Group name

Need Multi Type and reference

Semantics description

Downlink DPCH info common for all RL

MP Downlink DPCH info common for all RL Pre10.3.6.19

Default DPCH Offset Value OP Default DPCH Offset Value,10.3.6.15

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10.3.6.26 Downlink information for each radio link

Information Element/Group name

Need Multi Type and reference

Semantics description

Choice mode MP>FDD>>Primary CPICH info MP Primary

CPICH info 10.3.6.59

>>PDSCH with SHO DCH Info OP PDSCH with SHO DCH Info 10.3.6.46

>>PDSCH code mapping OP PDSCH code mapping 10.3.6.42

>TDD>>Primary CCPCH info OP Primary

CCPCH info 10.3.6.56

Downlink DPCH info for each RL OP Downlink DPCH info for each RL 10.3.6.20

Note 1

Secondary CCPCH info OP Secondary CCPCH info 10.3.6.70

References to system information blocks

OP 1 to <maxSIB-FACH>

Note 1

>Scheduling information MP Scheduling information 10.3.8.12

Note 1

10.3.6.27 Downlink information for each radio link Post

Information Element/Group name

Need Multi Type and reference

Semantics description

Choice mode MP>FDD>>Primary CPICH info MP Primary

CPICH info 10.3.6.59

>TDD>>Primary CCPCH info MP Primary

CCPCH info post 10.3.6.49a

Downlink DPCH info for each RL MP Downlink DPCH info for each RL Post 10.3.6.18

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10.3.6.28 Downlink Outer Loop Control

Information Element/Group name

Need Multi Type and reference

Semantics description

DL Outer loop control MP Enumerated(Increase allowed, Increase not allowed)

10.3.6.29 Downlink PDSCH information

Information Element/Group name

Need Multi Type and reference

Semantics description

>>PDSCH with SHO DCH Info OP PDSCH with SHO DCH Info 10.3.6.46

>>PDSCH code mapping OP PDSCH code mapping 10.3.6.42

10.3.6.30 Downlink rate matching restriction information

Information Element/Group name

Need Multi Type and reference

Semantics description

Restricted TrCH information OP 1 to <maxTrCH>

>Restricted DL TrCH identity MP Transport channel identity 10.3.5.18

>Allowed TFIs MP 1 to <maxTF>

>>Allowed TFI MP Integer(0..31)

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10.3.6.31 Downlink Timeslots and Codes

Information Element/Group name

Need Multi Type and reference

Semantics description

First Individual timeslot info MP Individual timeslot info 10.3.6.36

Individual timeslot info for the first timeslot used by the physical layer.

First timeslot channelization codes

MP Downlink channelization codes 10.3.6.16

These codes shall be used by the physical layer in the timeslot given in First Individual timeslot info.

CHOICE more timeslots MP>No more timeslots (no data)>Consecutive timeslots>>Number of additional timeslots

MP Integer(1..maxTS-1)

The timeslots used by the physical layer shall be timeslots:N mod maxTS(N+1) mod maxTS...(N+k) mod maxTSin that order, where N is the timeslot number in the First individual timeslot info and k the Number of additional timeslots.The additional timeslots shall use the same parameters (e.g. channelization codes, midamble shifts etc.) as the first timeslot.

>Timeslot list>>Additional timeslot list MP 1 to

<maxTS-1>

The first instance of this parameter corresponds to the timeslot that shall be used second by the physical layer, the second to the timeslot that shall be used third and so on.

>>>CHOICE parameters MP>>>>Same as last>>>>>Timeslot number MP Timeslot

Number 10.3.6.81

The physical layer shall use the same parameters (e.g. channelization codes, midamble shifts etc.) for this timeslot as for the last one.

>>>>New parameters>>>>>Individual timeslot info MP Individual

timeslot info 10.3.6.36

>>>>>Channelization codes MP Downlink channelization codes 10.3.6.16

10.3.6.32 DPCH compressed mode info

Information Element/Group name

Need Multi Type and reference

Semantics description

Transmission gap pattern sequence

1 to <maxTGPS>

> TGPSI MP TGPSI 10.3.6.80

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Information Element/Group name

Need Multi Type and reference

Semantics description

>TGPS Status Flag MP Enumerated(active, inactive)

This flag indicates the current status of the Transmission Gap Pattern Sequence, whether it shall be activated or deactivated.

>Transmission gap pattern sequence configuration parameters

OP

>> TGMP MP Enumerated(TDD measurement, FDD measurement, GSM measurement, Other)

Transmission Gap pattern sequence Measurement Purpose.

>> TGPRC MP Integer (1..63, Infinity)

The number of transmission gap patterns within the Transmission Gap Pattern Sequence.

>> TGCFN MP Integer (0..255)

Connection Frame Number of the first frame of the first pattern within the Transmission Gap Pattern Sequence.

>> TGSN MP Integer (0..14)

Transmission Gap Starting Slot NumberThe slot number of the first transmission gap slot within the TGCFN.

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Information Element/Group name

Need Multi Type and reference

Semantics description

>>TGL1 MP Integer(1..14)

The length of the first Transmission Gap within the transmission gap pattern expressed in number of slots

>> TGL2 MD Integer (1..14)

The length of the second Transmission Gap within the transmission gap pattern. If omitted, then TGL2=TGL1.

>>TGD MP Integer(15..269, undefined)

Transmission gap distance indicates the number of slots between starting slots of two consecutive transmission gaps within a transmission gap pattern. If there is only one transmission gap in the transmission gap pattern, this parameter shall be set to zero.

>> TGPL1 MP Integer (1..144)

The duration of transmission gap pattern 1.

>> TGPL2 MD Integer (1..144)

The duration of transmission gap pattern 2. If omitted, then TGPL2=TGPL1.

>>RPP MP Enumerated (mode 0, mode 1).

Recovery Period Power control mode during the frame after the transmission gap within the compressed frame. Indicates whether normal PC mode or compressed PC mode is applied

>>ITP MP Enumerated (mode 0, mode 1).

Initial Transmit Power is the uplink power control method to be used to compute the initial transmit power after the compressed mode gap.

>>UL/DL mode MP Enumerated (UL only, DL only, UL/DL)

Defines whether only DL, only UL, or combined UL/DL compressed mode is used.

>> Downlink compressed mode method

CV DL Enumerated (puncturing, SF/2, higher layer scheduling)

Method for generating downlink compressed mode gap

>> Uplink compressed mode method

CV UL Enumerated (SF/2, higher layer scheduling)

Method for generating uplink compressed mode gap

>>Downlink frame type MP Enumerated (A, B)

>>DeltaSIR1 MP Real(0..3 by step of 0.1)

Delta in DL SIR target value to be set in the UE during the compressed frames corresponding to the first transmission gap in the transmission gap pattern (without including the effect of the bit-rate increase)

>>DeltaSIRafter1 MP Real(0..3 by step of 0.1)

Delta in DL SIR target value to be set in the UE one frame after the compressed frames corresponding to the first transmission gap in the transmission gap pattern.

>>DeltaSIR2 OP Real(0..3 by step of 0.1)

Delta in DL SIR target value to be set in the UE during the compressed frames

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Information Element/Group name

Need Multi Type and reference

Semantics description

corresponding to the second transmission gap in the transmission gap pattern (without including the effect of the bit-rate increase) When omitted, DeltaSIR2 = DeltaSIR1.

>>DeltaSIRafter2 OP Real(0..3 by step of 0.1)

Delta in DL SIR target value to be set in the UE one frame after the compressed frames corresponding to the second transmission gap in the transmission gap pattern. When omitted, DeltaSIRafter2 = DeltaSIRafter1.

Condition ExplanationUL This information element is only sent when the value

of the "UL/DL mode" IE is "UL only" or "UL/DL".DL This information element is only sent when the value

of the "UL/DL mode" IE is "DL only" or "UL/DL".

10.3.6.33 DPCH Compressed Mode Status Info

Information Element/Group name

Need Multi Type and reference

Semantics description

Transmission gap pattern sequence

1 to <maxTGPS>

> TGPSI MP TGPSI 10.3.6.80

Transmission Gap Pattern Sequence Identifier

> TGPS Status Flag MP Enumerated(active, inactive)

This flag indicates the current status of the Transmission Gap Pattern Sequence, whether it shall be active or inactive.

10.3.6.34 Dynamic persistence level

Information Element/Group name

Need Multi Type and reference

Semantics description

Dynamic persistence level MP Integer(1..8) Level shall be mapped to a dynamic persistence value in the range 0 .. 1.

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10.3.6.35 Frequency info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>UARFCN uplink (Nu) OP Integer(0..

16383)[25.101] If IE not present, default duplex distance of 190 MHz shall be used.

>>UARFCN downlink (Nd) MP Integer(0 .. 16383)

[25.101]

>TDD>>UARFCN (Nt) MP Integer(0 ..

16383)[25.102]

10.3.6.36 Individual timeslot info

Information Element/Group name

Need Multi Type and reference

Semantics description

Timeslot number MP Timeslot number 10.3.6.81

Timeslot within a frame

TFCI existence MP Boolean TRUE indicates that the TFCI exists. It shall be coded in the first physical channel of this timeslot.

Midamble Shift and burst type MP Midamble shift and burst type 10.3.6.40

10.3.6.37 Individual Timeslot interference

Information element Need Multi Type and reference

Semantics description

Timeslot number MP Timeslot number 10.3.6.81

UL Timeslot Interference MP ULInterference 10.3.6.85

10.3.6.38 Maximum allowed UL TX power

Information Element Need Multi Type and reference

Semantics description

Maximum allowed UL TX power MP Integer(-50..33)

In dBmAt least 44 spare values are neededCriticality: reject is needed

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10.3.6.39 Midamble configuration

Information Element/Group name

Need Multi Type and reference

Semantics description

Midamble burst type 1 MD Integer(4, 8,16)

Maximum number of midamble shifts for burst type 1. Default value is 8.

Midamble burst type 2 MD Integer(3, 6)

Maximum number of midamble shifts for bursttype 2. Default value is 3.

10.3.6.40 Midamble shift and burst type

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Burst Type MP>Type 1>>Midamble Allocation Mode MP Enumerated

(Default midamble, Common midamble, UE specific midamble)

At least 1 spare value (criticality = reject) required.

>>Midamble Shift CV UE Integer(0..15)

>Type 2 >>Midamble Allocation Mode MP Enumerated

(Default midamble, Common midamble, UE specific midamble)

At least 1 spare value (criticality = reject) required.

>>Midamble Shift CV UE Integer(0..5)>Type 3>>Midamble Allocation Mode MP Enumerated

(Default midamble, UE specific midamble)

>>Midamble Shift CV UE Integer (0..7) NOTE: Burst Type 3 is only used in uplink.

Condition ExplanationUE This information element is only sent when the value

of the "Midamble Allocation Mode" IE is "UE-specific midamble".

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10.3.6.41 PDSCH Capacity Allocation info

Information Element/Group name

Need Multi Type and reference

Semantics description

PDSCH allocation period info MP Allocation Period Info 10.3.6.4

TFCS ID MD Integer(1..8) Default is 1.CHOICE Configuration MP>Old configuration>>PDSCH Identity MP Integer(1..Hi

PDSCHIdentities)

>New configuration>>PDSCH Info MP PDSCH Info

10.3.6.43>>PDSCH Identity OP Integer(1..Hi

PDSCHIdentities)

>>PDSCH power control info OP PDSCH power control info 10.3.6.44

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10.3.6.42 PDSCH code mapping (TDD)

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Information Element/Group name

Need Multi Type and reference

Semantics description

DL Scrambling Code MD Secondary scrambling code 10.3.6.73

Scrambling code on which PDSCH is transmitted.Default is the same scrambling code as for the Primary CPICH

Choice signalling method MP>code range>>PDSCH code mapping MP 1 to <

maxPDSCH-TFCIgroups >

>>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256)

At least 1 spare value neededCriticality: reject is needed

>>>multi-code info MP Integer(1..16)

This parameter indicates the number of PDSCH transmitted to the UE. The PDSCH codes all have the same SF as denoted by the 'Spreading factor' parameter. Contiguous codes are assigned, starting at the channelization code denoted by the spreading factor and code number parameter and including all codes, with code numbers up to and including 'code number' - 1 + 'multi-code info'. Note that 'code number'-1+'multi-code info' will not be allowed to exceed 'Spreading factor - 1'

>>Code number (for PDSCH code start)

MP Integer(0..Spreading factor-1)

>>Code number (for PDSCH code stop)

MP Integer(0..Spreading factor-1)

>TFCI range>>DSCH mapping MP 1 to <

maxPDSCH-TFCIgroups >

>>>Max TFCI(field2) value MP Integer(1..1023)

This is the maximum value in the range of TFCI(field 2) values for which the specified PDSCH code applies

>>>Spreading factor (for PDSCH code)

MP Integer(4, 8, 16, 32, 64, 128, 256)

At least 1 spare value neededCriticality: reject is needed

>>>Code number (for PDSCH code)

MP Integer(0..Spreading factor-1)

>>>multi-code info MP Integer(1..16)

Semantics as described for this parameter above

>Explicit>>PDSCH code info MP 1 to <

maxTFCI-2-Combs >

The first instance of the parameter PDSCH code corresponds to TFCI (field2) = 0, the second to TFCI(field 2) = 1and so on.

>>>Spreading factor (for PDSCH code)

MP Integer(4, 8, 16, 32, 64, 128, 256)

At least 1 spare value neededCriticality: reject is needed

>>>Code number (for PDSCH MP Integer(0..Sp

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Information Element/Group name

Need Multi Type and reference

Semantics description

code) reading factor-1)

>>>multi-code info MP Integer(1..16)

Semantics as described for this parameter above

>Replace This choice is made if the PDSCH code(s) associated with a given value of TFCI(field 2) is to be replaced.

>>Replaced PDSCH code MP 1 to < maxTFCI-2-Combs >

Identity of the PDSCH code(s) to be used for the specified value of TFCI(field 2). These code identity(s) replace any that had been specified before

>>>TFCI (field 2) MP Integer (0..1023)

Value of TFCI(field 2) for which PDSCH code mapping will be changed

>>>Spreading factor (for PDSCH code)

MP Integer(4, 8, 16, 32, 64, 128, 256)

>>>Code number (for PDSCH code)

MP Integer(0..Spreading factor-1)

>>>multi-code info MP Integer(1..16)

Semantics as described for this parameter above

10.3.6.43 PDSCH info (TDD)

Information Element/Group name

Need Multi Type and reference

Semantics description

TFCS ID MD Integer(1..8) TFCS to be used. Default value is 1.

Common timeslot info OP Common timeslot info 10.3.6.9

PDSCH timeslots and codes OP 1 to <maxTS>

Downlink Timeslots and Codes 10.3.6.31

Default is to use the old timeslots and codes.

10.3.6.44 PDSCH Power Control info (TDD)

Information Element/Group name

Need Multi Type and reference

Semantics description

TPC Step Size OP Integer (1, 2, 3)

In dB

UL CCTrCH TPC List MD 1..<maxCCTrCH>

UL CCTrCH identities for TPC commands associated with this DL CCTrCH. Default is previous list or all defined UL CCTrCHs

>UL TPC TFCS Identity MP Transport Format Combination Set Identity 10.3.5.21

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10.3.6.45 PDSCH system information

Information Element/Group name

Need Multi Type and reference

Semantics description

PDSCH information MP 1 to <maxPDSCH>

>PDSCH Identity MP Integer(1..HiPDSCHIdentities)

>PDSCH info MP PDSCH info 10.3.6.43

>SFN Time Info CH-Block17

SFN Time Info 10.3.6.74

>DSCH TFS OP Transport format set 10.3.5.23

>DSCH TFCS OP Transport Format Combination Set 10.3.5.20

Condition ExplanationBlock17 This IE is absent in System Information Block 17.

Otherwise it is optional.

10.3.6.46 PDSCH with SHO DCH Info

Information Element/Group name

Need Multi Type and reference

Semantics description

DSCH radio link identifier MP Integer(0..511)

This parameter indicates on which radio link the user will be allocated resource on the DSCH. The CPICH scrambling code will be used for this purpose.

TFCI Combining set OP This is used to indicate which of the downlink TFCI(field 2) transmissions made on the DPCCHs within the active set should be soft combined on the physical layer. This parameter may only be sent if there is a 'hard' split of the TFCI field and in this case the sending of the parameter is optional.

Radio link identifier OP 1 to <maxRL>

>Primary CPICH info MP Primary CPICH info 10.3.6.59

The CPICH scrambling code is used for this purpose

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10.3.6.47 Persistence scaling factors

Information Element/Group name

Need Multi Type and reference

Semantics description

Access Service Class 1 to maxASCpersist

> Persistence scaling factor MP Real(0.9..0.2, by step of 0.1)

Scaling factors in the range 0,…,1

10.3.6.48 PICH Info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Secondary scrambling code MD Secondary

scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

>>Channelization code MP Integer(0..255)

SF is fixed and equal to 256

>>Number of PI per frame MP Integer (18, 36 72 144)

>>STTD indicator MP STTD Indicator 10.3.6.77

>TDD>>Channelization code MD Enumerated

((16/1)...(16/16))

Default value is the channelization code used by the SCCPCH carrying the associated PCH.

>>Timeslot MD Timeslot number 10.3.6.81

Default value is the timeslot used by the SCCPCH carrying the associated PCH.

>>Burst type MP Enumerated (Typ1,Typ2)

>>Midamble shift MD Midamble shift 10.3.6.40

Default value is the midamble shift used by the SCCPCH carrying the associated PCH.

>>Repetition period/length MD Enumerated((4/2),(8/2), (8/4),(16/2), (16/4), (32/2),(32/4),(64/2),(64/4))

Default value is "(64/2)".

>>Offset MP Integer (0...Repetition period -1)

SFN mod Repetitionperiod = Offset.

>>Paging indicator length MD Integer (4, 8, 16)

Indicates the length of one paging indicator in Bits. Default value is 4.

>>NGAP MD Integer(2, 4, 8)

Number of frames between the last frame carrying PICH for this Paging Occasion and the first frame carrying paging messages for this Paging Occasion. Default value is 4.

>>NPCH MD Integer(1 .. 8)

Number of paging groups. Default value is 2.

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10.3.6.49 PICH Power offset

Information Element/Group name

Need Multi Type and reference

Semantics description

PICH Power offset MP Integer(-10 .. +5)

Offset in dB

10.3.6.50 PRACH Channelization Code

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE SF MP>SF16>>Channelization Code List MP 1 to 8>>>Channelization code MP Enumerated

((16/1)...(16/16))

1:1 mapping between spreading code and midamble shift

>SF8>>Channelization Code List MP 1 to 8>>>Channelization Code MP Enumerated(

(8/1)..(8/8))

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10.3.6.51 PRACH info (for RACH)

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>> Available Signature MP Bitstring(16) (Note1)

0000000000000001:Signature 00000000000000010:Signature 10000000000000011:Signature 0&1........:1111111111111111:Signature 0to15

>>Available SF MP Integer (32,64,128,256)

In chips per symbolDefines the smallest permitted SF (i.e. the maximum rate)

>>Preamble scrambling code number

MP Integer (0 .. 15)

Identification of scrambling code see TS 25.213

>>Puncturing Limit MP Real(0.40..1.00 by step of 0.04)

>> Available Sub Channel Number

MP Bitstring(12) (Note2)000000000001:SubChNumber 0000000000010:SubChNumber 1000000000011:SubChNumber 0&1...:111111111111:SubChNumber 0to11

>TDD>>Timeslot MP Timeslot

number 10.3.6.81

>>PRACH Channelization Code MP PRACH Channelization Code 10.3.6.50

>>PRACH Midamble OP Enumerated (Direct, Direct/Inverted)

Direct or direct and inverted midamble are used for PRACH

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10.3.6.52 PRACH partitioning

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode>FDD>>Access Service class MP 1 to

maxASC>>>ASC Setting MD ASC setting

10.3.6.5The default values are same as the previous ASC.If the "default" is used for the first ASC, the default values are all available signaturesand "all available sub-channels".

>>TDD>>>Access Service class List MP 1 to

maxASCList of Access Service classes

>>>>Access service class Index MP Integer(1..8)>>>>Repetition Period MD Integer(1, 2,

4, 8)Default value is continuous. Value 1 indicates continuous allocation

>>>>Offset MP Integer(0..Repetition Period - 1)

Note that this is empty if repetition period is set to 1

  下面的描述仅适用于 FDD。  可用的特征码表从特征码序号 0到特征码序号 N-1重新编号,其中 N是可用的特征码的个数,从最低的可用的特征码号开始,按特征码序号的升序排列。

可用的特征码表:16或更少的特征码是可用的。举例:只有特征码 0,5,10和 15是可用的,则:特征码 0是:序号为 0的可用特征码特征码 5是:序号为 1的可用特征码特征码 10是:序号为 2 的可用特征码特征码 15是:序号为 3的可用特征码

  可用的接入时隙子信道列表从接入时隙子信道序号 0到接入时隙子信道序号M-1重新编号,其中M是可用的接入时隙子信道的个数,从最低的可用的接入时隙子信道号开始,按接入时隙子信道序号的升序排列。

可用的接入时隙信道表:12或更少的子信道是可用的。举例:只有子信道 0,1,4,5,8,9是可以的,则:子信道 0是:序号为 0的可用的子信道子信道 1是:序号为 1的可用的子信道子信道 4是:序号为 2的可用的子信道子信道 5是:序号为 3的可用的子信道子信道 8是:序号为 4的可用的子信道子信道 9是:序号为 5的可用的子信道

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  一个ASC可以接入到可用的子信道开始序号到可用的子信道结束序号之间的所有的接入时隙子信道,而且可以使用可用的特征码开始序号到可用的特征码结束序号之间的所有特征码。注:以下的文字最终将会被移到一个更合适的位置。

10.3.6.53 PRACH power offset

Information Element/Group name

Need Multi Type and reference

Semantics description

Power Ramp Step MP Integer (1..8) Power step when no acquisition indicator is received in dB

Preamble Retrans Max MP Integer (1..64)

Maximum number of preambles in one preamble ramping cycle

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10.3.6.54 PRACH system information list

Information element Need Multi Type and reference

Semantics description

PRACH system information MP 1 .. <maxPRACH>

>PRACH info MP PRACH info (for RACH) 10.3.6.51

>Transport channel identity MP Transport channel identity 10.3.5.18

>RACH TFS MD Transport format set 10.3.5.23

Default value is the value of "RACH TFS" for the previous PRACH in the list (note : the first occurrence is then MP)

>RACH TFCS MD Transport Format Combination Set 10.3.5.20

Default value is the value of "RACH TFCS" for the previous PRACH in the list (note : the first occurrence is then MP)

>PRACH partitioning MD PRACH partitioning 10.3.6.45

Default value is the value of "PRACH partitioning" for the previous PRACH in the list (note : the first occurrence is then MP)

>Persistence scaling factors OP Persistence scaling factors 10.3.6.47

If this IE is absent, value is the value of "Persistence scaling factors" for the previous PRACH in the list if value exists

>AC-to-ASC mapping OP AC-to-ASC mapping 10.3.6.1

Only present in SIB 5If this IE is absent, value is the value of "Persistence scaling factors" for the previous PRACH in the list if value exists

>CHOICE mode MP>>FDD>>>Primary CPICH TX power MD Primary

CPICH TX power 10.3.6.60

Default value is the value of "Primary CPICH TX power" for the previous PRACH in the list (note : the first occurrence is then MP)

>>>Constant value MD Constant value 10.3.6.10

Default value is the value of "Constant value" for the previous PRACH in the list (note : the first occurrence is then MP)

>>>PRACH power offset MD PRACH power offset 10.3.6.53

Default value is the value of "PRACH power offset" for the previous PRACH in the list (note : the first occurrence is then MP)

>>>RACH transmission parameters

MD RACH transmission parameters 10.3.6.66

Default value is the value of "RACH transmission parameters" for the previous PRACH in the list (note : the first occurrence is then MP)

>>>AICH info MD AICH info 10.3.6.2

Default value is the value of "AICH info" for the previous PRACH in the list (note : the first occurrence is then MP)

>>TDD (no data)

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10.3.6.55 Predefined PhyCH configuration

Information Element/Group name

Need Multi Type and Reference

Semantics description

Uplink radio resourcesUplink DPCH info MP Uplink

DPCH info Pre 10.3.6.88

Downlink radio resourcesDownlink information common for all radio links

Downlink information common for all radio links Pre10.3.6.25

10.3.6.56 Primary CCPCH info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>TX Diversity indicator MP Boolean>TDD>>CHOICE SyncCase OP>>>Sync Case 1>>>>Timeslot MP Integer

(0...14)PCCPCH timeslot

>>>Sync Case 2>>>>Timeslot MP Integer(0..6)>>Cell parameters ID OP Cell

parameters Id 10.3.6.8

The Cell parameters ID is described in 25.223.

>>Block STTD indicator MP Block STTD indicator 10.3.6.6

10.3.6.57 Primary CCPCH info post

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE SyncCase MP>Sync Case 1>>Timeslot MP Integer

(0...14)PCCPCH timeslot

>Sync Case 2>>Timeslot MP Integer(0..6)Cell parameters ID MP Cell

parameters Id 10.3.6.8

The Cell parameters ID is described in 25.223.

Block STTD indicator MP Block STTD indicator 10.3.6.5

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10.3.6.58 Primary CCPCH TX Power

Information Element/group name

Need Multi Type and reference

Semantics description

Primary CCPCH Tx Power MP Integer(6..43)

In dBm

10.3.6.59 Primary CPICH info

Information Element/Group name

Need Multi Type and reference

Semantics description

Primary scrambling code MP Integer(0..511)

10.3.6.60 Primary CPICH Tx power

Information Element/Group name

Need Multi Type and reference

Semantics description

Primary CPICH Tx Power MP Integer(-10..50)

At least 3 spare values are needed for future extensions with criticality reject

10.3.6.61 Primary CPICH usage for channel estimation

Information Element/Group name

Need Multi Type and Reference

Semantics description

Primary CPICH usage for channel estimation

MP Enumerated(Primary CPICH may be used, Primary CPICH shall not be used)

10.3.6.62 PUSCH info

Information Element/Group name

Need Multi Type and reference

Semantics description

TFCS ID MD Integer(1..8) Default value is 1Common timeslot info OP Common

timeslot info 10.3.6.9

PUSCH timeslots and codes OP 1 to <maxTS>

Uplink Timeslots and Codes 10.3.6.92

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10.3.6.63 PUSCH Capacity Allocation info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE PUSCH allocation MP>PUSCH allocation pending (no data)>PUSCH allocation assignment>>PUSCH allocation period info MP Allocation

Period Info 10.3.6.4

>>PUSCH power control info OP PUSCH power control info10.3.6.64

>>TFCS ID MD Integer(1..8) Default is 1.>>CHOICE Configuration MP>>>Old configuration>>>>PUSCH Identity MP Integer(1..Hi

PUSCHIdentities)

>>>New configuration>>>>PUSCH info MP PUSCH info

10.3.6.62>>>>PUSCH Identity OP Integer(1..m

axPDSCHIdentity)

10.3.6.64 PUSCH power control info

Information Element/Group name

Need Multi Type and reference

Semantics description

UL target SIR MP Real (-11 .. 20 by step of 0.5)

in dB

10.3.6.65 PUSCH system information

Information Element/Group name

Need Multi Type and reference

Semantics description

PUSCH information MP 1 to <maxPUSCH>

>PUSCH Identity MP Integer(1..HiPUSCHIdentities)

>PUSCH info MP PUSCH info 10.3.6.62

>SFN Time Info CH-Block17

SFN Time Info 10.3.6.74

>USCH TFS OP Transport format set 10.3.5.23

>USCH TFCS MP Transport Format Combination Set 10.3.5.20

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Condition ExplanationBlock17 This IE is absent in System Information Block 17.

Otherwise it is optional.

10.3.6.66 RACH transmission parameters

Information Element/Group name

Need Multi Type and reference

Semantics description

Mmax MP Integer(1..32)

Maximum number of preamble cycles

NB01min MP Integer(0..50)

Sets lower bound for random back-off

NB01max MP Integer(0..50)

Sets upper bound for random back-off

10.3.6.67 Radio link addition information

Information Element/Group name

Need Multi Type and reference

Semantics description

Primary CPICH info MP Primary CPICH info 10.3.6.59

Downlink DPCH info for each RL MP Downlink DPCH info for each RL 10.3.6.20

TFCI combining indicator OP TFCI combining indicator 10.3.6.79

SCCPCH Information for FACH OP SCCPCH Information for FACH10.3.6.69

Note 1

10.3.6.68 Radio link removal information

Information Element/Group name

Need Multi Type and reference

Semantics description

Primary CPICH info MP Primary CPICH info 10.3.6.59

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10.3.6.69 SCCPCH Information for FACH

Secondary CCPCH info MP Secondary CCPCH info 10.3.6.70

TFCS MP Transport format set 10.3.5.23

For FACHs and PCH

FACH/PCH information MP 1 to <maxFACHPCH>

>TFS MP Transport format set 10.3.5.23

For each FACHs and PCH

References to system information blocks

MP 1 to <maxSIB-FACH>

>Scheduling information MP Scheduling information 10.3.8.12

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10.3.6.70 Secondary CCPCH info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Primary CPICH usage for channel estimation

MP Primary CPICH usage for channel estimation 10.3.6.61

>>Secondary CPICH info OP Secondary CPICH info 10.3.6.72

>>Secondary scrambling code MD Secondary scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

>>STTD indicator MD STTD Indicator 10.3.6.77

Default value is "TRUE"

>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256)

>>Code number MP Integer(0..Spreading factor - 1)

>>Pilot symbol existence MD Boolean TRUE means the existence. Default value is "TRUE"

>>TFCI existence MD Boolean TRUE means the existence. Default value is "TRUE"

>>Fixed or Flexible Position MD Enumerated (Fixed, Flexible)

Default value is "Flexible"

>>Timing Offset MD Integer(0..38144 by step of 256)

ChipDelay of the Secondary CCPCH relative to the Primary CCPCH.Default value is 0.

>TDD>>Offset MD Integer

(0...Repetition Period -1)

SFN modulo Repetition period = offset. Repetition period is the one indicated in the accompanying Common timeslot info IE

>>Common timeslot info MP Common timeslot info 10.3.6.9

>>Individual timeslot info MP Individual timeslot info 10.3.6.36

>>Code List MP 1.. <maxCodesCount>

>>>Channelization Code MP Enumerated((16/1)..(16/16))

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10.3.6.71 Secondary CCPCH system information

Information element Need Multi Type and reference

Semantics description

Secondary CCPCH system information

MP 1 to <maxSCCPCH>

>Secondary CCPCH info MP Secondary CCPCH info 10.3.6.70

Note 1

>TFCS MD Transport format set 10.3.5.23

For FACHs and PCHDefault value is the value of "TFCS" for the previous SCCPCH in the list (note : the first occurrence is then MP)

>FACH/PCH information MD 1 to <maxFACHPCH>

Default value is the value of "FACH/PCH" for the previous SCCPCH in the list (note : the first occurrence is then MP)

>>Transport channel identity MP Transport channel identity 10.3.5.18

>>TFS MP Transport format set 10.3.5.23

For each FACH and PCHNote 2

>>CTCH indicator MP Boolean The value "TRUE" indicates that a CTCH is mapped on the FACH, and "FALSE" that no CTCH is mapped.

>PICH info OP PICH info 10.3.6.48

PICH info is present only when PCH is multiplexed on Secondary CCPCH

10.3.6.72 Secondary CPICH info

Information Element/Group name

Need Multi Type and reference

Semantics description

Secondary scrambling code MD Secondary scrambling code 10.3.6.73

Default is the same scrambling code as for the Primary CPICH

Channelization code MP Integer(0..255)

SF=256

10.3.6.73 Secondary scrambling code

Information Element/Group name

Need Multi Type and reference

Semantics description

Secondary scrambling code MP Integer(1..15)

At least 1 spare value neededCriticality: reject is needed

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10.3.6.74 SFN Time info

Information Element/Group name

Need Multi Type and reference

Semantics description

Activation time SFN MP Integer (0..4095)

System frame number start of the physical channel existence.

Duration MP Integer(1..4096)

Total number of frames the physical channel will exist.

10.3.6.75 SSDT cell identity

Information Element/Group name

Need Multi Type and reference

Semantics description

SSDT cell id MP Enumerated (a, b, c, d, e, f, g, h)

10.3.6.76 SSDT information

Information Element/Group name

Need Multi Type and reference

Semantics description

S field MP Integer (1, 2) in bitsCode Word Set MP Enumerated

(long, medium, short, SSDT off)

10.3.6.77 STTD indicator

Information Element/Group name

Need Multi Type and reference

Semantics description

STTD Indicator MP Boolean TRUE means that STTD is used

10.3.6.78 TFC Control duration

Information Element/Group name

Need Multi Type and reference

Semantics description

TFC Control duration MP Integer (1, 2, 4, 8, 16, 24, 32, 48, 64, 128, 192, 256, 512)

Defines the period in multiples of 10 ms frames for which the defined TFC sub-set is to be applied.At least 3 spare values for future extensions with criticality reject are needed.

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10.3.6.79 TFCI Combining Indicator

Information Element/Group name

Need Multi Type and reference

Semantics description

TFCI combining indicator MP Boolean TRUE means that TFCI is combined

10.3.6.80 TGPSI

Information Element/Group name

Need Multi Type and reference

Semantics description

TGPSI MP Integer(1..MaxTGPS)

Transmission Gap Pattern Sequence IdentifierEstablish a reference to the compressed mode pattern sequence. Up to <MaxTGPS> simultaneous compressed mode pattern sequences can be used.

10.3.6.81 Time info

Information Element/Group name

Need Multi Type and reference

Semantics description

Activation time MD Activation time 10.3.3.1

Frame number start of the physical channel existence. Default value is "Now"

Duration MD Integer(1..4096, infinite)

Total number of frames the physical channel will exist. Default value is "infinite".

10.3.6.82 Timeslot number

Information Element/Group name

Need Multi Type and reference

Semantics description

Timeslot number MP Integer(0..14)

Timeslot within a frame

10.3.6.83 TPC combination index

NOTE: Only for FDD.

Information Element/Group name

Need Multi Type and reference

Semantics description

TPC combination index MP Integer(0..5)

Radio links with the same index have TPC bits, which for the UE are known to be the same.

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10.3.6.84 TX Diversity Mode

Information Element/Group name

Need Multi Type and reference

Semantics description

Tx diversity Mode MP Enumerated (none, STTD, closed loop mode1, closed loop mode2)

10.3.6.85 UL interference

Information Element/Group name

Need Multi Type and reference

Semantics description

UL interference MP Integer (-110..-70)

In dBmAt least 23 spare values with criticality reject are needed

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10.3.6.86 Uplink DPCH info

Information Element/Group name

Need Multi Type and reference

Semantics description

Uplink DPCH power control info OP Uplink DPCH power control info 10.3.6.89

CHOICE mode MP>FDD>>Scrambling code type MP Enumerated(

short, long)>>Scrambling code number MP Integer(0..16

777215)>>Number of DPDCH MD Integer(2..m

axDPDCH)Default value is 1.Number of DPDCH is 1 in HANDOVER TO UTRAN COMMAND

>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256)

SF of the channelization code for data part

>>TFCI existence MD Boolean TRUE means existence. Default value is "TRUE"

>>Number of FBI bits CH Integer (1, 2) In bits. Number of FBI bits is needed if SSDT or FB Mode Transmit Signalling is supported.

>>Puncturing Limit MP Real(0.40 ..1 by step of 0.04)

>TDD>>Uplink Timing Advance Control

OP Uplink Timing Advance Control 10.3.6.94

>>UL CCTrCH List MP 1 to <maxCCTrCH>

>>>TFCS ID MD Integer(1..8) Default value is 1. >>>Time info MP Time info

10.3.6.81>>>Common timeslot info MD Common

timeslot info 10.3.6.9

Default is the current Common timeslot info

>>>Uplink DPCH timeslots and codes

MD Uplink Timeslots and Codes 10.3.6.92

Default is to use the old timeslots and codes.

Condition ExplanationSingle This IE is included if IE "Number of DPDCH" is "1"

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10.3.6.87 Uplink DPCH info Post

Information Element/Group name

Need Multi Type and reference

Semantics description

Uplink DPCH power control info MP Uplink DPCH power control info Post 10.3.6.90

CHOICE mode MP>FDD>>Scrambling code type MP Enumerated(

short, long)>>Reduced scrambling code number

MP Integer(0..8191)

Sub-range of values for initial use upon handover to UTRAN.

>>Spreading factor MP Integer(4, 8, 16, 32, 64, 128, 256)

SF of the channelization code for data partThere is only one DPDCH for this case

>TDD>>Uplink Timing Advance Control

OP Uplink Timing Advance Control 10.3.6.94

>>Uplink DPCH timeslots and codes

MP Uplink Timeslots and Codes 10.3.6.92

10.3.6.88 Uplink DPCH info Pre

Information Element/Group name

Need Multi Type and reference

Semantics description

Uplink DPCH power control info OP Uplink DPCH power control info Pre 10.3.6.91

CHOICE mode MP>FDD>>TFCI existence MP Boolean TRUE means existence.

Default value is "TRUE">>Puncturing Limit MP Real(0.40 ..1

by step of 0.04)

>TDD>>Common timeslot info MP Common

Timeslot Info 10.3.6.9

Condition ExplanationSingle This IE is included if IE "Number of DPDCH" is "1"

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10.3.6.89 Uplink DPCH power control info

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>DPCCH Power offset MP Integer(-

164,..-6 by step of 2)

In dB

>>PC Preamble MP Integer (0, 15)

>>Power Control Algorithm MP Enumerated (algorithm 1, algorithm 2)

Specifies algorithm to be used by UE to interpret TPC commands

>>TPC step size CV algo Integer (1, 2) In dB>TDD>>UL target SIR MP Real (-11 ..

20 by step of 0.5dB)

In dB

>>CHOICE UL OL PC info MP>>>Broadcast UL OL PC info Null No data>>>Individually Signalled OP>>>>Individual timeslot interference info

MP 1 to <maxTS>

>>>>> Individual timeslot interference

MP Individual timeslot interference 10.3.6.37

>>>>DPCH Constant Value OP Constant Value10.3.6.10

Quality Margin

>>>>Primary CCPCH Tx Power OP Primary CCPCH Tx Power 10.3.6.58

For Pathloss Calculation

Condition Explanationalgo The IE is mandatory if "Power Control Algorithm" is

set to "algorithm 1", otherwise the IE is not needed

10.3.6.90 Uplink DPCH power control info Post

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Power Control Algorithm MP Enumerated

(algorithm 1, algorithm 2)

Specifies algorithm to be used by UE to interpret TPC commands

>>TPC step size CV algo Integer (1, 2) In dB>TDD>>UL target SIR MP Real (-11 ..

20 by step of 0.5dB)

In dB

>>UL Timeslot Interference MP UL Interference 10.3.6.85

Condition Explanationalgo The IE is mandatory if "Power Control Algorithm" is

set to "algorithm 1", otherwise the IE is not needed

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10.3.6.91 Uplink DPCH power control info Pre

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>DPCCH Power offset MP Integer(-

164..-6 by step of 2)

In dB

>>PC Preamble MP Integer (0, 15)

>TDD (No data)>>DPCH Constant Value MP Constant

Value10.3.6.10

Quality Margin

Condition ExplanationAlgo The IE is mandatory if "Power Control Algorithm" is

set to "algorithm 1", otherwise the IE is not needed

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10.3.6.92 Uplink Timeslots and Codes

Information Element/Group name

Need Multi Type and reference

Semantics description

First Individual timeslot info MP Individual timeslot info 10.3.6.36

Individual timeslot info for the first timeslot used by the physical layer.

First timeslot Code List MP 1..2 Code list used in the timeslot. given in First individual timeslot info.

>Channelization Code MP Enumerated((1/1),)(2/1),(2/2),(4/1)..(4/4),(8/1)..(8/8),(16/1)..(16/16))

CHOICE more timeslots MP>No more timeslots (no data)>Consecutive timeslots>>Number of additional timeslots

MP Integer(1..maxTS-1)

The timeslots used by the physical layer shall be timeslots:N mod maxTS(N+1) mod maxTS...(N+k) mod maxTSin that order, where N is the timeslot number in the First individual timeslot info and k the Number of additional timeslots.The additional timeslots shall use the same parameters (e.g. channelization codes, midamble shifts etc.) as the first timeslot.

>Timeslot list>>Additional timeslot list MP 1 to

<maxTS-1>

The first instance of this parameter corresponds to the timeslot that shall be used second by the physical layer, the second to the timeslot that shall be used third and so on.

>>>CHOICE parameters MP>>>>Same as last>>>>>Timeslot number MP Timeslot

Number 10.3.6.81

This physical layer shall use the same parameters (e.g. channelization codes, midamble shifts etc.) for this timeslot as for the last one.

>>>>New parameters>>>>>Individual timeslot info MP Individual

timeslot info 10.3.6.36

>>>>>Code List MP 1..2>>>>>>Channelization Code MP Enumerated(

(1/1),)(2/1),(2/2),(4/1)..(4/4),(8/1)..(8/8),(16/1)..(16/16))

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10.3.6.93 Uplink Timing Advance

Information Element/Group name

Need Multi Type and reference

Semantics description

UL Timing Advance MP Integer (0..63)

Absolute timing advance value to be used to avoid large delay spread at the NodeB

10.3.6.94 Uplink Timing Advance Control

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Timing Advance MP>Disabled Null Indicates that no timing

advance is applied>Enabled>>UL Timing Advance MD Uplink

Timing Advance 10.3.6.93

Absolute timing advance value to be used to avoid large delay spread at the NodeB.Default value is the existing value for uplink timing advance.

>>Activation Time OP Activation Time 10.3.3.1

Frame number timing advance is to be applied. This IE is required when a new UL Timing Advance adjustment is specified and Activation Time is not otherwise specified in the RRC message.

10.3.7 测量信息元素

10.3.7.1 Additional measurements list

Information Element/Group name

Need Multi Type and reference

Semantics description

Additional measurements MP 1 to <MaxAdditionalMeas>

>Additional measurement identity

MP Measurement identity number 10.3.73

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10.3.7.2 Cell info

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell individual offset MD Real(-10..10 by step of 0.5)

In dBDefault value is 0 dBUsed to offset measured quantity value

Reference time difference to cell OP Reference time difference to cell 10.3.7.85

In chips.This IE is absent for serving cell.

CHOICE mode MP>FDD>>Primary CPICH info OP Primary

CPICH info 10.3.6.59

This IE is absent only if measuring RSSI only (broadband measurement.)

>>Primary CPICH Tx power OP Primary CPICH Tx power 10.3.6.60

Required if calculating pathloss.

>>Read SFN indicator MP Boolean TRUE indicates that read of SFN is requested for the target cell

>>TX Diversity Indicator MP Boolean>TDD>>Primary CCPCH info MP Primary

CCPCH info 10.3.6.56

>>Primary CCPCH TX power OP Primary CCPCH TX power 10.3.6.58

>> Timeslot list OP 1 to <maxTS>

The UE shall report Timeslot ISCP values according the order of the listed Timeslot numbers

>>>Timeslot number MP Integer (0...14)

Timeslot numbers, for which the UE shall report Timeslot ISCP

>>>Burst Type MD Enumerated (Type1, Type2)

Use for Timeslot ISCP measurements only. Default value is "Type1"

Cell Selection and Re-selection Info

CV-BCHopt

Cell Selection and Re-selection for SIB11/12Info 10.3.2.4

Only when sent in system information.This IE is absent for serving cell.For neighbouring cell, if HCS is not used and all the parameters in cell selection and re-selection info are default value, this IE is absent.

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10.3.7.3 Cell measured results

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell Identity OP Cell Identity 10.3.2.2

SFN-SFN observed time difference

OP SFN-SFN observed time difference 10.3.7.88

CFN-SFN observed time difference

OP CFN-SFN observed time difference 10.3.7.6

Note 2

CHOICE mode MP>FDD>>Primary CPICH info MP Primary CPICH info

10.3.6.59>>CPICH Ec/N0 OP Integer(-20..0) In dB>>CPICH RSCP OP Integer(-115..-40) In dBm>>Pathloss OP Integer(46..158) In dB>TDD>>Cell parameters Id MP Cell parameters Id

10.3.6.8>>Primary CCPCH RSCP OP Primary CCPCH

RSCP info 10.3.7.79

>>Pathloss OP Integer(46..158) In dB>> Timeslot list OP 1 to <

maxTS>>>>Timeslot ISCP MP Timeslot ISCP Info

10.3.7.90The UE shall report the Timeslot ISCP in the same order as indicated in the cell info

10.3.7.4 Cell measurement event results

Includes non frequency related cell reporting quantities.Information Element/Group

nameNeed Multi Type and

referenceSemantics description

CHOICE mode MP>FDD>>Primary CPICH info MP 1 to

<maxCellMeas>

Primary CPICH info 10.3.6.59

>TDD>>Primary CCPCH info MP 1 to

<maxCellMeas>

Primary CCPCH info 10.3.6.56

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10.3.7.5 Cell reporting quantities

Information Element/Group name

Need Multi Type and reference

Semantics description

SFN-SFN observed time difference

MP Enumerated(No report, type 1, type 2)

CFN-SFN observed time difference

MP Boolean

Cell Identity MP BooleanCHOICE mode MP>FDD>>CPICH Ec/N0 MP Boolean>>CPICH RSCP MP Boolean>>Pathloss MP Boolean>TDD>>Timeslot ISCP MP Boolean>>Primary CCPCH RSCP MP Boolean>>Pathloss MP Boolean

10.3.7.6 CFN-SFN observed time difference

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>CFN-SFN observed time difference

MP Integer(0.. 157286399)

Number of chips

>TDD>> CFN-SFN observed time difference

MP Integer(0..4095) Number of frames

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10.3.7.7 Event results

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE event result MP>Intra-frequency measurement event results

Intra-frequency measurement event results 10.3.7.37

>Inter-frequency measurement event results

Inter-frequency measurement event results 10.3.7.17

>Inter-system measurement event results

Inter-system measurement event results 10.3.7.28

For IS-2000 results, include fields of the Pilot Strength Measurement Message from subclause 2.7.2.3.2.5 of TIA/EIA/IS-2000.5

>Traffic volume measurement event results

Traffic volume measurement event results 10.3.7.94

>Quality measurement event results

Quality measurement event results 10.3.7.82

>UE internal measurement event results

UE internal measurement event results 10.3.7.103

>LCS measurement event results

LCS measurement event results 10.3.7.58

CHOICE event result Condition under which the given event result is chosen

Intra-frequency measurement event results If measurement type = intra-frequency measurementInter-frequency measurement event results If measurement type = inter-frequency measurementInter-system measurement event results If measurement type = inter-system measurementTraffic volume measurement event results If measurement type = traffic volume measurementQuality measurement event results If measurement type = Quality measurementUE internal measurement event results If measurement type = UE internal measurementLCS measurement event results If measurement type = LCS measurement

10.3.7.8 FACH measurement occasion info

Information Element/Group name

Need Multi Type and reference

Semantics description

k_UTRA MP UTRAN DRX cycle length coefficient 10.3.3.47

Default value is the existing value of UTRAN DRX cycle length coefficient

Other RAT present in inter-system cell info

OP 1 to <maxOtherRAT>

>RAT type MP Enumerated(GSM, IS2000)

At least 14 spare values, Criticality: Reject, are needed

>k_Inter_Rat MP Integer(0..12)

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10.3.7.9 Filter coefficient

Information Element/Group name

Need Multi Type and reference

Semantics description

Filter coefficient MD Integer(0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 11, 13, 15, 17, 19)

Default value is 0At least one, criticality: reject, spare value needed for future extension

10.3.7.10 HCS Cell re-selection information

Information Element/Group name

Need Multi Type and reference

Semantics description

Penalty_time MD Integer(0, 10, 20, 30, 40, 50, 60)

Default value is 0 which means = not usedIn seconds

Temporary_offsets CV-Penalty used

>Temporary_offset1 Integer(10, 20, 30, 40, 50, 60, 70, infinity)

In seconds

>Temporary_offset2 CV-FDD-Quality-Measure

Integer(10, 20, 30, 40, 50, 60, 70, infinity)

Default value is Temporary_offset1

Condition ExplanationPenalty used Not allowed if IE Penalty time equals 'not used' else

MPFDD-Quality-Measure Presence is not allowed if the IE

"Cell_selection_and_reselection_quality_measure" has the value CPICH RSCP, otherwise the IE is mandatory and has a default value.

10.3.7.11 HCS neighbouring cell information

Information Element/Group name

Need Multi Type and reference

Semantics description

HCS_PRIO MD Integer (0..7) Default value = 0QHCS MD Integer (-

0..99)Default value = 0

HCS Cell Re-selection Information

OP HCS Cell Re-selection Information 10.3.7.10

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10.3.7.12 HCS Serving cell information

Information Element/Group name

Need Multi Type and Reference

Semantics description

HCS_PRIO MD Integer (0..7) Default value = 0QHCS MD Integer( 0..9

9)Default value = 0

TCRmax MD Integer(0, 30, 60, 120, 180, 240)

[s]Default value is 0 which means = not used

NCR CV-UE speed detector

Integer(1..16)

Default value = 8

TCrmaxHyst CV-UE speed detector

Integer(0, 10..70 by step of 10)

[s]Default value is 0 which means = not used

Condition ExplanationUE Speed detector Not allowed if TCrmax equals 'not used' else MP

10.3.7.13 Inter-frequency cell info list

Information Element/Group name

Need Multi Type and reference

Semantics description

Removed inter-frequency cells OP 1 .. <maxCellMeas>

>Inter-frequency cell id MP Integer(0 .. <MaxInterCells>)

New inter-frequency cells OP 1 to <maxCellMeas>

>Inter-frequency cell id MD Integer(0 .. <MaxInterCells>)

The first inter-frequency cell in the list corresponds to inter-frequency cell id 0, the second corresponds to inter-frequency cell id 1 etc

>Frequency info MD Frequency info 10.3.6.35

Default value is the value of the previous "frequency info" in the list (note : the first occurrence is then MP)

>Cell info MP Cell info 10.3.7.2

10.3.7.14 Inter-frequency event identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-frequency event identity MP Enumerated(2a, 2b, 2c, 2d, 2e, 2f)

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10.3.7.15 Inter-frequency measured results list

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-frequency measurement results

OP 1 to <maxFreq>

>Frequency info MD Frequency info 10.3.6.35

Default value is the value of the previous "frequency info" in the list (note : the first occurrence is then MP)

>UTRA carrier RSSI OP Integer(-95..-30)

In dBm

>Inter-frequency cell measurement results

OP 1 to <maxCellMeas>

>>Cell measured results MP Cell measured results 10.3.7.3

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10.3.7.16 Inter-frequency measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-frequency cell info list MP Inter-frequency cell info list 10.3.7.13

Measurement object

Inter-frequency measurement quantity

OP Inter-frequency measurement quantity 10.3.7.18

Inter-frequency reporting quantity OP Inter-frequency reporting quantity 10.3.7.21

Reporting cell status CV-reporting

Reporting cell status 10.3.7.86

Measurement validity OP Measurement validity 10.3.7.76

Inter-frequency set update OP Inter-frequency set update 10.3.7.22

CHOICE report criteria MP>Intra-frequency measurement reporting criteria

Intra-frequency measurement reporting criteria 10.3.7.39

>Inter-frequency measurement reporting criteria

Inter-frequency measurement reporting criteria 10.3.7.19

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

Condition Explanationreporting This IE is optional if the CHOICE "report criteria" is

equal to "periodical reporting criteria" or "No reporting", otherwise the IE is not needed

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10.3.7.17 Inter-frequency measurement event results

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-frequency event identity MP Inter-frequency event identity 10.3.7.34

Inter-frequency cells OP 1 to <maxFreq>

>Frequency info MP Frequency info 10.3.6.35

>Non frequency related measurement event results

MP Cell measurement event results 10.3.7.4

10.3.7.18 Inter-frequency measurement quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE reporting criteria MP>Intra-frequency reporting criteria>>Intra-frequency measurement quantity

MP Intra-frequency measurement quantity 10.3.7.38

>Inter-frequency reporting criteria>>Filter coefficient MP Filter

coefficient 10.3.7.9

>>CHOICE mode MP>>>FDD>>>>Measurement quantity for frequency quality estimate

MP Enumerated(CPICH Ec/N0, CPICH RSCP)

>>>TDD>>>>Measurement quantity for frequency quality estimate

MP Enumerated(Primary CCPCH RSCP)

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10.3.7.19 Inter-frequency measurement reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters required for each event

OP 1 to <maxMeasEvent>

>Inter-frequency event identity MP Inter-frequency event identity 10.3.7.14

>Threshold used frequency CV – clause 0

Integer(-115..0)

Ranges used depend on measurement quantity.CPICH Ec/No -24..0dBCPICH/Primary CCPCH RSCP -115..-25dBm

>W used frequency CV – clause 0

Real(0, 0.1..2.0 by step of 0.1)

>Hysteresis MP Real(0, 0.5..14.5 by step of 0.5)

In event 2a, 2b, 2c, 2d, 2e, 2f

>Time to trigger MP Time to trigger 10.3.7.89

Indicates the period of time between the timing of event detection and the timing of sending Measurement Report.Time in ms.

>Amount of reporting MP Integer(1, 2, 4, 8, 16, 32, 64, infinity)

>Reporting interval MP Integer(0, 250, 500, 1000, 2000, 4000, 8000, 16000)

Indicates the interval of periodical reporting when such reporting is triggered by an event. A zero value indicates that event triggered periodical reporting shall not be applied.Interval in milliseconds

>Reporting cell status OP Reporting cell status 10.3.7.86

>Parameters required for each non-used frequency

OP 1 to <maxFreq>

>>Threshold non used frequency

CV – clause 1

Integer(-115..0)

Ranges used depend on measurement quantity.CPICH Ec/No -24..0dBCPICH/Primary CCPCH RSCP -115..-25dBm

>>W non-used frequency CV-clause 1 Real(0, 0.1..2.0 by step of 0.1)

Condition ExplanationClause 0 2a,2b, 2d, or 2f, otherwise the IE is not neededClause 1 The IE is mandatory in if "inter frequency event

identity" is set to 2a, 2b, 2c or 2e, otherwise the IE is not needed

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10.3.7.20 Inter-frequency measurement system information

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-frequency measurement identity number

MD Measurement identity number 10.3.7.73

The inter-frequency measurement identity number has default value 2.

Inter-frequency cell info list OP Inter-frequency cell info list 10.3.7.13

Inter-frequency measurement quantity

OP Inter-frequency measurement quantity 10.3.7.18

Inter-frequency measurement reporting criteria

OP Inter-frequency measurement reporting criteria10.3.7.19

10.3.7.21 Inter-frequency reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

UTRA Carrier RSSI MP Boolean TRUE means report is requested

Frequency quality estimate MP Boolean TRUE means that report is requested

Non frequency related cell reporting quantities

MP Cell reporting quantities 10.3.7.5

10.3.7.22 Inter-frequency SET UPDATE

Information Element/group name

Need Multi Type and reference

Semantics description

UE autonomous update mode MP Enumerated (On, On with no reporting, Off)

Non autonomous update mode CV-Update>Radio link addition information OP 1 to

<maxRL>Radio link addition information required for each RL to add

>>Primary CPICH info MP Primary CPICH info 10.3.6.59

Note 1

>Radio link removal information OP 1 to <MaxRL>

Radio link removal information required for each RL to remove

>>Primary CPICH info MP Primary CPICH info 10.3.6.59

Note 1

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Condition ExplanationUpdate The IE is mandatory if IE"UE autonomous update

mode" is set to "Off", otherwise the IE is not needed.

10.3.7.23 Inter-system cell info list

Information Element/Group name

Need Multi Type and reference

Semantics description

Removed inter-system cells OP 1 to <maxCellMeas>

>Inter-system cell id MP Integer(0 .. <maxCellMeas> - 1)

New inter-system cells OP 1 to <maxCellMeas>

>Inter-system cell id MD Integer(0 .. <maxCellMeas> - 1)

The first inter-system cell in the list corresponds to inter-system cell id 0, the second corresponds to inter-system cell id 1 etc.

>CHOICE Radio Access Technology

MP At least one spare choice, Criticality: Reject, is needed.

>>GSM>>>Qoffsets,n MD Integer (-50..50) Default value if the value of

the previous Qoffsets,n in the list (NOTE: the first occurrence is then MP)

>>>HCS Neighbouring cell information

OP HCS Neighbouring cell information 10.3.7.11

>>>Qrxlevmin MP>>>Maximum allowed UL TX power

MP Maximum allowed UL TX power 10.3.6.38

>>> BSIC MP BSIC 10.3.8.2>>>BCCH ARFCN MP Integer (0..1023) GSM TS 04.18>>>Output power OP>>IS-2000>>>System specific measurement info

enumerated (frequency, timeslot, colour code, output power, PN offset)

For IS-2000, use fields from TIA/EIA/IS-2000.5,Section 3. 7.3.3.2.27, Candidate Frequency Neighbor List Message

10.3.7.24 Inter-system event identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system event identity MP Enumerated (3a, 3b, 3c, 3d)

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10.3.7.25 Inter-system info

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system info MP Enumerated (GSM)

At least 1 spare value, criticality = reject, required

10.3.7.26 Inter-system measured results list

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system measurement results

OP 1 to <maxOtherRAT>

>CHOICE system At least one spare value, criticality = reject, required

>>GSM>>>Frequency MP>>>GSM carrier RSSI OP bit string(6) RXLEV GSM TS 05.08>>>Pathloss OP Integer(46..1

58)In dB

>>>BSIC OP BSIC 10.3.8.2

>>>Observed time difference to GSM cell

OP Observed time difference to GSM cell 10.3.7.77

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10.3.7.27 Inter-system measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system cell info list OP Inter-system cell info list 10.3.7.23

Measurement object

Inter-system measurement quantity

OP Inter-system measurement quantity 10.3.7.29

Inter-system reporting quantity OP Inter-system reporting quantity 10.3.7.32

Reporting cell status CV-reporting

Reporting cell status 10.3.7.86

CHOICE report criteria MP>Inter-system measurement reporting criteria

Inter-system measurement reporting criteria 10.3.7.30

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

Condition Explanationreporting This IE is optional if the CHOICE "report criteria" is

equal to "periodical reporting criteria" or "No reporting", otherwise the IE is not needed

10.3.7.28 Inter-system measurement event results

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system event identity MP Inter-system event identity 10.3.7.24

Cells to report MP 1 to <maxCellMeas>

>Frequency MP>BSIC MP BSIC

10.3.8.2

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10.3.7.29 Inter-system measurement quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement quantity for UTRAN quality estimate

MP Intra-frequency measurement quantity 10.3.7.38

CHOICE system MP>GSM>>Measurement quantity MP Enumerated(

GSM Carrier RSSI, Pathloss)

>>Filter coefficient MP Filter coefficient 10.3.7.9

>>BSIC verification required MP Enumerated(required, not required)

Note 1

>IS2000>>TADD Ec/I0 MP Integer(0..63

)Admission criteria for neighbours, see subclause 2.6.6.2.6 of TIA/EIA/IS-2000.5

>>TCOMP Ec/I0 MP Integer(0..15)

Admission criteria for neighbours, see subclause 2.6.6.2.5.2 of TIA/EIA/IS-2000.5

>>SOFT SLOPE OP Integer(0..63)

Admission criteria for neighbours, see subclause 2.6.6.2.3 and 2.6.6.2.5.2 of TIA/EIA/IS-2000.5

>>ADD_INTERCEPT OP Integer(0..63)

Admission criteria for neighbours, see subclause 2.6.6.2.5.2 of TIA/EIA/IS-2000.5

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10.3.7.30 Inter-system measurement reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters required for each event

OP 1 to <maxMeasEvent>

>Inter-system event identity MP Inter-system event identity 10.3.7.24

>Threshold own system CV – clause 0

>W CV – clause 0

In event 3a

>Threshold other system CV – clause 1

In event 3a, 3b, 3c

>Hysteresis MP>Time to trigger MP Time to

trigger 10.3.7.89

Indicates the period of time between the timing of event detection and the timing of sending Measurement Report.

>Amount of reporting MP>Reporting interval MP Indicates the interval of

periodical reporting when such reporting is triggered by an event. A zero value indicates that event triggered periodical reporting shall not be applied.

>Reporting cell status OP Reporting cell status 10.3.7.86

Condition ExplanationClause 0 The IE is mandatory if " Inter-system event identity" is

set to "3a", otherwise the IE is not neededClause 1 The IE is mandatory if " Inter-system event identity" is

set to 3a, 3b or 3c, otherwise the IE is not needed

10.3.7.31 Inter-system measurement system information

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-system measurement identity number

MD Measurement identity number 10.3.7.73

The inter-system measurement identity number has default value 3.

Inter-system cell info list OP Inter-system cell info list 10.3.7.23

Inter-system measurement quantity

OP Inter-system measurement quantity 10.3.7.29

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10.3.7.32 Inter-system reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

UTRAN estimated quality MP BooleanCHOICE system MP At least one spare choice,

criticality = reject, required>GSM>>Pathloss MP Boolean>>Observed time difference to GSM cell

MP Boolean

>>GSM Carrier RSSI MP Boolean>>BSIC MP Boolean

10.3.7.33 Intra-frequency cell info list

Information Element/Group name

Need Multi Type and reference

Semantics description

Removed intra-frequency cells OP 1 to <maxCellMeas>

>Intra-frequency cell id MP Integer(0 .. <maxCellMeas> - 1)

New intra-frequency cell OP 1 to <maxCellMeas>

This information element must be present when "Intra-frequency cell info list" is included in the system information

>Intra-frequency cell id MD Integer(0 .. <maxCellMeas> - 1)

The first intra-frequency cell in the list corresponds to intra-frequency cell id 0, the second corresponds to intra-frequency cell id 1 etc.

>Cell info MP Cell info 10.3.7.2

10.3.7.34 Intra-frequency event identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency event identity MP Enumerated (1a,1b,1c,1d,1e,1f,1g,1h,1I)

10.3.7.35 Intra-frequency measured results list

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency measured results

OP 1 to <maxCellMeas>

>Cell measured results MP Cell measured results 10.3.7.3

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10.3.7.36 Intra-frequency measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency cell info list OP Intra-frequency cell info list 10.3.7.33

Measurement objectNot included for measurement of detected set.

Intra-frequency measurement quantity

OP Intra-frequency measurement quantity 10.3.7.38

Intra-frequency reporting quantity OP Intra-frequency reporting quantity 10.3.7.41

Reporting cell status CV-reporting

Reporting cell status 10.3.7.86

Measurement validity OP Measurement validity 10.3.7.76

CHOICE report criteria MP>Intra-frequency measurement reporting criteria

Intra-frequency measurement reporting criteria 10.3.7.39

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

Condition Explanationreporting This IE is optional if the CHOICE "report criteria" is

equal to "periodical reporting criteria" or "No reporting", otherwise the IE is not needed

10.3.7.37 Intra-frequency measurement event results

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency event identity MP Intra-frequency event identity 10.3.7.34

Cell measured event results MP Cell measured event results 10.3.7.4

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10.3.7.38 Intra-frequency measurement quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

Filter coefficient MP Filter coefficient 10.3.7.9

CHOICE mode MP>FDD>>Measurement quantity MP Enumerated(C

PICH Ec/N0, CPICH RSCP, Pathloss, UTRA Carrier RSSI)

Pathloss=Primary CPICH Tx power-CPICH RSCP

If used in Inter system measurement quantity only Ec/N0 an RSCP is allowed.If used in inter-frequency measurement quantity RSSI is not allowed.

>TDD>>Measurement quantity list MP 1 to 4>>>Measurement quantity MP Enumerated(Pr

imary CCPCH RSCP, Pathloss, Timeslot ISCP, UTRA Carrier RSSI)

Pathloss=Primary CCPCH Tx power-Primary CCPCH RSCPIf used in inter-frequency measurement quantity RSSI is not allowed.

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10.3.7.39 Intra-frequency measurement reporting criteria

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Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters required for each event

OP 1 to <maxMeasEvent>

> Intra-frequency event identity MP Intra-frequency event identity 10.3.7.34

>Triggering condition CV –clause 0

Enumerated(Active set cells, Monitored set cells, Active set cells and monitored set cells)

Indicates which cells can trigger the event

>Reporting Range CV – clause 2

Real(0..14.5 by step of 0.5)

In dB. In event 1a,1b.

>Cells forbidden to affect Reporting range

CV – clause 1

1 to <maxCellMeas>

In event 1a,1b

>>CHOICE mode MP>>>FDD>>>>Primary CPICH info MP Primary

CPICH info 10.3.6.59

>>>TDD>>>>Primary CCPCH info MP Primary

CCPCH info 10.3.6.56

>W CV – clause 2

Real(0.0..2.0 by step of 0.1)

>Hysteresis MP Real(0..7.5 by step of 0.5)

In dB.

> Threshold used frequency CV-clause 3

Integer (-115..165)

Range used depend on measurement quantity.CPICH RSCP -115 .. -40 dBmCPICH Ec/No -24..0 dBPathloss 30..165dBISCP -115..-25 dBm

>Reporting deactivation threshold

CV – clause 4

Integer(0, 1, 2, 3, 4, 5, 6, 7)

In event 1aIndicates the maximum number of cells allowed in the active set in order for event 1a to occur.0 means not applicable.

>Replacement activation threshold

CV - clause 5

Integer(0, 1, 2, 3, 4, 5, 6, 7)

In event 1cIndicates the minimum number of cells allowed in the active set in order for event 1c to occur.0 means not applicable

>Time to trigger MP Time to trigger 10.3.7.89

Indicates the period of time between the timing of event detection and the timing of sending Measurement Report. Time in ms

>Amount of reporting MP Integer(1, 2, 4, 8, 16, 32, 64, Infinity)

Measurement is "released" after the indicated amount of reporting from the UE itself.

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Information Element/Group name

Need Multi Type and reference

Semantics description

>Reporting interval MP Integer(0, 250, 500, 1000, 2000, 4000, 8000, 16000)

Indicates the interval of periodical reporting when such reporting is triggered by an event. Interval in milliseconds.0 means no periodical reporting

>Reporting cell status OP Reporting cell status 10.3.7.86

Condition ExplanationClause 0 The IE is mandatory if "Intra-frequency event identity"

is set to "1a","1b", "1e" or "1f", otherwise the IE is not needed

Clause 1 The IE is optional if "Intra-frequency event identity" is set to "1a" or "1b", otherwise the IE is not needed

Clause 2 The IE is mandatory if "Intra-frequency event identity" is set to "1a" or "1b", otherwise the IE is not needed

Clause 3 The IE is mandatory if "Intra-frequency event identity" is set to , "1e", "1f", "1h", "1i" or "1j", otherwise the IE is not needed

Clause 4 The IE is mandatory if "Intra-frequency event identity" is set to "1a", otherwise the IE is not needed

Clause 5 The IE is mandatory if "Intra-frequency event identity" is set to "1c", otherwise the IE is not needed

Clause 6 The IE is mandatory if "Intra-frequency event identity" is set to "1e" or "1f".

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10.3.7.40 Intra-frequency measurement system information

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency measurement identity number

MD Measurement identity number 10.3.7.73

The intra-frequency measurement identity number has default value 1.

Intra-frequency cell info list OP Intra-frequency cell info list 10.3.7.33

Intra-frequency measurement quantity

OP Intra-frequency measurement quantity 10.3.7.38

Intra-frequency reporting quantity for RACH Reporting

OP Intra-frequency reporting quantity for RACH Reporting 10.3.7.42

Maximum number of reported cells on RACH

OP Maximum number of reported cells on RACH 10.3.7.68

Reporting information for state CELL_DCH

OP Reporting information for state CELL_DCH 10.3.7.87

Note 1

10.3.7.41 Intra-frequency reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

Reporting quantities for active set cells

MP Cell reporting quantities 10.3.7.5

Reporting quantities for monitored set cells

MP Cell reporting quantities 10.3.7.5

Reporting quantities for detected set cells

OP Cell reporting quantities 10.3.7.5

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10.3.7.42 Intra-frequency reporting quantity for RACH reporting

Information Element/Group name

Need Multi Type and reference

Semantics description

SFN-SFN observed time difference

MP Enumerated(No report, type 1, type 2)

CHOICE mode MP>FDD>>Reporting quantity MP Enumerated(

CPICH Ec/N0, CPICH RSCP, Pathloss, No report)

>TDD>>Reporting quantity list MP 1 to 2>>>Reporting quantity MP Enumerated(

Timeslot ISCP, Primary CCPCH RSCP, No report)

10.3.7.43 LCS Cipher GPS Data Indicator

Information Element/Group name

Need Multi Type and Reference

Semantics description

Ciphering parameters OP>Ciphering Key Flag MP Bitstring(1) See note 1>Ciphering Serial Number MP Integer(0..65

535)The serial number used in the DES ciphering algorithm

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10.3.7.44 LCS Error

Information Element/Group name

Need Multi Type and Reference

Semantics description

Error reason MP Enumerated(There were not enough cells to be received when performing mobile based OTDOA-IPDL.There were not enough GPS satellites to be received, when performing UE-based GPS location.Location calculation assistance data missing.Requested method not supported.Undefined error.Location request denied by the user. Location request not processed by the user and timeout.

Additional Assistance Data OP structure and encoding as for the GPS Assistance Data IE in GSM 09.31 excluding the IEI and length octets

This field is optional. Its presence indicates that the target UE will retain assistance data already sent by the SRNC. The SRNC may send further assistance data for any new location attempt but need not resend previous assistance data. The field may contain the following:GPS Assistance Data

necessary additional GPS assistance data

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10.3.7.45 LCS GPS acquisition assistance

Information Element/Group name

Need Multi Type and Reference

Semantics description

CHOICE Reference Time>UTRAN reference time GPS Time of Week counted in

microseconds, given as GPS TOW in milliseconds and GPS TOW remainder in microseconds,UTRAN reference time = 1000 * GPS TOW msec + GPS TOW rem usec

>>GPS TOW msec MP Integer(0..6.048*108-1)

GPS Time of Week in milliseconds (rounded down to the nearest millisecond unit)

>>GPS TOW rem usec MP Integer(0..999)

GPS Time of Week in microseconds MOD 1000.

>>SFN MP Integer(0..4095)

>GPS reference time only>>GPS TOW MP Integer(0..6.

048*108-1)GPS Time of Week in milliseconds (rounded down to the nearest millisecond unit).

Satellite information MP 1 to <maxSat>

>SatID MP Enumerated(0..63)

Identifies the satellites

>Doppler (0th order term) MP Integer(-2048..2047)

Hz, scaling factor 2.5

>Extra Doppler OP>>Doppler (1st order term) MP Integer(-

42..21)Scaling factor 1/42

>>Doppler Uncertainty MP Real(12.5,25,50,100,200)

Hz

>Code Phase MP Integer(0..1022)

Chips, specifies the centre of the search window

>Integer Code Phase MP Integer(0..19)

1023 chip segments

>GPS Bit number MP Integer(0..3) Specifies GPS bit number (20 1023 chip segments)

>Code Phase Search Window MP Integer(1023,1,2,3,4,6,8,12,16,24,32,48,64,96,128,192)

Specifies the width of the search window.

>Azimuth and Elevation OP>>Azimuth MP Integer(0..31

)Degrees, scale factor 11.25

>>Elevation MP Integer(0..7) Degrees, scale factor 11.25

CHOICE Reference time Condition under which the given reference time is chosen

UTRAN reference time The reference time is relating GPS time to UTRAN time (SFN)

GPS reference time only The time gives the time for which the location estimate is valid

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10.3.7.46 LCS GPS almanac

Information Element/Group name

Need Multi Type and Reference

Semantics description

WNa MP Bit string(8)Satellite information MP 1 to

<maxSat>>SatID MP Enumerated(

0..63)Satellite ID

>e MP Bit string(16)>toa MP Bit string(8)>i MP Bit string(16)>OMEGADOT MP Bit string(16)>SV Health MP Bit string(8)>A1/2 MP Bit string(24)>OMEGA0 MP Bit string(24)>M0 MP Bit string(24)> MP Bit string(24)>af0 MP Bit string(11)>af1 MP Bit string(11)

10.3.7.47 LCS GPS assistance data

Information Element/Group name

Need Multi Type and Reference

Semantics description

LCS GPS reference time OP LCS GPS reference time 10.3.7.53

LCS GPS reference location OP Ellipsoid point with altitude defined in 23.032

The Reference Location field contains a 3-D location without uncertainty specified as per 23.032. The purpose of this field is to provide the UE with a priori knowledge of its location in order to improve GPS receiver performance.

LCS GPS DGPS corrections OP LCS GPS DGPS corrections 10.3.7.48

LCS GPS navigation model OP LCS GPS navigation model 10.3.7.51

LCS GPS ionospheric model OP LCS GPS ionospheric model 10.3.7.49

LCS GPS UTC model OP LCS GPS UTC model 10.3.7.54

LCS GPS almanac OP LCS GPS almanac 10.3.7.46

LCS GPS acquisition assistance OP LCS GPS acquisition assistance 10.3.7.45

LCS GPS real-time integrity OP LCS GPS real-time integrity 10.3.7.52

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10.3.7.48 LCS GPS DGPS corrections

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Information Element/Group name

Need Multi Type and Reference

Semantics description

GPS TOW MP Integer(0..604799)

Seconds. This field indicates the baseline time for which the corrections are valid.

Status/Health MP Enumerated(UDRE scale 1.0, UDRE scale 0.75, UDRE scale 0.5, UDRE scale 0.3, UDRE scale 0.2, UDRE scale 0.1, no data, invalid data)

This field indicates the status of the differential corrections

Satellite information MP 1 to <maxSat>

>SatID MP Enumerated(0..63)

Satellite ID

>IODE MP Bit string(8) This IE is the sequence number for the ephemeris for the particular satellite. The UE can use this IE to determine if new ephemeris is used for calculating the corrections that are provided in the broadcast message. This eight-bit IE is incremented for each new set of ephemeris for the satellite and may occupy the numerical range of [0, 239] during normal operations. See [13] for details

>UDRE MP Enumerated(UDRE 1.0 m,1.0m < UDRE 4.0m,4.0m < UDRE 8.0m,8.0m < UDRE)

User Differential Range Error. This field provides an estimate of the uncertainty (1-) in the corrections for the particular satellite. The value in this field shall be multiplied by the UDRE Scale Factor in the common Corrections Status/Health field to determine the final UDRE estimate for the particular satellite. See [13] for details

>PRC MP Integer(-2047..2047)

Scaling factor 0.32 meters See (different from [13])

>RRC MP Integer(-127.. 127)

Scaling factor 0.032 meters/sec (different from [13])

>Delta PRC2 MP Integer(-127..127)

Meters. The difference in the pseudorange correction between the satellite's ephemeris identified by IODE and the previous ephemeris two issues ago IODE –2.

>Delta RRC2 MP Integer(-7..7) Scaling factor 0.032 meters/sec. The difference in the rate of the change of the pseudorange correction between the satellite's ephemeris identified by IODE and the previous ephemeris two issues ago IODE –2.

>Delta PRC3 MP Integer(-127..127)

Meters. The difference in the pseudorange correction between the satellite's ephemeris identified by IODE

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and the previous ephemeris three issues ago IODE –3.

>Delta RRC3 MP Integer(-7..7) Scaling factor 0.032 meters/sec. The difference in the rate of the change of the pseudorange correction between the satellite's ephemeris identified by IODE and the previous ephemeris three issues ago IODE –3.

10.3.7.49 LCS GPS ionospheric model

Information Element/Group name

Need Multi Type and Reference

Semantics description

0 MP Bit string(8)1 MP Bit string(8)2 MP Bit string(8)3 MP Bit string(8)0 MP Bit string(8)1 MP Bit string(8)2 MP Bit string(8)3 MP Bit string(8)

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10.3.7.50 LCS GPS measurement

Information Element/Group name

Need Multi Type and Reference

Semantics description

Reference SFN OP Integer(0..4095)

The SFN for which the location is valid

GPS TOW msec MP Integer(0..6.048*108-1)

GPS Time of Week in milliseconds (rounded down to the nearest millisecond unit). This time is the GPS TOW measured by the UE. If the Reference SFN field is present it is the ms flank closest to the beginning of that frame.GPS Time of Week in microseconds = 1000 * GPS TOW msec + GPS TOW rem usec

GPS TOW rem usec CV-capability and request

Integer(0..999)

GPS Time of Week in microseconds MOD 1000.

Measurement Parameters MP 1 to <maxSat>

>Satellite ID MP Enumerated(0..63)

>C/No MP Integer(0..63)

the estimate of the carrier-to-noise ratio of the received signal from the particular satellite used in the measurement. It is given in whole dBs. Typical levels observed by UE-based GPS units will be in the range of 20 – 50 dB.

>Doppler MP Integer(-32768..32768)

Hz, scale factor 0.2.

>Whole GPS Chips MP Integer(0..1023)

Unit in GPS chips

>Fractional GPS Chips MP Integer(0..(210-1))

Scale factor 2-10

>Multipath Indicator MP Enumerated(NM, low, medium, high)

See note 1

>Pseudorange RMS Error MP Enumerated(range index 0..range index 63)

See note 2

Condition ExplanationCapability and request This field is included only if the UE has this capability

and if it was requested in the LCS reporting quantity

注 1: 下表给出了多路指示字段的映射关系:Value Multipath Indication

NM Not measuredLow MP error < 5mMedium 5m < MP error < 43mHigh MP error > 43m

注 2: 下表给出了 Pseudorange RMS Error 字段的比特映射关系:

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Range Index

Mantissa Exponent Floating-Point value, xi Pseudorange value, P

0 000 000 0.5 P < 0.5

1 001 000 0.5625 0.5 <= P < 0.5625

I X Y 0.5 * (1 + x/8) * 2y xi-1 <= P < xi

62 110 111 112 104 <= P < 112

63 111 111 -- 112 <= P

10.3.7.51 LCS GPS navigation model

Information Element/Group name

Need Multi Type and Reference

Semantics description

N_SAT MP Integer(1..16)

The number of satellites included in this IE

Satellite information MP 1 to <maxSat>

>SatID MP Enumerated(0..63)

Satellite ID

>Satellite Status MP Enumerated(NS_NN, ES_SN, ES_NN, REVD)

See note 1

>C/A or P on L2 MP Bit string(2) Standard formats as defined in [12]

>URA Index MP Bit string(4)>SV Health MP Bit string(6)>IODC MP Bit

string(10(1))

>L2 P Data Flag MP Bit string(1)>SF 1 Reserved MP Bit string(87)>TGD MP Bit string(8)>toc MP Bit

string(16(1))

>af2 MP Bit string(8)>af1 MP Bit string(16)>af0 MP Bit string(22)>Crs MP Bit string(16)>n MP Bit string(16)>M0 MP Bit string(32)>Cuc MP Bit string(16)>e MP Bit

string(32(1))

>Cus MP Bit string(16)>(A)1/2 MP Bit

string(32(1))

>toe MP Bit string(16(1))

>Fit Interval Flag MP Bit string(1)>AODO MP Bit string(5)>Cic MP Bit string(16)>OMEGA0 MP Bit string(32)>Cis MP Bit string(16)>i0 MP Bit string(32)>Crc MP Bit string(16)> MP Bit string(32)>OMEGAdot MP Bit string(24)>Idot MP Bit string(14)

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注 1: UE应按下表解释枚举符号:Symbol Interpretation

NS_NN New satellite, new Navigation ModelES_SN Existing satellite, same Navigation ModelES_NN Existing satellite, new Navigation ModelREVD Reserved

Condition ExplanationStatus Group Included unless status is ES_SN

10.3.7.52 LCS GPS real-time integrity

Information Element/Group name

Need Multi Type and Reference

Semantics description

Satellite information OP 1 to <maxSat>

N_BAD_SAT=the number of bad satellites included in this IE

>BadSatID MP Enumerated(0..63)

Satellite ID

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10.3.7.53 LCS GPS reference time

Information Element/Group name

Need Multi Type and Reference

Semantics description

GPS Week MP Integer(0..1023)

GPS TOW msec MP Integer(0..6.048*108-1)

GPS Time of Week in milliseconds (rounded down to the nearest millisecond unit).GPS Time of Week in microseconds = 1000 * GPS TOW msec + GPS TOW rem usec

GPS TOW rem usec MP Integer(0..999)

GPS Time of Week in microseconds MOD 1000.

SFN MP Integer(0..4095)

The SFN which the GPS TOW time stamps

GPS TOW Assist OP 1 to <maxSat>

Fields to help the UE with time-recovery (needed to predict satellite signal)

>SatID MP Enumerated(0..63)

Identifies the satellite for which the corrections are applicable

>TLM Message MP Bit string(14) A 14-bit value representing the Telemetry Message (TLM) being broadcast by the GPS satellite identified by the particular SatID, with the MSB occurring first in the satellite transmission.

>Anti-Spoof MP Boolean The Anti-Spoof and Alert flags that are being broadcast by the GPS satellite identified by SatID.

>Alert MP Boolean>TLM Reserved MP Bit string(2) Two reserved bits in the TLM

Word being broadcast by the GPS satellite identified by SatID, with the MSB occurring first in the satellite transmission.

10.3.7.54 LCS GPS UTC model

Information Element/Group name

Need Multi Type and Reference

Semantics description

A1 MP Bit string(24)A0 MP Bit string(32)tot MP Bit string(8)tLS MP Bit string(8)WNt MP Bit string(8)WNLSF MP Bit string(8)DN MP Bit string(8)tLSF MP Bit string(8)

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10.3.7.55 LCS IPDL parameters

Information Element/Group name

Need Multi Type and Reference

Semantics description

IP spacing MP Integer(5,7,10,15,20,30,40,50)

The IPs are repeated every IP spacing frame.

IP length MP Integer(5,10) The length in symbols of the idle periods

IP offset MP Integer(0..9) Relates the BFN and SFN, should be same as T_cell defined in 25.402

Seed MP Integer(0..63)

Seed used to start the random number generator

Burst mode parameters OP>Burst Start MP Integer(0..15

)The frame number where the 1st Idle Period Burst occurs within an SFN cycle. Scaling factor 256.

>Burst Length MP Integer(10..25)

Number of Idle Periods in a 'burst' of Idle Periods

>Burst freq MP Integer(1..16)

Number of 10ms frames between consecutive Idle Period bursts. Scaling factor 256.

The function IP_position(x) described below yields the position of the x th Idle Period relative to a) the start of the SFN cycle when continuous mode or b) the start of a burst when in burst mode. The operator "%" denotes the modulo operator. Regardless of mode of operation, the Idle Period pattern is reset at the start of every SFN cycle. Continuous mode can be considered as a specific case of the burst mode with just one burst spanning the whole SFN cycle. Note also that x will be reset to x=1 for the first idle period in a SFN cycle for both continuous and burst modes and will also, in the case of burst mode, be reset for the first Idle Period in every burst.Max_dev=150-IP lengthrand(x)= (106.rand(x-1) + 1283)mod6075,rand(0)=seedIP_position(x) = x*IP_spacing*150 + rand(xmod64)modMax_dev+IP_offset

10.3.7.56 LCS measured results

Information Element/Group name

Need Multi Type and reference

Semantics description

LCS Multiple Sets OP LCS Multiple Sets 10.3.7.59

LCS reference cell Identity OP Primary CPICH Info 10.3.6.59

LCS OTDOA measurement OP LCS OTDOA measurement 10.3.7.62

LCS Position OP LCS Position 10.3.7.65

LCS GPS measurement OP LCS GPS measurement 10.3.7.50

LCS error OP LCS error 10.3.7.44

Included if LCS error occurred

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10.3.7.57 LCS measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

LCS reporting quantity MP LCS reporting quantity 10.3.7.67

CHOICE reporting criteria MP>LCS reporting criteria LCS

reporting criteria 10.3.7.66

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

LCS OTDOA assistance data OP LCS OTDOA assistance data 10.3.7.60

LCS GPS assistance data OP LCS GPS assistance data 10.3.7.47

10.3.7.58 LCS measurement event results

Information Element/Group name

Need Multi Type and Reference

Semantics description

CHOICE Event ID MP>7a>>LCS Position MP LCS Position

10.3.7.65>7b >> LCS OTDOA measurement MP LCS OTDOA

measurement 10.3.7.62

>7c>> LCS GPS measurement MP LCS GPS

measurement 10.3.7.50

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10.3.7.59 LCS multiple sets

Information Element/Group name

Need Multi Type and Reference

Semantics description

Number of OTDOA-IPDL/GPS Measurement Information Sets

MP Integer(2..3)

Number of Reference Cells MP Integer(1..3)Reference Cell relation to Measurement Elements

OP Enumerated( First reference cell is related to first and second OTDOA-IPDL/GPS Measurement Information Sets, and second reference cell is related to third OTDOA-IPDL/GPS Measurement Information Sets.First reference cell is related to first and third OTDOA-IPDL/GPS Measurement Information Sets, and second reference cell is related to second OTDOA-IPDL/GPS Measurement Information Sets.First reference cell is related to first OTDOA-IPDL/GPS Measurement Information Sets, and second reference cell is related to second and third OTDOA/GPS Measurement Information Sets.)

This field indicates how the reference cells listed in this element relate to measurement sets later in this component. This field is conditional and included only if Number of OTDOA-IPDL/GPS Measurement Information Sets is '3' and Number of Reference cells is '2'. If this field is not included, the relation between reference cell and Number of OTDOA-IPDL/GPS Measurement Information Sets is as follows:If there are three sets and three reference cells -> First reference cell relates to first set, second reference cell relates to second set, and third reference cell relates to third set. If there are two sets and two reference cells -> First reference cell relates to first set, and second reference cell relates to second set.If there is only one reference cell and 1-3 sets -> this reference cell relates to all sets.

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10.3.7.60 LCS OTDOA assistance data

Information Element/Group name

Need Multi Type and Reference

Semantics description

LCS OTDOA reference cell for assistance data

OP LCS OTDOA reference cell for assistance data 10.3.7.64

LCS OTDOA measurement assistance data

OP 1 to <maxCellMeas>

LCS OTDOA measurement assistance data 10.3.7.63

LCS IPDL parameters OP LCS IPDL parameters 10.3.7.55

If this element is not included there are no idle periods present

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10.3.7.61 LCS OTDOA assistance for SIB

Information Element/Group name

Need Multi Type and Reference

Semantics description

Ciphering parameters OP Determines if DGPS correction fields are ciphered

>Ciphering Key Flag MP Bitstring(1) See note 1>Ciphering Serial Number MP Integer(0..65

535)The serial number used in the DES ciphering algorithm

Search Window Size MP Integer(10, 20, 30, 40, 50, 60,70, infinity)

Specifies the maximum size of the search window in chips.Infinity means more

Reference Cell Position MP Ellipsoid point or Ellipsoid point with altitude as defined in 23.032

The position of the antenna which defines the serving cell. Used for the UE based method.

LCS IPDL parameters OP LCS IPDL parameters 10.3.7.55

If this element is not included there are no idle periods present

Cells to measure on MP 1 to <maxCellMeas>

>SFN-SFN drift OP Real(0,+0.33,+0.66,+1,+1.33,+1.66,+2,+2.5,+3,+4,+5,+7,+9,+11,+13,+15,-0.33,-0.66,-1,-1.33,-1.66,-2,-2.5,-3,-4,-5,-7,-9,-11,-13,-15)

The SFN-SFN drift value indicate the relative time drift in meters per second. Positive and negative values can be indicated as well as no drift value.

>Primary CPICH info MP Primary CPICH info 10.3.6.59

>Frequency info OP Frequency info 10.3.6.35

Default the same. Included if different

>SFN-SFN observed time difference

MP SFN-SFN observed time difference type 1. 10.3.7.88

Gives the relative timing compared to the reference cell

>Fine SFN-SFN MP Real(0,0.25,0.5,0.75)

Gives finer resolution for UE-BasedIn chips

>Cell Position MD Default = Same as previous cell

>>Relative North MP Integer(-32767..32767)

Seconds, scale factor 0.03. Relative position compared to ref. cell.

>>Relative East MP Integer(-32767..327676)

Seconds, scale factor 0.03. Relative position compared to ref. cell.

>>Relative Altitude MP Integer(-4095..4095)

Relative altitude in meters compared to ref. cell.

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10.3.7.62 LCS OTDOA measurement

Information Element/Group name

Need Multi Type and Reference

Semantics description

SFN MP Integer(0..4095)

SFN during which the last measurement was performed

UE Rx-Tx time difference MP Real(876..1172 by step of 0.25)

The UE Rx-Tx timing can be used to determine the propagation delayIn chips

Quality type OP Enumerated(STD_10,STD_50,CPICH Ec/N0)

Type of quality in the quality field, default=DEFAULT_QUALITY

CHOICE Quality type MP>STD_10>>Reference Quality 10 MP Integer(10..3

20 by step of 10)

Std of TOA measurements from the cell

>STD_50>>Reference Quality 50 MP Integer(50..1

600 by step of 50)

Std of TOA measurements from the cell

>CPICH Ec/N0>>CPICH Ec/N0 MP Enumerated(

<–24, -24 dB CPICH Ec/No < –23 dB,.. –1 dB CPICH Ec/No < –0 dB, >=0 dB)

CPICH Ec/N0 for the measurement

>DEFAULT_QUALITY>>Reference Quality MP Enumerated(

0-19 meters,20-39 meters,40-79 meters,80-159 meters,160-319 meters,320-639 meters,640-1319 metersover 1320 meters)

Estimated error in meters.

Neighbors MP 0..maxCellMeas

Number of neighbors included in this IE

>Neighbor Identity OP Primary CPICH info 10.3.6.59

If this field is left out it the identity is the same as in the first set of multiple sets.

>Neighbor Quality MP Bit string(depends on Quality type)

Quality of the OTDOA from the neighbor cell.

>SFN-SFN observed time difference

MP SFN-SFN observed time difference 10.3.7.88

Gives the timing relative to the reference cell. Only type 2 is allowed. Type 2 means that only the slot timing is accounted for

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CHOICE Quality type Condition under which the given quality type is chosen

STD_10 Chosen when the quality type is standard deviation with a step-size of 10 m

STD_50 Chosen when the quality type is standard deviation with a step-size of 50 m

CPICH Ec/N0 Chosen when the quality type is CPICH Ec/N0Default Chosen if the quality type field is not included.

10.3.7.63 LCS OTDOA measurement assistance data

Information Element/Group name

Need Multi Type and Reference

Semantics description

Primary CPICH info MP Primary CPICH info 10.3.6.59

Frequency info OP Frequency info 10.3.6.35

Default the same. Included if different

SFN-SFN observed time difference

MP SFN-SFN observed time difference type 1. 10.3.7.88

Gives the relative timing compared to the reference cell

Fine SFN-SFN OP Real(0,0.25,0.5,0.75)

Gives finer resolution for UE-Based

Search Window Size MP Integer(10, 20, 30, 40, 50, 60,70, infinity)

Specifies the maximum size of the search window in chips.Infinity means more

Relative North OP Integer(-20000..20000)

Seconds, scale factor 0.03. Relative position compared to ref. cell.

Relative East OP Integer(-20000..20000)

Seconds, scale factor 0.03. Relative position compared to ref. cell.

Relative Altitude OP Integer(-4000..4000)

Relative altitude in meters compared to ref. cell.

10.3.7.64 LCS OTDOA reference cell for assistance data

Information Element/Group name

Need Multi Type and Reference

Semantics description

Primary CPICH info MP Primary CPICH info 10.3.6.59

Frequency info OP Frequency info 10.3.6.35

Default the same. Included if different

Cell Position OP Ellipsoid point or Ellipsoid point with altitude as defined in 23.032

The position of the antenna which defines the cell. Can be used for the UE based method.

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10.3.7.65 LCS position

Information Element/Group name

Need Multi Type and Reference

Semantics description

Reference SFN MP Integer(0..4095)

The SFN for which the location is valid

GPS TOW msec CV-Capability and request

Integer(0..6.048*108-1)

GPS Time of Week in milliseconds (rounded down to the nearest millisecond unit). This time-stamps the beginning of the frame defined in Reference SFNGPS Time of Week in microseconds = 1000 * GPS TOW msec + GPS TOW rem usec

GPS TOW rem usec CV-Capability and request

Integer(0..999)

GPS Time of Week in microseconds MOD 1000.

Position estimate MP 23.032, allowed types areEllipsoid Point;Ellipsoid point with uncertainty circle;Ellipsoid point with uncertainty ellipse;Ellipsoid point with altitude;Ellipsoid point with altitude and uncertainty ellipse.

Condition ExplanationCapability and request This field is included only if the UE has this capability

and if it was requested in the LCS reporting quantity and if the method was UE-based GPS

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10.3.7.66 LCS reporting criteria

Information Element/Group name

Need Multi Type and Reference

Semantics description

Parameters required for each event

OP 1 to <maxMeasEvent>

>Event ID MP Enumerated (7a,7b,7c)

7a=Position change7b=SFN-SFN change,7c=SFN-GPS TOW change

>Amount of reporting MP Integer(1, 2, 4, 8, 16, 32, 64,infinite)

>Report first fix MP Boolean If true the UE reports the position once the measurement control is received, and then each time an event is triggered.

>Measurement interval MP Integer(5,15,60,300,900,1800,3600,7200)

Indicates how often the UE should make the measurementIn seconds

>CHOICE Event ID>>7a>>>Threshold Position Change MP Integer(10,2

0,30,40,50,100,200,300,500,1000,2000,5000,10000,20000,50000,100000)

Indicated how much the position should change compared to last reported position fix in order to trigger the event.

>>7b>>>Threshold SFN-SFN change MP Real(0.25,0.

5,1,2,3,4,5,10,20,50,100,200,500,1000,2000,5000)

Chips. Indicates how much the SFN-SFN measurement of ANY measured cell is allowed to change before the event is triggered.

>>7c>>>Threshold SFN-GPS TOW MP Integer(1,2,3

,5,10,20,50,100)

Time in ms. When the GPS TOW and SFN timer has drifted apart more than the specified value the event is triggered)

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10.3.7.67 LCS reporting quantity

Information Element/Group name

Need Multi Type and Reference

Semantics description

Method Type MP Enumerated(UE assisted,UE based, UE based is preferred but UE assisted is allowed,UE assisted is preferred but UE based is allowed)

Positioning Methods MP Enumerated(OTDOA,GPSOTDOA or GPS)

Indicates which location method or methods should be used. The third option means that both can be reported. OTDOA includes IPDL if idle periods are present.

Response Time MP Integer(1,2,4, 8, 16, 32, 64, 128)

Indicates the desired response time in seconds

Accuracy CV Bit string(7) Mandatory in all cases except when Method Type is UE assisted, then it is optional. 23.032

GPS timing of Cell wanted MP Boolean If true the SRNC wants the UE to report the SFN-GPS timing of the reference cell. This is however optional in the UE.

Multiple Sets MP Boolean This field indicates whether UE is requested to send multiple OTDOA/GPS Measurement Information Sets. The maximum number of measurement sets is three. This is field is mandatory. UE is expected to include the current measurement set.

Environment Characterization OP Enumerated(possibly heavy multipath and NLOS conditions,no or light multipath and usually LOS conditions, not defined or mixed environment)

The first category correspond to e.g. Urban or Bad Urban channels.

The second category corresponds to Rural or Suburban channels

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10.3.7.68 Maximum number of reported cells on RACH

Information Element/Group name

Need Multi Type and reference

Semantics description

Maximum number of reported cells

MP Enumerated (no report, current cell, current cell + best neighbour, current cell+2 best neighbours, …, current cell+6 best neighbours)

10.3.7.69 Measured results

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE Measurement MP>Intra-frequency measured results list

Intra-frequency measured results list 10.3.7.35

>Inter-frequency measured results list

Inter-frequency measured results list 10.3.7.15

>Inter-system measured results list

Inter-system measured results list 10.3.7.26

>Traffic volume measured results list

Traffic volume measured results list 10.3.7.92

>Quality measured results list Quality measured results list 10.3.7.80

>UE Internal measured results UE Internal measured results 10.3.7.101

>LCS measured results LCS measured results 10.3.7.56

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10.3.7.70 Measured results on RACH

Information Element/group name

Need Multi Type and reference

Semantics description

Measurement result for current cellCHOICE mode MP>FDD>>CHOICE measurement quantity

MP

>>>CPICH Ec/N0 Integer(-20..0)

In dB

>>>CPICH RSCP Integer(-115..-40)

In dBm

>>>Pathloss Integer(46..158)

In dB

>TDD>>Timeslot List OP 1 to 14>>>Timeslot ISCP MP Timeslot

ISCP info 10.3.7.90

The UE shall report the Timeslot ISCP in the same order as indicated in the cell info

>>Primary CCPCH RSCP OP Primary CCPCH RSCP info 10.3.7.79

Measurement results for monitored cells

OP 1 to 7

>SFN-SFN observed time difference

OP SFN-SFN observed time difference 10.3.7.88

It is absent for current cell

>CHOICE mode MP>>FDD>>>Primary CPICH info MP Primary

CPICH info 10.3.6.59

>>>CHOICE measurement quantity

OP It is absent for current cell

>>>>CPICH Ec/N0 Integer(-20..0)

In dB

>>>>CPICH RSCP Integer(-115..-40)

In dBm

>>>>Pathloss Integer(46..158)

In dB

>>TDD>>>Cell parameters Id MP Cell

parameters Id 10.3.6.8

>>>Primary CCPCH RSCP MP Primary CCPCH RSCP info 10.3.7.79

10.3.7.71 Measurement Command

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement command MP Enumerated(Setup,Modify,Release)

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10.3.7.72 Measurement control system information

Information element/Group name

Need Multi Type and reference

Semantics description

Use of HCS MP Enumerated (Not used, used)

Indicates if the serving cell belongs to a HCS structure

Cell_selection_and_reselection_quality_measure

MP Enumerated (CPICH Ec/N0, CPICH RSCP)

Choice of measurement (CPICH Ec/N0 or CPICH RSCP) to use as quality measure Q.

Intra-frequency measurement system information

OP Intra-frequency measurement system information 10.3.7.40

Inter-frequency measurement system information

OP Inter-frequency measurement system information10.3.7.20

Inter-system measurement system information

OP Inter-system measurement system information 10.3.7.31

Traffic volume measurement system information

OP Traffic volume measurement system information 10.3.7.98

UE Internal measurement system information

OP UE Internal measurement system information 10.3.7.106

10.3.7.73 Measurement Identity Number

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement identity number MP Integer(1..16)

10.3.7.74 Measurement reporting mode

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement Report Transfer Mode

MP enumerated (Acknowledged mode RLC, Unacknowledged mode RLC)

Periodical Reporting / Event Trigger Reporting Mode

MP Enumerated (Periodical reporting, Event trigger)

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10.3.7.75 Measurement Type

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement Type MP Enumerated(Intra-frequency,Inter-frequency,Inter-system,Traffic volume,Quality,UE internal, LCS)

10.3.7.76 Measurement validity

Information Element/Group name

Need Multi Type and reference

Semantics description

Resume/release MP Enumerated('resume', 'release')

Indicates whether a given measurement identifier should be released after transitions to CELL_DCH and/or transitions from CELL_DCH state.

UE state CV –Resume

Enumerated(CELL_DCH, all states except CELL_DCH, all states)

Indicates the states, in which measurement reporting shall be conducted.The values 'all states except CELL_DCH' and 'all states' are used for measurement type 'traffic volume reporting'.

Condition ExplanationResume This IE is mandatory if "Resume/Release" = Resume,

otherwise the IE is not needed

10.3.7.77 Observed time difference to GSM cell

Information Element/Group name

Need Multi Type and reference

Semantics description

Observed time difference to GSM cell

OP Real(0.0..4095*3060/(4096*13 by step of 3060/(4096*13))

In ms

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10.3.7.78 Periodical reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Amount of reporting MD Integer(1, 2, 4, 8, 16, 32, 64, Infinity)

Measurement is "released" after the indicated amount of reporting from the UE itself.The default value is infinity.

Reporting interval MP Integer(250, 500, 1000, 2000, 3000, 4000, 6000, 8000, 12000, 16000, 20000, 24000, 28000, 32000, 64000)

Indicates the interval of periodical report.Interval in milliseconds

10.3.7.79 Primary CCPCH RSCP info

Information Element/Group name

Need Multi IE type and reference

Semantics description

Primary CCPCH RSCP MP Enumerated (-115, -114 ... –25)

Granularity 1dB

10.3.7.80 Quality measured results list

Information Element/Group name

Need Multi Type and reference

Semantics description

BLER measurement results OP 1 to <maxTrCH>

>DL Transport channel identity MP Transport channel identity 10.3.5.18

>DL Transport Channel BLER OP Real(0.00..1.00, by ste p of 0.02)

In dB=-Log10(Transport channel BLER)

CHOICE mode>FDD>>SIR OP Integer(-

10..20)In dB

>TDD>>SIR measurement results OP 1 to

<MaxCCTrCH>

SIR measurements for DL CCTrCH

>>>TFCS ID MP Enumerated (1...8)

>>>Timeslot list MP 1 to <maxTS>

for all timeslot on which the CCTrCH is mapped on

>>>>SIR MP Integer(-10...20)

the UE shall report in ascending timeslot order

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10.3.7.81 Quality measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

Quality reporting quantity OP Quality reporting quantity 10.3.7.84

CHOICE report criteria MP>Quality measurement reporting criteria

Quality measurement reporting criteria 10.3.7.83

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

10.3.7.82 Quality measurement event results (FFS)

Information Element/Group name

Need Multi Type and reference

Semantics description

Transport channels causing the event

OP 1 to <maxTrCH>

>Transport channel identity MP Transport channel identity 10.3.5.18

10.3.7.83 Quality measurement reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters sent for each transport channel

OP 1 to <maxTrCH>

>Tranpsport channel identity MP Transport channel identity 10.3.5.18

>Total CRC MP Integer(1..512)

Number of CRCs

>Bad CRC MP Integer(1..512)

Number of CRCs

>Pending after trigger MP Integer(1..512)

Number of CRCs

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10.3.7.84 Quality reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

DL Transport Channel BLER MP Boolean TRUE means report requestedTransport channels for BLER reporting

CV BLER reporting

1 to <maxTrCH>

The default, if no transport channel identities are present, is that the BLER is reported for all downlink transport channels

>DL Transport channel identity MP Transport channel identity 10.3.5.18

CHOICE mode>FDD>>SIR MP Boolean TRUE means report requested>TDD>>SIR measurement list OP 1 to

<maxCCTrCH>

SIR measurements shall be reported for all listed TFCS IDs

>>>TFCS ID MP Enumerated (1...8)

Condition ExplanationBLER reporting This information element is absent if 'DL Transport

Channel BLER' is 'False' and optional, if 'DL Transport Channel BLER' is 'True'

10.3.7.85 Reference time difference to cell

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE accuracy MP>40 chips>>Reference time difference MP Integer(0..384

00 by step of 40)

In chips

>256 chips>>Reference time difference MP Integer(0..

38400 by step of 256)

In chips

>2560 chips>>Reference time difference MP Integer(0..

38400 by step of 2560)

In chips

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10.3.7.86 Reporting Cell Status

Information Element/Group name

Need Multi Type and reference

Semantics description

Choice reporting cell MP>Within active set cells>> Maximum number of reporting cells type1

MP Integer(1..6)

>Within monitored set cells on used frequency>> Maximum number of reporting cells type1

MP Integer(1..6)

>Within monitored cells on used frequency>> Maximum number of reporting cells type1

MP Integer(1..6)

>Include all active set cells + within monitored set cells on used frequency>> Maximum number of reporting cells type3

MP Enumerated (virtual/active set cells+1, virtual/active set cells+2, …., virtual/active set cells+6)

>Within virtual active set cells>> Maximum number of reporting cells type1

MP Integer(1..6)

>Within monitored set cells on non-used frequency>> Maximum number of reporting cells type1

MP Integer(1..6)

>Within monitored cells on non-used frequency>> Maximum number of reporting cells type1

MP Integer(1..6)

>Include all virtual active set cells + within monitored set cells on non-used frequency>> Maximum number of reporting cells type3

MP Enumerated (virtual/active set cells+1, virtual/active set cells+2, …., virtual/active set cells+6)

>Within active set cells or within virtual active set cells>> Maximum number of reporting cells type2

MP Integer (1..12)

>Within monitored cells on used frequency or within monitored cells on non-used frequency>> Maximum number of reporting cells type2

MP Integer(1..12)

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10.3.7.87 Reporting information for state CELL_DCH

Information Element/Group name

Need Multi Type and reference

Semantics description

Intra-frequency reporting quantity

MP Intra-frequency reporting quantity 10.3.7.41

Measurement Reporting Mode MP Measurement Reporting Mode 10.3.7.74

CHOICE report criteria MP>Intra-frequency measurement reporting criteria

Intra-frequency measurement reporting criteria 10.3.7.39

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

10.3.7.88 SFN-SFN observed time difference

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE type MP>Type 1 Integer(0..9830399) Number of chips>Type 2 Real(-

1279.75..1280.0 by step of 0.25)

Number of chips

10.3.7.89 Time to trigger

Information Element/Group name

Need Multi Type and reference

Semantics description

Time to trigger MP Integer(0, 10, 20, 40, 60, 80, 100, 120, 160, 200, 240, 320, 640, 1280, 2560, 5000)

Indicates the period of time between the timing of event detection and the timing of sending Measurement Report. Time in ms

10.3.7.90 Timeslot ISCP info

Information Element/Group name

Need Multi IE type and reference

Semantics description

Timeslot ISCP MP Integer (-115... –25)

In dBm

10.3.7.91 Traffic volume event identity

Information Element/Group name

Need Multi Type and reference

Semantics description

Traffic volume event identity MP Enumerated(4a, 4b)

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10.3.7.92 Traffic volume measured results list

Information Element/Group name

Need Multi Type and reference

Semantics description

Traffic volume measurement results

OP 1 to <maxRB>

>RB Identity MP RB Identity 10.3.4.16

>RLC buffers payload OP Enumerated(0, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2K, 4K, 8K, 16K, 32K, 64K, 128K, 256K, 512K, 1024K)

In bytesAnd N Kbytes = N*1024 bytes

>Average RLC buffer payload OP Enumerated(0, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2K, 4K, 8K, 16K, 32K, 64K, 128K, 256K, 512K, 1024K)

In bytesAnd N Kbytes = N*1024 bytes

>Variance of RLC buffer payload OP Enumerated(0, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2K, 4K, 8K, 16K)

In bytesAnd N Kbytes = N*1024 bytes

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10.3.7.93 Traffic volume measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

Traffic volume measurement Object

OP Traffic volume measurement Object 10.3.7.95

Traffic volume measurement quantity

OP Traffic volume measurement quantity 10.3.7.96

Traffic volume reporting quantity OP Traffic volume reporting quantity 10.3.7.99

Measurement validity OP Measurement validity 10.3.7.76

CHOICE report criteria MP>Traffic volume measurement reporting criteria

Traffic volume measurement reporting criteria 10.3.7.97

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

10.3.7.94 Traffic volume measurement event results

Information Element/Group name

Need Multi Type and reference

Semantics description

UL Transport Channel causing the event

MP Transport channel identity 10.3.5.18

Traffic volume event identity MP Traffic volume event identity 10.3.7.91

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10.3.7.95 Traffic volume measurement object

Information Element/Group name

Need Multi Type and reference

Semantics description

Traffic volume measurement objects

MP 1 to <maxTrCH>

>UL Target Transport Channel ID

MP Transport channel identity 10.3.5.18

10.3.7.96 Traffic volume measurement quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

Measurement quantity MP Enumerated(RLC buffer payload, Average RLC buffer payload, Variance of RLC buffer payload)

Time Interval to take an average or a vaiance

CV-A/V Integer(20, 40, ..260, by steps of 20)

In msAt least 3 spare values, Criticality: reject, are needed.

Condition ExplanationA/V This IE is present when "Average RLC buffer" or

"Variance of RLC buffer payload" is chosen.

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10.3.7.97 Traffic volume measurement reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters sent for each transport channel

OP 1 to <maxTrCH>

>UL Transport Channel ID OP Transport channel identity 10.3.5.18

If the transport channel identity is not included, the measurement reporting criteria are applied to all transport channels.

>Parameters required for each Event

OP 1 to <maxMeasperEvent>

>>Traffic volume event identity MP Traffic volume event identity 10.3.7.91

>>Reporting Threshold MP Enumerated(8,16,32,64,128,256,512,1024,2K,3K,4K,6K,8K,12K,16K,24K,32K,48K,64K,96K,128K,192K,256K,384K,512K,768K)

Threshold in bytes And N Kbytes = N*1024 bytes

Time to trigger OP Time to trigger 10.3.7.89

Indicates the period of time between the timing of event detection and the timing of sending Measurement Report.Time in ms

Pending time after trigger OP Integer(250, 500, 1000, 2000, 4000, 8000, 16000)

Time in seconds. Indicates the period of time during which it is forbidden to send any new measurement reports with the same measurement ID even if the triggering condition is fulfilled again. Time in milliseconds

Tx interruption after trigger OP Integer (250, 500, 1000, 2000, 4000, 8000, 16000)

Time in milliseconds. Indicates whether or not the UE shall block DTCH transmissions on the RACH after a measurement report is triggered.

Amount of reporting OP Integer(1, 2, 4, 8, 16, 32, 64, Infinity)

Measurement is "released" after the indicated amount of reporting from the UE itself.

10.3.7.98 Traffic volume measurement system information

Information Element/Group name

Need Multi Type and reference

Semantics description

Traffic volume measurement identity number

MD Measurement identity number 10.3.7.73

The traffic volume measurement identity number has default value 4.

Traffic volumemeasurement objects

OP Traffic volume

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measurement objects 10.3.7.95

Traffic volumemeasurement quantity

OP Traffic volume measurement quantity 10.3.7.96

Traffic volume reporting quantity OP Traffic volume reporting quantity 10.3.7.99

Measurement validity OP Measurement validity 10.3.7.76

Measurement Reporting Mode MP Measurement Reporting Mode 10.3.7.74

CHOICE reporting criteria MP>Traffic volume measurement reporting criteria

Traffic volume measurement reporting criteria 10.3.7.97

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

10.3.7.99 Traffic volume reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

RLC buffer payload for each RB MP BooleanAverage RLC buffer payload for each RB

MP Boolean

Variance of RLC buffer payload for each RB

MP Boolean

10.3.7.100 UE internal event identity

Information Element/Group name

Need Multi Type and reference

Semantics description

UE internal event identity MP Enumerated(6a,6b,6c,6d,6e, 6f, 6g)

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10.3.7.101 UE internal measured results

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>UE Transmitted Power OP Integer(-

50..33)UE transmitted power In dBm

>>UE Rx-Tx report entries OP 1 to <maxRL>

>>>Primary CPICH info MP Primary CPICH info 10.3.6.59

Primary CPICH info for each cell included in the active set

>>>UE Rx-Tx time difference MP UE Rx-Tx time difference 10.3.7.108

UE Rx-Tx time difference in chip for each RL included in the active set

>TDD>>UE transmitted Power list OP 1 to

<maxTS>

UE transmitted power for each used uplink timeslot in ascending timeslot number order

>>>UE transmitted power MP UE transmitted power info 10.3.7.109

>>Applied TA OP Uplink Timing Advance 10.3.6.93

10.3.7.102 UE internal measurement

Information Element/Group name

Need Multi Type and reference

Semantics description

UE internal measurement quantity

OP UE internal measurement quantity 10.3.7.104

UE internal reporting quantity OP UE internal reporting quantity 10.3.7.107

CHOICE report criteria MP>UE internal measurement reporting criteria

UE internal measurement reporting criteria 10.3.7.105

>Periodical reporting criteria Periodical reporting criteria 10.3.7.78

>No reporting (no data)Chosen when this measurement only is used as additional measurement to another measurement

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CHOICE report criteria Condition under which the given report criteria is chosen

UE internal measurement reporting criteria Chosen when UE internal measurement event triggering is required

Periodical reporting criteria Chosen when periodical reporting is requiredNo reporting Chosen when this measurement only is used as

additional measurement to another measurement

10.3.7.103 UE internal measurement event results

Information Element/Group name

Need Multi Type and reference

Semantics description

UE internal event identity MP UE internal event identity 10.3.7.100

CHOICE mode MP>FDD>Primary CPICH info CV -

clause 1Primary CPICH info 10.3.6.59

>TDD (no data)

Condition ExplanationClause 1 This IE is mandatory if "UE internal event identity" is

set to "6f" or "6g", otherwise the IE is not needed

10.3.7.104 UE internal measurement quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE mode MP>FDD>>Measurement quantity MP Enumerated(

UE Transmitted Power, UTRA Carrier RSSI, UE Rx-Tx time difference)

>TDD>>Measurement quantity MP Enumerated(

UE Transmitted Power, UTRA Carrier RSSI)

Filter coefficient MP Filter coefficient 10.3.7.9

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10.3.7.105 UE internal measurement reporting criteria

Information Element/Group name

Need Multi Type and reference

Semantics description

Parameters sent for each UE internal measurement event

OP 1 to <maxMeasEvent>

> UE internal event identity MP UE internal event identity 10.3.7.100

>Time-to-trigger MP Integer(0, 10, 20, 40, 60, 80, 100, 120, 160, 200, 240, 320, 640, 1280, 2560, 5000)

Time in ms. Indicates the period of time between the timing of event detection and the timing of sending Measurement Report.

>UE Transmitted power Tx power threshold

CV - clause 1

Integer(-50..33)

Power in dBm. In event 6a, 6b.

>UE Rx-Tx time difference threshold

CV - clause 2

Integer(769..1280)

Time difference in chip. In event 6f, 6g.

Condition ExplanationClause 1 The IE is mandatory if UE internal event identity" is

set to "6a" or "6b", otherwise the IE is not neededClause 2 The IE is mandatory if "UE internal event identity" is

set to "6f" or "6g", otherwise the IE is not needed

10.3.7.106 UE internal measurement system information

Information Element/Group name

Need Multi Type and reference

Semantics description

UE internal measurement identity number

MD Measurement identity number 10.3.7.73

The UE internal measurement identity number has default value 5.

UE internal measurement quantity

MP UE internal measurement quantity 10.3.7.104

10.3.7.107 UE Internal reporting quantity

Information Element/Group name

Need Multi Type and reference

Semantics description

UE Transmitted Power MP BooleanCHOICE mode MP>FDD>>UE Rx-Tx time difference MP Boolean>TDD>>Applied TA MP Boolean

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10.3.7.108 UE Rx-Tx time difference

Information Element/Group name

Need Multi Type and reference

Semantics description

UE Rx-Tx time difference MP Integer(876..1172)

In chips.

10.3.7.109 UE Transmitted Power info

Information Element/Group name

Need Multi IE type and reference

Semantics description

UE Transmitted Power MP Integer (-50... 33)

In dB

10.3.8 其他信息元素

10.3.8.1 BCCH modification info

Indicates modification of the System Information on BCCH. Information Element/Group

nameNeed Multi Type and

referenceSemantics description

MIB Value tag MP MIB Value tag 10.3.8.7

BCCH Modification time OP Integer (0..8, 16, 24, .. 4088)

All SFN values in which MIB may be mapped are allowed.

10.3.8.2 BSIC

Information Element/Group name

Need Multi Type and reference

Semantics description

Base transceiver Station Identity Code (BSIC)

MP [TS 23.003]

>Network Colour Code (NCC) MP bit string(3)>Base Station Colour Code (BCC)

MP bit string(3)

10.3.8.3 CBS DRX Level 1 information

Information Element/Group name

Need Multi Type and reference

Semantics description

Period of CTCH allocation (N) MP Integer (1..256)

MTTI N 4096 – K,N multiple of MTTI

CBS frame offset (K) MP Integer (0..255)

0 K N-1, K multiple of MTTI

10.3.8.4 Cell Value tag

Information Element/Group name

Need Multi Type and reference

Semantics description

Cell Value tag MP Integer (1..4)

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10.3.8.5 Inter-System handover failure

Information Element/Group name

Need Multi Type and reference

Semantics description

Inter-System handover failure cause

MD Enumerated(Configuration unacceptable, physical channel failure, protocol error,unspecified)

Default value is "unspecified".

At least 3 spare values, criticality = default, are required

Protocol error information CV-ProtErr Protocol error information 10.3.8.10

Inter-System message OP Inter-System message 10.3.8.6

Condition ExplanationProtErr If the IE "Inter-system handover failure cause" has the

value "Protocol error"

10.3.8.6 Inter-system message

Information Element/Group name

Need Multi Type and reference

Semantics description

System type MP Enumerated (GSM except PCS 1900, PCS 1900, cdma2000)

This IE indicates in particular which specification to apply to decode the transported messagesAt least 14 spare values, Criticality: reject, are needed

CHOICE system MP At least 14 spare choices, Criticality: reject, are needed

>GSM>>Message(s) MP 1.to.<maxI

nterSysMessages>

Bitstring (1..512)

Formatted and coded according to GSM specifications

>cdma2000>>cdma2000Message MP 1.to.<maxI

nterSysMessages>

>>>MSG_TYPE(s) MP Bitstring (8) Formatted and coded according to cdma2000 specifications

>>>cdma2000Messagepayload(s)

MP Bitstring (1..512)

Formatted and coded according to cdma2000 specifications

Condition ExplanationSystem The 'GSM' choice shall be applied when the IE

'System type' is 'GSM except PCS 1900' or 'PCS 1900', and the 'cdma2000' choice shall be applied when the IE 'system type' is 'cdma2000'.

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10.3.8.7 MIB Value tag

Information Element/Group name

Need Multi Type and reference

Semantics description

MIB Value tag MP Integer (1..8)

10.3.8.8 PLMN Value tag

Information Element/Group name

Need Multi Type and reference

Semantics description

PLMN Value tag MP Integer (1..256)

10.3.8.9 Predefined configuration identity and value tag

Information Element/Group name

Need Multi Type and reference

Semantics description

Predefined configuration identity MP Predefined configuration identity 10.3.4.5

Predefined configuration value tag

MP Predefined configuration value tag 10.3.4.6

10.3.8.10 Protocol error information

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE diagnostics type MP At least one spare choice is needed.

> Protocol error cause Protocol error cause 10.3.3.26

10.3.8.11 References to other system information blocks

Information element/Group name

Need Multi Type and reference

Semantics description

References to other system information blocks

MP 1 to <maxSIB>

System information blocks for which multiple occurrences are used, may appear more than once in this list

>Scheduling information MP Scheduling information, 10.3.8.12

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10.3.8.12 Scheduling information

Information Element/Group name

Need Multi Type and reference

Semantics description

SIB type MP SIB Type, 10.3.8.17

CHOICE Value tag OP>PLMN Value tag PLMN Value

tag 10.3.8.8This IE is included if the following conditions are fulfilled:the area scope for the system

information block is set to "PLMN" in table 8.1.1.

a value tag is used to indicate changes in the system information block.

the SIB type does not equal system information block type 16

>Predefined configuration identity and value tag

Predefined configuration identity and value tag 10.3.8.9

This IE is included if the following conditions are fulfilled:the SIB type equals system

information block type 16>Cell Value tag Cell Value

tag 10.3.8.4This IE is included if the following conditions are fulfilled:the area scope for the system

information block is set to "cell" in table 8.1.1.

a value tag is used to indicate changes in the system information block.

Scheduling MD see below for default value>SEG_COUNT MD SEG

COUNT 10.3.8.13

Default value is 1

>SIB_REP MP Integer (4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048, 4096)

Repetition period for the SIB in frames

>SIB_POS MP Integer (0 ..Rep-2 by step of 2)

Position of the first segmentRep is the value of the SIB_REP IE

>SIB_POS offset info MD 1..15 see below for default value>>SIB_OFF MP Integer(2..32

by step of 2)Offset of subsequent segments

Field Default valueSIB_POS offset info The default value is that all segments are

consecutive, i.e., that the SIB_OFF = 2 for all segments except when MIB segment/complete MIB is scheduled to be transmitted in between segments from same SIB. In that case, SIB_OFF=4 in between segments which are scheduled to be transmitted at SFNprime = 8 *n-2 and 8*n + 2, and SIB_OFF=2 for the rest of the segments.

Scheduling The default value is the scheduling of the SIB as specified in another SIB.

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10.3.8.13 SEG COUNT

Information Element/Group name

Need Multi Type and reference

Semantics description

SEG_COUNT MP Integer (1..16)

Number of segments in the system information block

10.3.8.14 Segment index

Information Element/Group name

Need Multi Type and reference

Semantics description

Segment index MP Integer (0..15)

Segments of a system information block are numbered starting with 0 for the first part.

10.3.8.15 SIB data fixed

Information Element/Group name

Need Multi Type and reference

Semantics description

SIB data fixed MP Bit string ( 222)

10.3.8.16 SIB data variable

Information Element/Group name

Need Multi Type and reference

Semantics description

SIB data variable MP Bit string ( 1..214)

10.3.8.17 SIB type

Information Element/Group name

Need Multi Type and reference

Semantics description

SIB type MP Enumerated, see below

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10.3.9 ANSI-41信息元素

10.3.9.1 ANSI 41 Core Network Information

Information element/Group name

Need Multi Type and reference

Semantics description

P_REV MP P_REV 10.3.9.10

MIN_P_REV MP MIN_P_REV 10.3.9.8

SID MP SID 10.3.9.11

NID MP NID 10.3.9.9

10.3.9.2 ANSI-41 Global Service Redirection information

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 Global Service Redirection information

MP ANSI-41 NAS parameter, 10.3.9.3

Formatted and coded according to the 3GPP2 document "G3G CDMA DS on ANSI-41"

10.3.9.3 ANSI-41 NAS parameter

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 NAS parameter MP Bit string (size (1..2048))

10.3.9.4 ANSI-41 NAS system information

Information Element/Group name

Need Multi Type and reference

Semantics description

NAS (ANSI-41) system information

MP ANSI-41 NAS parameter, 10.3.9.3

Formatted and coded according to the 3GPP2 document "G3G CDMA DS on ANSI-41"

10.3.9.5 ANSI-41 Private Neighbor List information

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 Private Neighbor List information

MP ANSI-41 NAS parameter, 10.3.9.3

Formatted and coded according to the 3GPP2 document "G3G CDMA DS on ANSI-41"

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10.3.9.6 ANSI-41 RAND information

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 RAND information MP ANSI-41 NAS parameter, 10.3.9.3

Formatted and coded according to the 3GPP2 document "G3G CDMA DS on ANSI-41"

10.3.9.7 ANSI-41 User Zone Identification information

Information Element/Group name

Need Multi Type and reference

Semantics description

ANSI-41 User Zone Identification information

MP ANSI-41 NAS parameter, 10.3.9.3

Formatted and coded according to the 3GPP2 document "G3G CDMA DS on ANSI-41"

10.3.9.8 MIN_P_REV

Information Element/Group name

Need Multi Type and reference

Semantics description

MIN_P_REV MP Bitstring (8) Minimum protocol revision level

10.3.9.9 NID

Information Element/Group name

Need Multi Type and reference

Semantics description

NID MP Bitstring (16) Network identification

10.3.9.10 P_REV

Information Element/Group name

Need Multi Type and reference

Semantics description

P_REV MP Bitstring (8) Protocol revision level

10.3.9.11 SID

Information Element/Group name

Need Multi Type and reference

Semantics description

SID MP Bitstring (15) System identification

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10.3.10 Multiplicity values and type constraint values

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Constant Explanation ValueCN informationmaxCNdomains Maximum number of CN domains 4maxSignallingFlow Maximum number of flow identifiers 16UTRAN mobility informationmaxRAT Maximum number or Radio Access Technologies maxOtherRAT + 1maxOtherRAT Maximum number or other Radio Access Technologies 15maxURA Maximum number of URAs in a cell 8maxInterSysMessages Maximum number of Inter System Messages 4maxRABsetup Maximum number of RABs to be established 16UE informationmaxPDCPalgoType Maximum number of PDCP algorithm types 8maxDRACclasses Maximum number of UE classes which would require

different DRAC parameters8

maxFrequencybands Maximum number of frequency bands supported by the UE as defined in 25.102

4

maxPage1 Number of UEs paged in the Paging Type 1 message 8maxSystemCapability Maximum number of system specific capabilities that can be

requested in one message.16

RB informationmaxPredefConfig Maximum number of predefined configurations 16maxRB Maximum number of RBs 32maxSRBsetup Maximum number of signalling RBs to be established 8maxRBperRAB Maximum number of RBs per RAB 8maxRBallRABs Maximum number of non signalling RBs 27maxRBMuxOptions Maximum number of RB multiplexing options 8maxLoCHperRLC Maximum number of logical channels per RLC entity 2TrCH informationmaxTrCH Maximum number of transport channels used in one

direction (UL or DL)32

maxTrCHpreconf Maximum number of preconfigured Transport channels, per direction

16

maxCCTrCH Maximum number of CCTrCHs 8maxTF Maximum number of different transport formats that can be

included in the Transport format set for one transport channel

32

maxTF-CPCH Maximum number of TFs in a CPCH set 16maxTFC Maximum number of Transport Format Combinations 1024maxTFCI-1-Combs Maximum number of TFCI (field 1) combinations 512maxTFCI-2-Combs Maximum number of TFCI (field 2) combinations 512maxCPCHsets Maximum number of CPCH sets per cell 16maxSIBperMsg Maximum number of complete system information blocks per

SYSTEM INFORMATION message16

maxSIB Maximum number of references to other system information blocks.

32

maxSIB-FACH Maximum number of references to system information blocks on the FACH

8

PhyCH informationmaxSubCh Maximum number of sub-channels on PRACH 12maxPCPCH-APsubCH Maximum number of available sub-channels for AP signature

on PCPCH12

maxPCPCH-CDsubCH Maximum number of available sub-channels for CD signature on PCPCH

12

maxSig Maximum number of signatures on PRACH 16maxPCPCH-APsig Maximum number of available signatures for AP on PCPCH 16maxPCPCH-CDsig Maximum number of available signatures for CD on PCPCH 16maxAC Maximum number of access classes 16maxASC Maximum number of access service classes 8maxASCmap Maximum number of access class to access service classes

mappings7

maxASCpersist Maximum number of access service classes for which persistence scaling factors are specified

6

maxPRACH Maximum number of PRACHs in a cell 16maxFACHPCH Maximum number of FACHs and PCHs mapped onto one 8

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secondary CCPCHsmaxRL Maximum number of radio links 8maxSCCPCH Maximum number of secondary CCPCHs per cell 16maxDPDCH-UL Maximum number of DPDCHs per cell 6maxDPCH-DLchan Maximum number of channelization codes used for DL

DPCH8

maxDPCHcodesPerTS Maximum number of codes for one timeslots (TDD) 16maxPUSCH Maximum number of PUSCHs (8)maxPDSCH Maximum number of PDSCHs 8maxPDSCHcodes Maximum number of codes for PDSCH 16maxPDSCH-TFCIgroups Maximum number of TFCI groups for PDSCH 256maxPDSCHcodeGroups Maximum number of code groups for PDSCH 256maxPCPCHs Maximum number of PCPCH channels in a CPCH Set 64maxPCPCH-SF Maximum number of available SFs on PCPCH 7maxTS Maximum number of timeslots used in one direction (UL or

DL)14

HiPUSCHIdentities Maximum number of PDSCH Identities 64HiPDSCHIdentities Maximum number of PDSCH Identities 64Measurement informationmaxTGPS Maximum number of transmission gap pattern sequences 6maxAdditionalMeas Maximum number of additional measurements for a given

measurement identity4

maxMeasEvent Maximum number of events that can be listed in measurement reporting criteria

8

maxMeasParEvent Maximum number of measurement parameters (e.g. thresholds) per event

2

maxMeasIntervals Maximum number of intervals that define the mapping function between the measurements for the cell quality Q of a cell and the representing quality value

1

maxCellMeas Maximum number of cells to measure 32maxFreq Maximum number of frequencies to measure 8maxSat Maximum number of satellites to measure 16HiRM Maximum number that could be set as rate matching

attribute for a transport channel256

Frequency informationmaxFDDFreqList Maximum number of FDD carrier frequencies to be stored in

USIM4

maxTDDFreqList Maximum number of TDD carrier frequencies to be stored in USIM

4

maxFDDFreqCellList Maximum number of neighbouring FDD cells to be stored in USIM

32

maxTDDFreqCellList Maximum number of neighbouring TDD cells to be stored in USIM

32

maxGSMCellList Maximum number of GSM cells to be stored in USIM 32

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11 消息和信息元素抽象语法(ASN.1描述)  本章包含对 RRC PDU和信息元素的定义,这些定义是使用 TR25.921中规定的 ASN.1一个子集来定义的。PDU和信息元素的定义分组为单独的ASN.1模块。11.1 一般消息结构Class-definitions DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

ActiveSetUpdate,ActiveSetUpdateComplete,ActiveSetUpdateFailure,CellUpdate,CellUpdateConfirm-CCCH,CellUpdateConfirm,CounterCheck,CounterCheckResponse,DownlinkDirectTransfer,DownlinkOuterLoopControl,HandoverToUTRANComplete,InitialDirectTransfer,InterSystemHandoverCommand-GSM,InterSystemHandoverCommand-CDMA2000,InterSystemHandoverFailure,MeasurementControl,MeasurementControlFailure,MeasurementReport,PagingType1,PagingType2,PhysicalChannelReconfiguration,PhysicalChannelReconfigurationComplete,PhysicalChannelReconfigurationFailure,PhysicalSharedChannelAllocation,PUSCHCapacityRequest,RadioBearerReconfiguration,RadioBearerReconfigurationComplete,RadioBearerReconfigurationFailure,RadioBearerRelease,RadioBearerReleaseComplete,RadioBearerReleaseFailure,RadioBearerSetup,RadioBearerSetupComplete,RadioBearerSetupFailure,RRCConnectionReEstablishment,RRCConnectionReEstablishment-CCCH,RRCConnectionReEstablishmentComplete,RRCConnectionReEstablishmentRequest,RRCConnectionReject,RRCConnectionRelease,RRCConnectionRelease-CCCH,RRCConnectionReleaseComplete,RRCConnectionReleaseComplete-CCCH,RRCConnectionRequest,RRCConnectionSetup,RRCConnectionSetupComplete,RRCStatus,SecurityModeCommand,SecurityModeComplete,SecurityModeFailure,SignallingConnectionRelease,SignallingConnectionReleaseRequest,SystemInformation-BCH,SystemInformation-FACH,SystemInformationChangeIndication,TransportChannelReconfiguration,TransportChannelReconfigurationComplete,

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TransportChannelReconfigurationFailure,TransportFormatCombinationControl,TransportFormatCombinationControlFailure,UECapabilityEnquiry,UECapabilityInformation,UECapabilityInformationConfirm,UplinkDirectTransfer,UplinkPhysicalChannelControl,URAUpdate,URAUpdateConfirm,URAUpdateConfirm-CCCH,UTRANMobilityInformation,UTRANMobilityInformationConfirm,UTRANMobilityInformationFailure

FROM PDU-definitions

IntegrityCheckInfoFROM UserEquipment-IEs;

--**************************************************************---- Downlink DCCH messages----**************************************************************

DL-DCCH-Message ::= SEQUENCE {integrityCheckInfo IntegrityCheckInfo OPTIONAL,message DL-DCCH-MessageType

}

DL-DCCH-MessageType ::= CHOICE {activeSetUpdate ActiveSetUpdate,cellUpdateConfirm CellUpdateConfirm,counterCheck CounterCheck,downlinkDirectTransfer DownlinkDirectTransfer,downlinkOuterLoopControl DownlinkOuterLoopControl,interSystemHandoverCommand-GSM InterSystemHandoverCommand-GSM,interSystemHandoverCommand-CDMA2000 InterSystemHandoverCommand-CDMA2000,measurementControl MeasurementControl,pagingType2 PagingType2,physicalChannelReconfiguration PhysicalChannelReconfiguration,physicalSharedChannelAllocation PhysicalSharedChannelAllocation,radioBearerReconfiguration RadioBearerReconfiguration,radioBearerRelease RadioBearerRelease,radioBearerSetup RadioBearerSetup,rrcConnectionReEstablishment RRCConnectionReEstablishment,rrcConnectionRelease RRCConnectionRelease,securityModeCommand SecurityModeCommand,signallingConnectionRelease SignallingConnectionRelease,transportChannelReconfiguration TransportChannelReconfiguration,transportFormatCombinationControl TransportFormatCombinationControl,ueCapabilityEnquiry UECapabilityEnquiry,ueCapabilityInformationConfirm UECapabilityInformationConfirm,uplinkPhysicalChannelControl UplinkPhysicalChannelControl,uraUpdateConfirm URAUpdateConfirm,utranMobilityInformation UTRANMobilityInformation,extension NULL

}

--**************************************************************---- Uplink DCCH messages----**************************************************************

UL-DCCH-Message ::= SEQUENCE {integrityCheckInfo IntegrityCheckInfo OPTIONAL,message UL-DCCH-MessageType

}

UL-DCCH-MessageType ::= CHOICE {activeSetUpdateComplete ActiveSetUpdateComplete,activeSetUpdateFailure ActiveSetUpdateFailure,counterCheckResponse CounterCheckResponse,handoverToUTRANComplete HandoverToUTRANComplete,initialDirectTransfer InitialDirectTransfer,interSystemHandoverFailure InterSystemHandoverFailure,measurementControlFailure MeasurementControlFailure,

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measurementReport MeasurementReport,physicalChannelReconfigurationComplete

PhysicalChannelReconfigurationComplete,physicalChannelReconfigurationFailure

PhysicalChannelReconfigurationFailure,radioBearerReconfigurationComplete RadioBearerReconfigurationComplete,radioBearerReconfigurationFailure RadioBearerReconfigurationFailure,radioBearerReleaseComplete RadioBearerReleaseComplete,radioBearerReleaseFailure RadioBearerReleaseFailure,radioBearerSetupComplete RadioBearerSetupComplete,radioBearerSetupFailure RadioBearerSetupFailure,rrcConnectionReEstablishmentComplete

RRCConnectionReEstablishmentComplete,rrcConnectionReleaseComplete RRCConnectionReleaseComplete,rrcConnectionSetupComplete RRCConnectionSetupComplete,rrcStatus RRCStatus,securityModeComplete SecurityModeComplete,securityModeFailure SecurityModeFailure,signallingConnectionReleaseRequest SignallingConnectionReleaseRequest,transportChannelReconfigurationComplete

TransportChannelReconfigurationComplete,transportChannelReconfigurationFailure

TransportChannelReconfigurationFailure,transportFormatCombinationControlFailure

TransportFormatCombinationControlFailure,ueCapabilityInformation UECapabilityInformation,uplinkDirectTransfer UplinkDirectTransfer,utranMobilityInformationConfirm UTRANMobilityInformationConfirm,utranMobilityInformationFailure UTRANMobilityInformationFailure,extension NULL

}

--**************************************************************---- Downlink CCCH messages----**************************************************************

DL-CCCH-Message ::= SEQUENCE {integrityCheckInfo IntegrityCheckInfo OPTIONAL,message DL-CCCH-MessageType

}

DL-CCCH-MessageType ::= CHOICE {cellUpdateConfirm CellUpdateConfirm-CCCH,rrcConnectionReEstablishment RRCConnectionReEstablishment-CCCH,rrcConnectionReject RRCConnectionReject,rrcConnectionRelease RRCConnectionRelease-CCCH,rrcConnectionSetup RRCConnectionSetup,uraUpdateConfirm URAUpdateConfirm-CCCH,extension NULL

}

--**************************************************************---- Uplink CCCH messages----**************************************************************

UL-CCCH-Message ::= SEQUENCE {integrityCheckInfo IntegrityCheckInfo OPTIONAL,message UL-CCCH-MessageType

}

UL-CCCH-MessageType ::= CHOICE {cellUpdate CellUpdate,rrcConnectionReEstablishmentRequest RRCConnectionReEstablishmentRequest,rrcConnectionReleaseComplete RRCConnectionReleaseComplete-CCCH,rrcConnectionRequest RRCConnectionRequest,uraUpdate URAUpdate,extension NULL

}

--**************************************************************---- PCCH messages----**************************************************************

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PCCH-Message ::= SEQUENCE {message PCCH-MessageType

}

PCCH-MessageType ::= CHOICE {pagingType1 PagingType1,extension NULL

}

--**************************************************************---- Downlink SHCCH messages----**************************************************************

DL-SHCCH-Message ::= SEQUENCE {message DL-SHCCH-MessageType

}

DL-SHCCH-MessageType ::= CHOICE {physicalSharedChannelAllocation PhysicalSharedChannelAllocation,extension NULL

}

--**************************************************************---- Uplink SHCCH messages----**************************************************************

UL-SHCCH-Message ::= SEQUENCE {message UL-SHCCH-MessageType

}

UL-SHCCH-MessageType ::= CHOICE {puschCapacityRequest PUSCHCapacityRequest,extension NULL

}

--**************************************************************---- BCCH messages sent on FACH----**************************************************************

BCCH-FACH-Message ::= SEQUENCE {message BCCH-FACH-MessageType

}

BCCH-FACH-MessageType ::= CHOICE {systemInformation SystemInformation-FACH,systemInformationChangeIndication SystemInformationChangeIndication,extension NULL

}

--**************************************************************---- BCCH messages sent on BCH----**************************************************************

BCCH-BCH-Message ::= SEQUENCE {message SystemInformation-BCH

}

END

11.2 PDU的定义--**************************************************************---- TABULAR: The message type and integrity check info are not-- visible in this module as they are defined in the class module.

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-- Also, all FDD/TDD specific choices have the FDD option first -- and TDD second, just for consistency.----**************************************************************

PDU-definitions DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

--**************************************************************---- IE parameter types from other modules----**************************************************************

IMPORTS

CN-DomainIdentity,CN-InformationInfo,FlowIdentifier,NAS-Message,PagingRecordTypeID,ServiceDescriptor,SignallingFlowInfoList

FROM CoreNetwork-IEs

URA-IdentityFROM UTRANMobility-IEs

ActivationTime,C-RNTI,CapabilityUpdateRequirement,CellUpdateCause,CipheringAlgorithm,CipheringModeInfo,DRX-Indicator,EstablishmentCause,FailureCauseWithProtErr,

InitialUE-Identity,IntegrityProtActivationInfo,IntegrityProtectionModeInfo,PagingCause,PagingRecordList,ProtocolErrorIndicator,ProtocolErrorIndicatorWithInfo,Re-EstablishmentTimer,RedirectionInfo,RejectionCause,ReleaseCause,RRC-MessageTX-Count,SecurityCapability,START,STARTList,U-RNTI,U-RNTI-Short,UE-RadioAccessCapability,URA-UpdateCause,UTRAN-DRX-CycleLengthCoefficient,WaitTime

FROM UserEquipment-IEs

PredefinedConfigIdentity,RAB-Info,RAB-Info-Short,RAB-InformationReconfigList,RAB-InformationSetupList,RB-ActivationTimeInfo,RB-ActivationTimeInfoList,RB-COUNT-C-InformationList,RB-COUNT-C-MSB-InformationList,RB-IdentityList,RB-InformationAffectedList,RB-InformationReconfigList,RB-InformationReleaseList,RB-InformationSetupList,RB-WithPDCP-InfoList,SRB-InformationSetupList,

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SRB-InformationSetupList2FROM RadioBearer-IEs

CPCH-SetID,DL-AddReconfTransChInfo2List,DL-AddReconfTransChInfoList,DL-CommonTransChInfo,DL-DeletedTransChInfoList,DRAC-StaticInformationList,TFC-Subset,TFCS-Identity,UL-AddReconfTransChInfoList,UL-CommonTransChInfo,UL-DeletedTransChInfoList

FROM TransportChannel-IEs

AllocationPeriodInfo,CCTrCH-PowerControlInfo,ConstantValue,CPCH-SetInfo,DL-CommonInformation,DL-CommonInformationPost,DL-InformationPerRL,DL-InformationPerRL-List,DL-InformationPerRL-ListPostFDD,DL-InformationPerRL-PostTDD,DL-DPCH-PowerControlInfo,DL-OuterLoopControl,DL-PDSCH-Information,DPCH-CompressedModeStatusInfo,FrequencyInfo,FrequencyInfoFDD,FrequencyInfoTDD,IndividualTS-InterferenceList,MaxAllowedUL-TX-Power,PDSCH-CapacityAllocationInfo,PDSCH-Identity,PDSCH-Info,PRACH-RACH-Info,PrimaryCCPCH-TX-Power,PUSCH-CapacityAllocationInfo,PUSCH-Identity,RL-AdditionInformationList,RL-RemovalInformationList,SSDT-Information,TFC-ControlDuration,TimeslotList,TX-DiversityMode,UL-ChannelRequirement,UL-DPCH-Info,UL-DPCH-InfoPostFDD,UL-DPCH-InfoPostTDD,UL-TimingAdvance,UL-TimingAdvanceControl

FROM PhysicalChannel-IEs

AdditionalMeasurementID-List,EventResults,MeasuredResults,MeasuredResultsList,MeasuredResultsOnRACH,MeasurementCommand,MeasurementIdentityNumber,MeasurementReportingMode,PrimaryCCPCH-RSCP,TimeslotListWithISCP,TrafficVolumeMeasuredResultsList

FROM Measurement-IEs

BCCH-ModificationInfo,CDMA2000-MessageList,GSM-MessageList,InterSystemHO-Failure,InterSystemMessage,ProtocolErrorInformation,SegCount,SegmentIndex,SFN-Prime,

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SIB-Data-fixed,SIB-Data-variable,SIB-Type

FROM Other-IEs

maxSIBperMsgFROM Constant-definitions;

-- ***************************************************---- ACTIVE SET UPDATE (FDD only)---- ***************************************************

ActiveSetUpdate ::= CHOICE {v1 SEQUENCE {

v1-IEs ActiveSetUpdate-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

ActiveSetUpdate-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,newU-RNTI U-RNTI OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Physical channel IEsmaxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,rl-AdditionInformationList RL-AdditionInformationList OPTIONAL,rl-RemovalInformationList RL-RemovalInformationList OPTIONAL,tx-DiversityMode TX-DiversityMode OPTIONAL,ssdt-Information SSDT-Information OPTIONAL

}

-- ***************************************************---- ACTIVE SET UPDATE COMPLETE (FDD only)---- ***************************************************

ActiveSetUpdateComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- Radio bearer IEs

rb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- ACTIVE SET UPDATE FAILURE (FDD only)---- ***************************************************

ActiveSetUpdateFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- CELL UPDATE---- ***************************************************

CellUpdate ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,

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startList STARTList,am-RLC-ErrorIndicationC-plane BOOLEAN,am-RLC-ErrorIndicationU-plane BOOLEAN,cellUpdateCause CellUpdateCause,protocolErrorIndicator ProtocolErrorIndicatorWithInfo,-- TABULAR: Protocol error information is nested in -- ProtocolErrorIndicatorWithInfo.

-- Measurement IEsmeasuredResultsOnRACH MeasuredResultsOnRACH OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- CELL UPDATE CONFIRM---- ***************************************************

CellUpdateConfirm ::= CHOICE {v1 SEQUENCE {

v1-IEs CellUpdateConfirm-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

CellUpdateConfirm-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,rlc-ResetIndicatorC-Plane BOOLEAN,rlc-ResetIndicatorU-Plane BOOLEAN,

-- CN information elementscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,prach-RACH-Info PRACH-RACH-Info OPTIONAL,dl-InformationPerRL DL-InformationPerRL OPTIONAL

}

-- ***************************************************---- CELL UPDATE CONFIRM for CCCH---- ***************************************************

CellUpdateConfirm-CCCH ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,-- The rest of the message is identical to the one sent on DCCH.

cellUpdateConfirm CellUpdateConfirm}

-- ***************************************************---- COUNTER CHECK---- ***************************************************

CounterCheck ::= CHOICE {v1 SEQUENCE {

v1-IEs CounterCheck-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

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CounterCheck-v1-IEs ::= SEQUENCE {-- Radio bearer IEs

rb-COUNT-C-MSB-InformationList RB-COUNT-C-MSB-InformationList}

-- ***************************************************---- COUNTER CHECK RESPONSE---- ***************************************************

CounterCheckResponse ::= SEQUENCE {-- Radio bearer IEs

rb-COUNT-C-InformationList RB-COUNT-C-InformationList OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- DOWNLINK DIRECT TRANSFER---- ***************************************************

DownlinkDirectTransfer ::= CHOICE {v1 SEQUENCE {

v1-IEs DownlinkDirectTransfer-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

DownlinkDirectTransfer-v1-IEs ::= SEQUENCE {-- Core network IEs

cn-DomainIdentity CN-DomainIdentity,nas-Message NAS-Message

}

-- ***************************************************---- DOWNLINK OUTER LOOP CONTROL---- ***************************************************

DownlinkOuterLoopControl ::= CHOICE {v1 SEQUENCE {

v1-IEs DownlinkOuterLoopControl-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

DownlinkOuterLoopControl-v1-IEs ::= SEQUENCE {-- Physical channel IEs

dl-OuterLoopControl DL-OuterLoopControl,dl-DPCH-PowerControlInfo DL-DPCH-PowerControlInfo OPTIONAL,

-- Extension mechanism for non- release99 informationcriticalExtension SEQUENCE {} OPTIONAL,nonCriticalExtensions SEQUENCE {} OPTIONAL

}

-- ***************************************************---- HANDOVER TO UTRAN COMMAND---- ***************************************************

HandoverToUTRANCommand ::= CHOICE {v1 SEQUENCE {

v1-IEs HandoverToUTRANCommand-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

HandoverToUTRANCommand-v1-IEs ::= SEQUENCE {-- User equipment IEs

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new-U-RNTI U-RNTI-Short,activationTime ActivationTime OPTIONAL,cipheringAlgorithm CipheringAlgorithm OPTIONAL,

-- Radio bearer IEsrab-Info RAB-Info-Short,

-- Specification mode informationspecificationMode CHOICE {

complete SEQUENCE {re-EstablishmentTimer Re-EstablishmentTimer,srb-InformationSetupList SRB-InformationSetupList,rb-InformationSetupList RB-InformationSetupList,ul-CommonTransChInfo UL-CommonTransChInfo,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList,dl-CommonTransChInfo DL-CommonTransChInfo,dl-AddReconfTransChInfoList DL-AddReconfTransChInfoList,ul-DPCH-Info UL-DPCH-Info,modeSpecificInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL,cpch-SetInfo CPCH-SetInfo OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation,dl-InformationPerRL-List DL-InformationPerRL-List,frequencyInfo FrequencyInfo

},preconfiguration SEQUENCE {

-- All IEs that include an FDD/TDD choice are split in two IEs for this message,-- one for the FDD only elements and one for the TDD only elements, so that one-- FDD/TDD choice in this level is sufficient.

predefinedConfigIdentity PredefinedConfigIdentity,modeSpecificInfo CHOICE {

fdd SEQUENCE {ul-DPCH-Info UL-DPCH-InfoPostFDD,dl-CommonInformationPost DL-CommonInformationPost,dl-InformationPerRL-List DL-InformationPerRL-ListPostFDD,frequencyInfo FrequencyInfoFDD

},tdd SEQUENCE {

ul-DPCH-Info UL-DPCH-InfoPostTDD,dl-InformationPerRL DL-InformationPerRL-PostTDD,frequencyInfo FrequencyInfoTDD,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power

}

}}

},-- Physical channel IEs

maxAllowedUL-TX-Power MaxAllowedUL-TX-Power}

-- ***************************************************---- HANDOVER TO UTRAN COMPLETE---- ***************************************************

HandoverToUTRANComplete ::= SEQUENCE {--TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs-- TABULAR: the IE below is conditional on history.

startList STARTList OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- INITIAL DIRECT TRANSFER---- ***************************************************

InitialDirectTransfer ::= SEQUENCE {-- Core network IEs

serviceDescriptor ServiceDescriptor,flowIdentifier FlowIdentifier,

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cn-DomainIdentity CN-DomainIdentity,nas-Message NAS-Message,

-- Measurement IEsmeasuredResultsOnRACH MeasuredResultsOnRACH OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- INTER-SYSTEM HANDOVER COMMAND---- ***************************************************

InterSystemHandoverCommand-GSM ::= CHOICE {v1 SEQUENCE {

v1-IEs InterSystemHandoverCommand-GSM-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

InterSystemHandoverCommand-GSM-v1-IEs ::= SEQUENCE {-- User equipment IEs

activationTime ActivationTime OPTIONAL,-- Radio bearer IEs

remainingRAB-Info RAB-Info OPTIONAL,-- Other IEs

message-and-extension CHOICE {gsm-Message SEQUENCE {},-- In this case, what follows the basic production is a variable length bit

string-- with no length field, containing the GSM message including GSM padding up to

end-- of container, to be analysed according to GSM specificationswith-extension SEQUENCE {

messages GSM-MessageList}

}}

InterSystemHandoverCommand-CDMA2000 ::= CHOICE {v1 SEQUENCE {

v1-IEs InterSystemHandoverCommand-CDMA2000-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

InterSystemHandoverCommand-CDMA2000-v1-IEs ::= SEQUENCE {-- User equipment IEs

activationTime ActivationTime OPTIONAL,-- Radio bearer IEs

remainingRAB-Info RAB-Info OPTIONAL,-- Other IEs

cdma2000-MessageList CDMA2000-MessageList}

-- ***************************************************---- INTER-SYSTEM HANDOVER FAILURE---- ***************************************************

InterSystemHandoverFailure ::= SEQUENCE {-- Other IEs

interSystemHO-Failure InterSystemHO-Failure OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- MEASUREMENT CONTROL---- ***************************************************

MeasurementControl ::= CHOICE {

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v1 SEQUENCE {v1-IEs MeasurementControl-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

MeasurementControl-v1-IEs ::= SEQUENCE {-- Measurement IEs

measurementIdentityNumber MeasurementIdentityNumber,measurementCommand MeasurementCommand,-- TABULAR: The measurement type is included in MeasurementCommand.measurementReportingMode MeasurementReportingMode OPTIONAL,additionalMeasurementList AdditionalMeasurementID-List OPTIONAL,

-- Physical channel IEsdpch-CompressedModeStatusInfo DPCH-CompressedModeStatusInfo OPTIONAL

}

-- ***************************************************---- MEASUREMENT CONTROL FAILURE---- ***************************************************

MeasurementControlFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- MEASUREMENT REPORT---- ***************************************************

MeasurementReport ::= SEQUENCE {-- Measurement IEs

measurementIdentityNumber MeasurementIdentityNumber,measuredResults MeasuredResults OPTIONAL,additionalMeasuredResults MeasuredResultsList OPTIONAL,eventResults EventResults OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- PAGING TYPE 1---- ***************************************************

PagingType1 ::= SEQUENCE {-- User equipment IEs

pagingRecordList PagingRecordList OPTIONAL,-- Other IEs

bcch-ModificationInfo BCCH-ModificationInfo OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- PAGING TYPE 2---- ***************************************************

PagingType2 ::= SEQUENCE {-- User equipment IEs

pagingCause PagingCause,-- Core network IEs

cn-DomainIdentity CN-DomainIdentity,pagingRecordTypeID PagingRecordTypeID,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

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-- ***************************************************---- PHYSICAL CHANNEL RECONFIGURATION---- ***************************************************

PhysicalChannelReconfiguration ::= CHOICE {v1 SEQUENCE {

v1-IEs PhysicalChannelReconfiguration-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

PhysicalChannelReconfiguration-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,-- TABULAR: UL-ChannelRequirement contains the choice -- between UL DPCH info, PRACH info for RACH, CPCH SET info and CPCH set ID.modeSpecificInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

-- ***************************************************---- PHYSICAL CHANNEL RECONFIGURATION COMPLETE---- ***************************************************

PhysicalChannelReconfigurationComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- PHYSICAL CHANNEL RECONFIGURATION FAILURE---- ***************************************************

PhysicalChannelReconfigurationFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************--

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-- PHYSICAL SHARED CHANNEL ALLOCATION (TDD only)---- ***************************************************

PhysicalSharedChannelAllocation ::= CHOICE {v1 SEQUENCE {

v1-IEs PhysicalSharedChannelAllocation-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

PhysicalSharedChannelAllocation-v1-IEs ::= SEQUENCE {-- TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs

c-RNTI C-RNTI OPTIONAL,-- Physical channel IEs

ul-TimingAdvance UL-TimingAdvanceControl OPTIONAL,pusch-CapacityAllocationInfo PUSCH-CapacityAllocationInfo OPTIONAL,pdsch-CapacityAllocationInfo PDSCH-CapacityAllocationInfo OPTIONAL,confirmRequest ENUMERATED {

confirmPDSCH, confirmPUSCH } OPTIONAL,-- TABULAR: If the above value is not present, the default value "No Confirm"-- shall be used as specified in 10.2.23.iscpTimeslotList TimeslotList OPTIONAL

}

-- ***************************************************---- PUSCH CAPACITY REQUEST (TDD only)---- ***************************************************

PUSCHCapacityRequest ::= SEQUENCE {-- User equipment IEs

c-RNTI C-RNTI OPTIONAL,-- Measurement IEs

trafficVolumeMeasuredResultsListTrafficVolumeMeasuredResultsList,

timeslotListWithISCP TimeslotListWithISCP OPTIONAL,primaryCCPCH-RSCP PrimaryCCPCH-RSCP OPTIONAL,allocationConfirmation CHOICE {

pdschConfirmation PDSCH-Identity,puschConfirmation PUSCH-Identity

} OPTIONAL,protocolErrorIndicator ProtocolErrorIndicatorWithInfo,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RADIO BEARER RECONFIGURATION---- ***************************************************

RadioBearerReconfiguration ::= CHOICE {v1 SEQUENCE {

v1-IEs RadioBearerReconfiguration-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RadioBearerReconfiguration-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEs

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rab-InformationReconfigList RAB-InformationReconfigList OPTIONAL,rb-InformationReconfigList RB-InformationReconfigList,rb-InformationAffectedList RB-InformationAffectedList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-deletedTransChInfoList UL-DeletedTransChInfoList OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList OPTIONAL,modeSpecificTransChInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,addReconfTransChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

} OPTIONAL,dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-DeletedTransChInfoList DL-DeletedTransChInfoList OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfo2List OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,modeSpecificPhysChInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List

}

-- ***************************************************---- RADIO BEARER RECONFIGURATION COMPLETE---- ***************************************************

RadioBearerReconfigurationComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RADIO BEARER RECONFIGURATION FAILURE---- ***************************************************

RadioBearerReconfigurationFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Radio bearer IEs

potentiallySuccesfulBearerList RB-IdentityList OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- RADIO BEARER RELEASE---- ***************************************************

RadioBearerRelease ::= CHOICE {v1 SEQUENCE {

v1-IEs RadioBearerRelease-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RadioBearerRelease-v1-IEs ::= SEQUENCE {

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-- User equipment IEsintegrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrab-InformationReconfigList RAB-InformationReconfigList OPTIONAL,rb-InformationReleaseList RB-InformationReleaseList,rb-InformationAffectedList RB-InformationAffectedList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-deletedTransChInfoList UL-DeletedTransChInfoList OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList OPTIONAL,modeSpecificTransChInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,addReconfTransChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

} OPTIONAL,dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-DeletedTransChInfoList DL-DeletedTransChInfoList OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfo2List OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,modeSpecificPhysChInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

-- ***************************************************---- RADIO BEARER RELEASE COMPLETE---- ***************************************************

RadioBearerReleaseComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RADIO BEARER RELEASE FAILURE---- ***************************************************

RadioBearerReleaseFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Radio bearer IEs

potentiallySuccesfulBearerList RB-IdentityList OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************

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---- RADIO BEARER SETUP---- ***************************************************

RadioBearerSetup ::= CHOICE {v1 SEQUENCE {

v1-IEs RadioBearerSetup-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RadioBearerSetup-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- Radio bearer IEssrb-InformationSetupList SRB-InformationSetupList OPTIONAL,rab-InformationSetupList RAB-InformationSetupList OPTIONAL,rb-InformationAffectedList RB-InformationAffectedList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-deletedTransChInfoList UL-DeletedTransChInfoList OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList OPTIONAL,modeSpecificTransChInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,addReconfTransChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

} OPTIONAL,dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-DeletedTransChInfoList DL-DeletedTransChInfoList OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfoList OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,modeSpecificPhysChInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

-- ***************************************************---- RADIO BEARER SETUP COMPLETE---- ***************************************************

RadioBearerSetupComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,start START OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************--

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-- RADIO BEARER SETUP FAILURE---- ***************************************************

RadioBearerSetupFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Radio bearer IEs

potentiallySuccesfulBearerList RB-IdentityList OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- RRC CONNECTION RE-ESTABLISHMENT---- ***************************************************

RRCConnectionReEstablishment ::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionReEstablishment-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionReEstablishment-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,rlc-ResetIndicatorC-plane BOOLEAN,rlc-ResetIndicatorU-plane BOOLEAN,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- Radio bearer IEssrb-InformationSetupList SRB-InformationSetupList OPTIONAL,rab-InformationSetupList RAB-InformationSetupList OPTIONAL,rb-InformationReleaseList RB-InformationReleaseList OPTIONAL,rb-InformationReconfigList RB-InformationReconfigList OPTIONAL,rb-InformationAffectedList RB-InformationAffectedList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-deletedTransChInfoList UL-DeletedTransChInfoList OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList OPTIONAL,modeSpecificTransChInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,addReconfTransChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

},dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-DeletedTransChInfoList DL-DeletedTransChInfoList OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfoList OPTIONAL,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,modeSpecificPhysChInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

-- ***************************************************---- RRC CONNECTION RE-ESTABLISHMENT for CCCH--

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-- ***************************************************

RRCConnectionReEstablishment-CCCH ::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionReEstablishment-CCCH-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionReEstablishment-CCCH-v1-IEs ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,-- The rest of the message is identical to the one sent on DCCH.

rrcConnectionReEstablishment RRCConnectionReEstablishment-v1-IEs}

-- ***************************************************---- RRC CONNECTION RE-ESTABLISHMENT COMPLETE---- ***************************************************

RRCConnectionReEstablishmentComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,start START OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RRC CONNECTION RE-ESTABLISHMENT REQUEST---- ***************************************************

RRCConnectionReEstablishmentRequest ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,startList STARTList,am-RLC-ErrorIndicationC-plane BOOLEAN,am-RLC-ErrorIndicationU-plane BOOLEAN,protocolErrorIndicator ProtocolErrorIndicatorWithInfo,-- TABULAR: The IE above is MD in tabular, but making a 2-way choice-- optional wastes one bit (using PER) and produces no additional -- information.

-- Measurement IEsmeasuredResultsOnRACH MeasuredResultsOnRACH OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RRC CONNECTION REJECT---- ***************************************************

RRCConnectionReject ::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionReject-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionReject-v1-IEs ::= SEQUENCE {-- TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs

initialUE-Identity InitialUE-Identity,rejectionCause RejectionCause,waitTime WaitTime,

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redirectionInfo RedirectionInfo OPTIONAL}

-- ***************************************************---- RRC CONNECTION RELEASE---- ***************************************************

RRCConnectionRelease::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionRelease-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionRelease-v1-IEs ::= SEQUENCE {-- User equipment IEs

rrc-MessageTX-Count RRC-MessageTX-Count OPTIONAL,-- The IE above is conditional on the UE state.releaseCause ReleaseCause

}

-- ***************************************************---- RRC CONNECTION RELEASE for CCCH---- ***************************************************

RRCConnectionRelease-CCCH::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionRelease-CCCH-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionRelease-CCCH-v1-IEs ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,-- The rest of the message is identical to the one sent on DCCH.

rrcConnectionRelease RRCConnectionRelease-v1-IEs}

-- ***************************************************---- RRC CONNECTION RELEASE COMPLETE---- ***************************************************

RRCConnectionReleaseComplete ::= SEQUENCE {-- User equipment IEs

errorIndication FailureCauseWithProtErr OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- RRC CONNECTION RELEASE COMPLETE for CCCH---- ***************************************************

RRCConnectionReleaseComplete-CCCH ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,-- The rest of the message is identical to the one sent on DCCH.

rrcConnectionReleaseComplete RRCConnectionReleaseComplete}

-- ***************************************************---- RRC CONNECTION REQUEST---- ***************************************************

RRCConnectionRequest ::= SEQUENCE {

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-- TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs

initialUE-Identity InitialUE-Identity,establishmentCause EstablishmentCause,protocolErrorIndicator ProtocolErrorIndicator,-- The IE above is MD, but for compactness reasons no default value-- has been assigned to it.

-- Measurement IEsmeasuredResultsOnRACH MeasuredResultsOnRACH OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RRC CONNECTION SETUP---- ***************************************************

RRCConnectionSetup::= CHOICE {v1 SEQUENCE {

v1-IEs RRCConnectionSetup-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

RRCConnectionSetup-v1-IEs ::= SEQUENCE {-- TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs

initialUE-Identity InitialUE-Identity,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI,new-c-RNTI C-RNTI OPTIONAL,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient,capabilityUpdateRequirement CapabilityUpdateRequirement OPTIONAL,-- TABULAR: If the IE is not present, the default value defined in 10.3.3.2 shall-- be used.

-- Radio bearer IEssrb-InformationSetupList SRB-InformationSetupList2,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList,dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfoList,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

-- ***************************************************---- RRC CONNECTION SETUP COMPLETE---- ***************************************************

RRCConnectionSetupComplete ::= SEQUENCE {-- TABULAR: Integrity protection shall not be performed on this message.-- User equipment IEs

startList STARTList,ue-RadioAccessCapability UE-RadioAccessCapability OPTIONAL,ue-SystemSpecificCapability InterSystemMessage OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- RRC STATUS---- ***************************************************

RRCStatus ::= SEQUENCE {-- Other IEs

protocolErrorInformation ProtocolErrorInformation,

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-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SecurityModeCommand ::= CHOICE {v1 SEQUENCE {

v1-IEs SecurityModeCommand-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

-- ***************************************************---- SECURITY MODE COMMAND---- ***************************************************

SecurityModeCommand-v1-IEs ::= SEQUENCE {-- TABULAR: Integrity protection shall always be performed on this message.

-- User equipment IEssecurityCapability SecurityCapability,cipheringModeInfo CipheringModeInfo OPTIONAL,integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL

}

-- ***************************************************---- SECURITY MODE COMPLETE---- ***************************************************

SecurityModeComplete ::= SEQUENCE {-- TABULAR: Integrity protection shall always be performed on this message.

-- User equipment IEsul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- SECURITY MODE FAILURE---- ***************************************************

SecurityModeFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- SIGNALLING CONNECTION RELEASE---- ***************************************************

SignallingConnectionRelease::= CHOICE {v1 SEQUENCE {

v1-IEs SignallingConnectionRelease-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

SignallingConnectionRelease-v1-IEs ::= SEQUENCE {-- Core network IEs

signallingFlowInfoList SignallingFlowInfoList}

-- ***************************************************---- SIGNALLING CONNECTION RELEASE REQUEST

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---- ***************************************************

SignallingConnectionReleaseRequest ::= SEQUENCE {-- Core network IEs

signallingFlowInfoList SignallingFlowInfoList,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- SYSTEM INFORMATION for BCH---- ***************************************************

SystemInformation-BCH ::= SEQUENCE {-- Other information elements

sfn-Prime SFN-Prime,payload CHOICE {

noSegment NULL,firstSegment FirstSegment,subsequentSegment SubsequentSegment,lastSegmentShort LastSegmentShort,lastAndFirst SEQUENCE {

lastSegmentShort LastSegmentShort,firstSegment FirstSegmentShort

},lastAndComplete SEQUENCE {

completeSIB-List CompleteSIB-List,lastSegment LastSegment

},lastAndCompleteAndFirst SEQUENCE {

lastSegment LastSegment,completeSIB-List CompleteSIB-List,firstSegment FirstSegmentShort

},completeSIB-List CompleteSIB-List,completeAndFirst SEQUENCE {

completeSIB-List CompleteSIB-List,firstSegment FirstSegmentShort

},completeSIB CompleteSIB,lastSegment LastSegment

}}

-- ***************************************************---- SYSTEM INFORMATION for FACH---- ***************************************************

SystemInformation-FACH ::= SEQUENCE {-- Other information elements

payload CHOICE {noSegment NULL,firstSegment FirstSegment,subsequentSegment SubsequentSegment,lastSegmentShort LastSegmentShort,lastAndFirst SEQUENCE {

lastSegmentShort LastSegmentShort,firstSegment FirstSegmentShort

},lastAndComplete SEQUENCE {

completeSIB-List CompleteSIB-List,lastSegment LastSegment

},lastAndCompleteAndFirst SEQUENCE {

lastSegment LastSegment,completeSIB-List CompleteSIB-List,firstSegment FirstSegmentShort

},completeSIB-List CompleteSIB-List,completeAndFirst SEQUENCE {

completeSIB-List CompleteSIB-List,firstSegment FirstSegmentShort

},

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completeSIB CompleteSIB,lastSegment LastSegment

}}

-- ***************************************************---- First segment---- ***************************************************

FirstSegment ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,seg-Count SegCount,sib-Data-fixed SIB-Data-fixed

}

-- ***************************************************---- First segment (short)---- ***************************************************

FirstSegmentShort ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,seg-Count SegCount,sib-Data-variable SIB-Data-variable

}

-- ***************************************************---- Subsequent segment---- ***************************************************

SubsequentSegment ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,segmentIndex SegmentIndex,sib-Data-fixed SIB-Data-fixed

}

-- ***************************************************---- Last segment---- ***************************************************

LastSegment ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,segmentIndex SegmentIndex,sib-Data-fixed SIB-Data-fixed

-- In case the SIB data is less than 222 bits, padding shall be used-- The same padding bits shall be used as defined in clause 12.1

}

LastSegmentShort ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,segmentIndex SegmentIndex,sib-Data-variable SIB-Data-variable

}

-- ***************************************************---- Complete SIB---- ***************************************************

CompleteSIB-List ::= SEQUENCE (SIZE (1..maxSIBperMsg)) OFCompleteSIBshort

CompleteSIB ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,

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sib-Data-fixed SIB-Data-fixed-- In case the SIB data is less than 222 bits, padding shall be used-- The same padding bits shall be used as defined in clause 12.1

}

CompleteSIBshort ::= SEQUENCE {-- Other information elements

sib-Type SIB-Type,sib-Data-variable SIB-Data-variable

}

-- ***************************************************---- SYSTEM INFORMATION CHANGE INDICATION---- ***************************************************

SystemInformationChangeIndication ::= SEQUENCE {-- Other IEs

bcch-ModificationInfo BCCH-ModificationInfo,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}} -- ***************************************************---- TRANSPORT CHANNEL RECONFIGURATION---- ***************************************************

TransportChannelReconfiguration::= CHOICE {v1 SEQUENCE {

v1-IEs TransportChannelReconfiguration-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

TransportChannelReconfiguration-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,activationTime ActivationTime OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- Core network IEscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-AddReconfTransChInfoList UL-AddReconfTransChInfoList,modeSpecificTransChInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,addReconfTransChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

} OPTIONAL,dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-AddReconfTransChInfoList DL-AddReconfTransChInfoList,

-- Physical channel IEsfrequencyInfo FrequencyInfo OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,ul-ChannelRequirement UL-ChannelRequirement OPTIONAL,modeSpecificPhysChInfo CHOICE {

fdd SEQUENCE {dl-PDSCH-Information DL-PDSCH-Information OPTIONAL

},tdd NULL

},dl-CommonInformation DL-CommonInformation OPTIONAL,dl-InformationPerRL-List DL-InformationPerRL-List OPTIONAL

}

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-- ***************************************************---- TRANSPORT CHANNEL RECONFIGURATION COMPLETE---- ***************************************************

TransportChannelReconfigurationComplete ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- TABULAR: UL-TimingAdvance is applicable for TDD mode only.ul-TimingAdvance UL-TimingAdvance OPTIONAL,

-- Radio bearer IEsrb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- TRANSPORT CHANNEL RECONFIGURATION FAILURE---- ***************************************************

TransportChannelReconfigurationFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- TRANSPORT FORMAT COMBINATION CONTROL---- ***************************************************

TransportFormatCombinationControl ::= SEQUENCE {-- TABULAR: Integrity protection shall not be performed on this message when transmitting

this message-- on the transparent mode signalling DCCH.modeSpecificInfo CHOICE {

fdd NULL,tdd SEQUENCE {

tfcs-ID TFCS-Identity OPTIONAL}

},dpch-TFCS-InUplink TFC-Subset,tfc-ControlDuration TFC-ControlDuration OPTIONAL,-- The information element is not included when transmitting the message-- on the transparent mode signalling DCCH and is optional otherwise-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- TRANSPORT FORMAT COMBINATION CONTROL FAILURE---- ***************************************************

TransportFormatCombinationControlFailure ::= SEQUENCE {-- User equipment IEs

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- UE CAPABILITY ENQUIRY---- ***************************************************

UECapabilityEnquiry ::= CHOICE {v1 SEQUENCE {

v1-IEs UECapabilityEnquiry-v1-IEs,

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nonCriticalExtensions SEQUENCE {}},criticalExtensions SEQUENCE {}

}

UECapabilityEnquiry-v1-IEs ::= SEQUENCE {-- User equipment IEs

capabilityUpdateRequirement CapabilityUpdateRequirement}

-- ***************************************************---- UE CAPABILITY INFORMATION---- ***************************************************

UECapabilityInformation ::= SEQUENCE {-- User equipment IEs

ue-RadioAccessCapability UE-RadioAccessCapability OPTIONAL,-- Other IEs

ue-SystemSpecificCapability InterSystemMessage OPTIONAL,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

-- ***************************************************---- UE CAPABILITY INFORMATION CONFIRM---- ***************************************************

UECapabilityInformationConfirm ::= CHOICE {v1 SEQUENCE {

v1-IEs UECapabilityInformationConfirm-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

UECapabilityInformationConfirm-v1-IEs ::= SEQUENCE {}

-- ***************************************************---- UPLINK DIRECT TRANSFER---- ***************************************************

UplinkDirectTransfer ::= SEQUENCE {-- Core network IEs

flowIdentifier FlowIdentifier,nas-Message NAS-Message,

-- Measurement IEsmeasuredResultsOnRACH MeasuredResultsOnRACH OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- UPLINK PHYSICAL CHANNEL CONTROL---- ***************************************************

UplinkPhysicalChannelControl ::= CHOICE {v1 SEQUENCE {

v1-IEs UplinkPhysicalChannelControl-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

UplinkPhysicalChannelControl-v1-IEs ::= SEQUENCE {-- Physical channel IEs

ccTrCH-PowerControlInfo CCTrCH-PowerControlInfo OPTIONAL,timingAdvance UL-TimingAdvanceControl OPTIONAL,prach-ConstantValue ConstantValue OPTIONAL,

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pusch-ConstantValue ConstantValue OPTIONAL}

-- ***************************************************---- URA UPDATE---- ***************************************************

URAUpdate ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,ura-UpdateCause URA-UpdateCause,protocolErrorIndicator ProtocolErrorIndicatorWithInfo,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- URA UPDATE CONFIRM---- ***************************************************

URAUpdateConfirm ::= CHOICE {v1 SEQUENCE {

v1-IEs URAUpdateConfirm-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

URAUpdateConfirm-v1-IEs ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,cipheringModeInfo CipheringModeInfo OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- CN information elementscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL

}

-- ***************************************************---- URA UPDATE CONFIRM for CCCH---- ***************************************************

URAUpdateConfirm-CCCH ::= CHOICE {v1 SEQUENCE {

v1-IEs URAUpdateConfirm-CCCH-v1-IEs,nonCriticalExtensions SEQUENCE {}

},criticalExtensions SEQUENCE {}

}

URAUpdateConfirm-CCCH-v1-IEs ::= SEQUENCE {-- User equipment IEs

u-RNTI U-RNTI,-- The rest of the message is identical to the one sent on DCCH.

uraUpdateConfirm URAUpdateConfirm-v1-IEs}

-- ***************************************************---- UTRAN MOBILITY INFORMATION---- ***************************************************

UTRANMobilityInformation ::= SEQUENCE {-- User equipment IEs

integrityProtectionModeInfo IntegrityProtectionModeInfo OPTIONAL,

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cipheringModeInfo CipheringModeInfo OPTIONAL,new-U-RNTI U-RNTI OPTIONAL,new-C-RNTI C-RNTI OPTIONAL,drx-Indicator DRX-Indicator,utran-DRX-CycleLengthCoeff UTRAN-DRX-CycleLengthCoefficient OPTIONAL,

-- CN information elementscn-InformationInfo CN-InformationInfo OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Radio bearer IEsrb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- UTRAN MOBILITY INFORMATION CONFIRM---- ***************************************************

UTRANMobilityInformationConfirm ::= SEQUENCE {-- User equipment IEs

ul-IntegProtActivationInfo IntegrityProtActivationInfo OPTIONAL,-- Radio bearer IEs

rb-UL-CiphActivationTimeInfo RB-ActivationTimeInfo OPTIONAL,rb-WithPDCP-InfoList RB-WithPDCP-InfoList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

-- ***************************************************---- UTRAN MOBILITY INFORMATION FAILURE---- ***************************************************

UTRANMobilityInformationFailure ::= SEQUENCE {-- UE information elements

failureCause FailureCauseWithProtErr,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

END

11.3 信息元素定义

11.3.1 CN信息元素CoreNetwork-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

CN-DRX-CycleLengthCoefficientFROM UserEquipment-IEs

Min-P-REV,NAS-SystemInformationANSI-41,NID,P-REV,SID

FROM ANSI-41-IEs

maxCNdomains,maxSignallingFlow

FROM Constant-definitions;

CN-DomainIdentity ::= ENUMERATED {cs-domain,

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ps-domain,not-important,spare1 }

CN-DomainInformation ::= SEQUENCE {cn-DomainIdentity CN-DomainIdentity,cn-DomainSpecificNAS-Info NAS-SystemInformationGSM-MAP

}

CN-DomainInformationList ::= SEQUENCE (SIZE (1..maxCNdomains)) OFCN-DomainInformation

CN-DomainSysInfo ::= SEQUENCE {cn-DomainIdentity CN-DomainIdentity,cn-Type CHOICE {

gsm-MAP NAS-SystemInformationGSM-MAP,ansi-41 NAS-SystemInformationANSI-41

},cn-DRX-CycleLengthCoeff CN-DRX-CycleLengthCoefficient

}

CN-DomainSysInfoList ::= SEQUENCE (SIZE (1..maxCNdomains)) OFCN-DomainSysInfo

CN-InformationInfo ::= SEQUENCE {plmn-Identity PLMN-Identity OPTIONAL,cn-CommonGSM-MAP-NAS-SysInfo NAS-SystemInformationGSM-MAP OPTIONAL,cn-DomainInformationList CN-DomainInformationList OPTIONAL

}

Digit ::= INTEGER (0..9)

FlowIdentifier ::= INTEGER (0..63)

IMEI ::= SEQUENCE (SIZE (15)) OFIMEI-Digit

IMEI-Digit ::= INTEGER (0..15)

IMSI-GSM-MAP ::= SEQUENCE (SIZE (6..15)) OFDigit

LAI ::= SEQUENCE {plmn-Identity PLMN-Identity,lac BIT STRING (SIZE (16))

}

MCC ::= SEQUENCE (SIZE (3)) OFDigit

MNC ::= SEQUENCE (SIZE (2..3)) OFDigit

NAS-Message ::= OCTET STRING (SIZE (1..4095))

NAS-Synchronization-Indicator ::= BIT STRING(SIZE(4))

NAS-SystemInformationGSM-MAP ::= OCTET STRING (SIZE (1..8))

P-TMSI-GSM-MAP ::= BIT STRING (SIZE (32))

PagingRecordTypeID ::= ENUMERATED {imsi-GSM-MAP,tmsi-GSM-MAP-P-TMSI,imsi-DS-41,tmsi-DS-41 }

PLMN-Identity ::= SEQUENCE {mcc MCC,mnc MNC

}

PLMN-Type ::= CHOICE {gsm-MAP SEQUENCE {

plmn-Identity PLMN-Identity},ansi-41 SEQUENCE {

p-REV P-REV,

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min-P-REV Min-P-REV,sid SID,nid NID

},gsm-MAP-and-ANSI-41 SEQUENCE {

plmn-Identity PLMN-Identity,p-REV P-REV,min-P-REV Min-P-REV,sid SID,nid NID

},spare NULL

}

RAB-Identity ::= CHOICE {gsm-MAP-RAB-Identity BIT STRING (SIZE (8)),ansi-41-RAB-Identity BIT STRING (SIZE (8))

}

RAI ::= SEQUENCE {lai LAI,rac RoutingAreaCode

}

RoutingAreaCode ::= BIT STRING (SIZE (8))

ServiceDescriptor ::= CHOICE {gsm-MAP BIT STRING (SIZE (4)),ansi-41 BIT STRING (SIZE (4))

}

SignallingFlowInfoList ::= SEQUENCE (SIZE (1..maxSignallingFlow)) OFFlowIdentifier

TMSI-GSM-MAP ::= BIT STRING (SIZE (32))

END

11.3.2 UTRAN移动性信息元素UTRANMobility-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

MaxAllowedUL-TX-PowerFROM PhysicalChannel-IEs

HCS-ServingCellInformation,Q-QualMin,Q-RxlevMin

FROM Measurement-IEs

maxAC,maxMeasIntervals,maxOtherRAT,maxRAT,maxURA

FROM Constant-definitions;

AccessClassBarred ::= ENUMERATED {barred, notBarred }

AccessClassBarredList ::= SEQUENCE (SIZE (maxAC)) OFAccessClassBarred

AllowedIndicator ::= ENUMERATED {allowed, notAllowed }

CellAccessRestriction ::= SEQUENCE {cellBarred CellBarred,cellReservedForOperatorUse ReservedIndicator,cellReservedForSOLSA ReservedIndicator,accessClassBarredList AccessClassBarredList OPTIONAL

}

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CellBarred ::= CHOICE {barred SEQUENCE {

intraFreqCellReselectionInd AllowedIndicator,t-Barred T-Barred

},notBarred NULL

}

CellIdentity ::= BIT STRING (SIZE (28))

CellSelectQualityMeasure ::= ENUMERATED {cpich-Ec-N0, cpich-RSCP }

CellSelectReselectInfoSIB-3-4 ::= SEQUENCE {mappingInfo MappingInfo OPTIONAL,cellSelectQualityMeasure CHOICE {

cpich-Ec-No SEQUENCE {q-HYST-2-S Q-Hyst-S OPTIONAL-- Default value for q-HYST-2-S is q-HYST-1-S

},cpich-RSCP NULL

},modeSpecificInfo CHOICE {

fdd SEQUENCE {s-Intrasearch S-SearchQual OPTIONAL,s-Intersearch S-SearchQual OPTIONAL,s-SearchHCS S-SearchRXLEV OPTIONAL,rat-List RAT-FDD-InfoList OPTIONAL,q-QualMin Q-QualMin,q-RxlevMin Q-RxlevMin

},tdd SEQUENCE {

s-Intrasearch S-SearchRXLEV OPTIONAL,s-Intersearch S-SearchRXLEV OPTIONAL,s-SearchHCS S-SearchRXLEV OPTIONAL,rat-List RAT-TDD-InfoList OPTIONAL,q-RxlevMin Q-RxlevMin

}},q-Hyst-l-S Q-Hyst-S,t-Reselection-S T-Reselection-S,hcs-ServingCellInformation HCS-ServingCellInformation OPTIONAL,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power

}

MapParameter ::= INTEGER (0..99)

Mapping ::= SEQUENCE {rat RAT,mappingFunctionParameterList MappingFunctionParameterList

}

MappingFunctionParameter ::= SEQUENCE {functionType MappingFunctionType,mapParameter1 MapParameter OPTIONAL,mapParameter2 MapParameter,upperLimit UpperLimit OPTIONAL-- The parameter is conditional on the number of repetition

}

MappingFunctionParameterList ::= SEQUENCE (SIZE (1..maxMeasIntervals)) OFMappingFunctionParameter

MappingFunctionType ::= ENUMERATED {linear,functionType2,functionType3,functionType4 }

MappingInfo ::= SEQUENCE (SIZE (1..maxRAT)) OFMapping

-- Actual value = IE value * 2Q-Hyst-S ::= INTEGER (0..20)

RAT ::= ENUMERATED {utra-FDD,utra-TDD,

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gsm,cdma2000 }

RAT-FDD-Info ::= SEQUENCE {rat-Identifier RAT-Identifier,s-SearchRAT S-SearchQual,s-HCS-RAT S-SearchRXLEV OPTIONAL,s-Limit-SearchRAT S-SearchQual

}

RAT-FDD-InfoList ::= SEQUENCE (SIZE (1..maxOtherRAT)) OFRAT-FDD-Info

RAT-Identifier ::= ENUMERATED {gsm, cdma2000,spare1, spare2 }

RAT-TDD-Info ::= SEQUENCE {rat-Identifier RAT-Identifier,s-SearchRAT S-SearchRXLEV,s-HCS-RAT S-SearchRXLEV OPTIONAL,s-Limit-SearchRAT S-SearchRXLEV

}

RAT-TDD-InfoList ::= SEQUENCE (SIZE (1..maxOtherRAT)) OFRAT-TDD-Info

ReservedIndicator ::= ENUMERATED {reserved,notReserved }

-- Actual value = IE value * 2S-SearchQual ::= INTEGER (-16..10)

-- Actual value = (IE value * 2) + 1S-SearchRXLEV ::= INTEGER (-53..45)

T-Barred ::= ENUMERATED {s10, s20, s40, s80,s160, s320, s640, s1280 }

T-Reselection-S ::= INTEGER (0..31)

-- The used range depends on the RAT used.UpperLimit ::= INTEGER (1..91)

URA-Identity ::= BIT STRING (SIZE (16))

URA-IdentityList ::= SEQUENCE (SIZE (1..maxURA)) OFURA-Identity

END

11.3.3 UE信息元素UserEquipment-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

CN-DomainIdentity,IMEI,IMSI-GSM-MAP,LAI,P-TMSI-GSM-MAP,RAI,TMSI-GSM-MAP

FROM CoreNetwork-IEs

RB-ActivationTimeInfoListFROM RadioBearer-IEs

FrequencyInfo,PowerControlAlgorithm,TGPSI

FROM PhysicalChannel-IEs

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InterSystemInfoFROM Measurement-IEs

ProtocolErrorInformationFROM Other-IEs

maxASC,maxCNdomains,maxDRACclasses,maxFrequencybands,maxPage1,maxSystemCapability

FROM Constant-definitions;

ActivationTime ::= INTEGER (0..255)-- TABULAR : value 'now' always appear as default, and is encoded by absence of the field

BackoffControlParams ::= SEQUENCE {n-AP-RetransMax N-AP-RetransMax,n-AccessFails N-AccessFails,nf-BO-NoAICH NF-BO-NoAICH,ns-BO-Busy NS-BO-Busy,nf-BO-AllBusy NF-BO-AllBusy,nf-BO-Mismatch NF-BO-Mismatch,t-CPCH T-CPCH

}

C-RNTI ::= BIT STRING (SIZE (16))

CapabilityUpdateRequirement ::= SEQUENCE {ue-RadioCapabilityUpdateRequirement BOOLEAN,systemSpecificCapUpdateReqList SystemSpecificCapUpdateReqList OPTIONAL

}

CellUpdateCause ::= ENUMERATED { cellReselection,periodicCellUpdate,ul-DataTransmission,pagingResponse,rb-ControlResponse,re-enteredServiceArea,spare1, spare2 }

ChipRateCapability ::= ENUMERATED {mcps3-84, mcps1-28 }

CipheringAlgorithm ::= ENUMERATED {uea0, uea1, spare1, spare2,spare3, spare4, spare5, spare6,spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14 }

CipheringModeCommand ::= CHOICE {startRestart CipheringAlgorithm,stopCiphering NULL

}

CipheringModeInfo ::= SEQUENCE {cipheringModeCommand CipheringModeCommand,-- TABULAR: The ciphering algorithm is included in -- the CipheringModeCommand.activationTimeForDPCH ActivationTime OPTIONAL,rb-DL-CiphActivationTimeInfo RB-ActivationTimeInfoList OPTIONAL

}

CN-DRX-CycleLengthCoefficient ::= INTEGER (6..12)

CN-PagedUE-Identity ::= CHOICE {imsi-GSM-MAP IMSI-GSM-MAP,tmsi-GSM-MAP TMSI-GSM-MAP,p-TMSI-GSM-MAP P-TMSI-GSM-MAP,imsi-DS-41 IMSI-DS-41,tmsi-DS-41 TMSI-DS-41,spare1 NULL,spare2 NULL,spare3 NULL

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}

CompressedModeMeasCapability ::= SEQUENCE {fdd-Measurements BOOLEAN,-- TABULAR: The IEs below are made optional since they are conditional based-- on another information element. Their absence corresponds to the case where-- the condition is not true.tdd-Measurements BOOLEAN OPTIONAL,gsm-Measurements GSM-Measurements OPTIONAL,multiCarrierMeasurements BOOLEAN OPTIONAL

}

CPCH-Parameters ::= SEQUENCE {initialPriorityDelayList InitialPriorityDelayList OPTIONAL,backoffControlParams BackoffControlParams,powerControlAlgorithm PowerControlAlgorithm,-- TABULAR: TPC step size nested inside PowerControlAlgorithmdl-DPCCH-BER DL-DPCCH-BER

}

DL-DPCCH-BER ::= INTEGER (0..63)

DL-PhysChCapabilityFDD ::= SEQUENCE {maxSimultaneousCCTrCH-Count MaxSimultaneousCCTrCH-Count,maxNoDPCH-PDSCH-Codes INTEGER (1..8),maxNoPhysChBitsReceived MaxNoPhysChBitsReceived,supportForSF-512 BOOLEAN,supportOfPDSCH BOOLEAN,simultaneousSCCPCH-DPCH-Reception SimultaneousSCCPCH-DPCH-Reception

}

DL-PhysChCapabilityTDD ::= SEQUENCE {maxSimultaneousCCTrCH-Count MaxSimultaneousCCTrCH-Count,maxTS-PerFrame MaxTS-PerFrame,maxPhysChPerFrame MaxPhysChPerFrame,minimumSF MinimumSF-DL,supportOfPDSCH BOOLEAN,maxPhysChPerTS MaxPhysChPerTS

}

DL-TransChCapability ::= SEQUENCE {maxNoBitsReceived MaxNoBits,maxConvCodeBitsReceived MaxNoBits,turboDecodingSupport TurboSupport,maxSimultaneousTransChs MaxSimultaneousTransChsDL,maxReceivedTransportBlocks MaxTransportBlocksDL,maxNumberOfTFC-InTFCS MaxNumberOfTFC-InTFCS-DL,maxNumberOfTF MaxNumberOfTF

}

DRAC-SysInfo ::= SEQUENCE {transmissionProbability TransmissionProbability,maximumBitRate MaximumBitRate

}

DRAC-SysInfoList ::= SEQUENCE (SIZE (1..maxDRACclasses)) OFDRAC-SysInfo

DRX-Indicator ::= ENUMERATED {noDRX,drxWithCellUpdating,drxWithURA-Updating,spare1 }

ESN-DS-41 ::= BIT STRING (SIZE (32))

EstablishmentCause ::= ENUMERATED {originatingConversationalCall,originatingStreamingCall, originatingInteractiveCall,originatingBackgroundCall,originatingSubscribedTrafficCall,terminatingConversationalCall,terminatingStreamingCall,terminatingInteractiveCall,terminatingBackgroundCall,emergencyCall,

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interSystemCellReselection,registration,detach,sms,callRe-establishment,spare1, spare2, spare3, spare4,spare5, spare6, spare7, spare8,spare9, spare10, spare11, spare12,spare13, spare14, spare15, spare16,spare17 }

FailureCauseWithProtErr ::= CHOICE {configurationUnsupported NULL,physicalChannelFailure NULL,incompatibleSimultaneousReconfiguration

NULL,compressedModeRuntimeError TGPSI,protocolError ProtocolErrorInformation,spare1 NULL,spare2 NULL,spare3 NULL

}

GSM-Measurements ::= SEQUENCE {gsm900 BOOLEAN,dcs1800 BOOLEAN,gsm1900 BOOLEAN

}

ICS-Version ::= ENUMERATED {r99,spare1, spare2, spare3, spare4,spare5, spare6, spare7 }

IMSI-and-ESN-DS-41 ::= SEQUENCE {imsi-DS-41 IMSI-DS-41,esn-DS-41 ESN-DS-41

}

IMSI-DS-41 ::= OCTET STRING (SIZE (5..7))

InitialPriorityDelayList ::= SEQUENCE (SIZE (maxASC)) OFNS-IP

InitialUE-Identity ::= CHOICE {imsi IMSI-GSM-MAP,tmsi-and-LAI TMSI-and-LAI-GSM-MAP,p-TMSI-and-RAI P-TMSI-and-RAI-GSM-MAP,imei IMEI,esn-DS-41 ESN-DS-41,imsi-DS-41 IMSI-DS-41,imsi-and-ESN-DS-41 IMSI-and-ESN-DS-41,tmsi-DS-41 TMSI-DS-41,spare1 NULL,spare2 NULL,spare3 NULL,spare4 NULL,spare5 NULL,spare6 NULL,spare7 NULL,spare8 NULL

}

IntegrityCheckInfo ::= SEQUENCE {messageAuthenticationCode MessageAuthenticationCode,rrc-MessageSequenceNumber RRC-MessageSequenceNumber

}

IntegrityProtActivationInfo ::= SEQUENCE {rrc-MessageSequenceNumberList RRC-MessageSequenceNumberList

}

IntegrityProtectionAlgorithm ::= ENUMERATED {uia1, spare1, spare2, spare3,spare4, spare5, spare6, spare7,spare8, spare9, spare10, spare11,spare12, spare13, spare14, spare15 }

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IntegrityProtectionModeCommand ::= CHOICE {startIntegrityProtection SEQUENCE {

integrityProtInitNumber IntegrityProtInitNumber},modify SEQUENCE {

dl-IntegrityProtActivationInfo IntegrityProtActivationInfo},spare1 NULL,spare2 NULL

}

IntegrityProtectionModeInfo ::= SEQUENCE {integrityProtectionModeCommand IntegrityProtectionModeCommand,-- TABULAR: DL integrity protection activation info and Integrity-- protection intialization number have been nested inside -- IntegrityProtectionModeCommand.integrityProtectionAlgorithm IntegrityProtectionAlgorithm OPTIONAL

}

IntegrityProtInitNumber ::= BIT STRING (SIZE (32))

LCS-Capability ::= SEQUENCE {standaloneLocMethodsSupported BOOLEAN,ue-BasedOTDOA-Supported BOOLEAN,networkAssistedGPS-Supported NetworkAssistedGPS-Supported,gps-ReferenceTimeCapable BOOLEAN,supportForIDL BOOLEAN

}

MaxHcContextSpace ::= ENUMERATED {by512, by1024, by2048, by4096, by8192, spare1, spare2, spare3 }

MaximumAM-EntityNumberRLC-Cap ::= ENUMERATED {am3, am4, am5, am6, am8, am16, am32, spare1 }

-- Actual value = IE value * 16MaximumBitRate ::= INTEGER (0..32)

MaximumRLC-WindowSize ::= ENUMERATED { mws2047, mws4095 }

MaxNoDPDCH-BitsTransmitted ::= ENUMERATED {b600, b1200, b2400, b4800, b9600, b19200, b28800, b38400,b48000, b57600, spare1, spare2, spare3, spare4, spare5, spare6 }

MaxNoBits ::= ENUMERATED {b640, b1280, b2560, b3840, b5120,b6400, b7680, b8960, b10240,b20480, b40960, b81920, b163840,spare1, spare2, spare3 }

MaxNoPhysChBitsReceived ::= ENUMERATED {b600, b1200, b2400, b3600, b4800, b7200, b9600, b14400, b19200, b28800, b38400, b48000, b57600, b67200, b76800, spare1 }

MaxNoSCCPCH-RL ::= ENUMERATED {rl1, spare1, spare2, spare3,spare4, spare5, spare6, spare7 }

MaxNumberOfTF ::= ENUMERATED {tf32, tf64, tf128, tf256,tf512, tf1024, spare1, spare2 }

MaxNumberOfTFC-InTFCS-DL ::= ENUMERATED {tfc16, tfc32, tfc48, tfc64, tfc96, tfc128, tfc256, tfc512, tfc1024,spare1, spare2, spare3, spare4,

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spare5, spare6, spare7 }

MaxNumberOfTFC-InTFCS-UL ::= ENUMERATED {tfc4, tfc8, tfc16, tfc32, tfc48, tfc64, tfc96, tfc128, tfc256, tfc512, tfc1024,spare1, spare2, spare3, spare4,spare5 }

-- TABULAR: Used range in Release99 is 1..224, values 225-256 are spare valuesMaxPhysChPerFrame ::= INTEGER (1..256)

MaxPhysChPerTimeslot ::= ENUMERATED {ts1, ts2 }

MaxPhysChPerTS ::= INTEGER (1..16)

MaxSimultaneousCCTrCH-Count ::= INTEGER (1..8)

MaxSimultaneousTransChsDL ::= ENUMERATED {e4, e8, e16, e32 }

MaxSimultaneousTransChsUL ::= ENUMERATED {e2, e4, e8, e16, e32,spare1, spare2, spare3 }

MaxTransportBlocksDL ::= ENUMERATED {tb4, tb8, tb16, tb32, tb48,tb64, tb96, tb128, tb256, tb512,spare1, spare2, spare3,spare4, spare5, spare6 }

MaxTransportBlocksUL ::= ENUMERATED {tb2, tb4, tb8, tb16, tb32, tb48,tb64, tb96, tb128, tb256, tb512,spare1, spare2, spare3,spare4, spare5 }

-- TABULAR: Used range in Release99 is 1..14MaxTS-PerFrame ::= INTEGER (1..16)

-- TABULAR: This IE contains dependencies to UE-MultiModeRAT-Capability,-- the conditional fields have been left mandatory for now.MeasurementCapability ::= SEQUENCE {

downlinkCompressedMode CompressedModeMeasCapability,uplinkCompressedMode CompressedModeMeasCapability

}

MessageAuthenticationCode ::= BIT STRING (SIZE (32))

MinimumSF-DL ::= ENUMERATED {sf1, sf16 }

MinimumSF-UL ::= ENUMERATED {sf1, sf2, sf4, sf8, sf16,spare1, spare2, spare3 }

MultiModeCapability ::= ENUMERATED {tdd, fdd, fdd-tdd }

MultiRAT-Capability ::= SEQUENCE {supportOfGSM BOOLEAN,supportOfMulticarrier BOOLEAN

}

N-300 ::= INTEGER (0..7)

N-301 ::= INTEGER (0..7)

N-302 ::= INTEGER (0..7)

N-303 ::= INTEGER (0..7)

N-304 ::= INTEGER (0..7)

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N-310 ::= INTEGER (0..7)

N-312 ::= ENUMERATED {s1, s50, s100, s200, s400,s600, s800, s1000 }

N-313 ::= ENUMERATED {s1, s2, s4, s10, s20, s50, s100, s200 }

N-315 ::= ENUMERATED {s1, s50, s100, s200, s400,s600, s800, s1000 }

N-AccessFails ::= INTEGER (1..64)

N-AP-RetransMax ::= INTEGER (1..64)

NetworkAssistedGPS-Supported ::= ENUMERATED {networkBased, ue-Based,bothNetworkAndUE-Based,noNetworkAssistedGPS }

NF-BO-AllBusy ::= INTEGER (0..31)

NF-BO-NoAICH ::= INTEGER (0..31)

NF-BO-Mismatch ::= INTEGER (0..127)

NS-BO-Busy ::= INTEGER (0..63)

NS-IP ::= INTEGER (0..28)

P-TMSI-and-RAI-GSM-MAP ::= SEQUENCE {p-TMSI P-TMSI-GSM-MAP,rai RAI

}

PagingCause ::= ENUMERATED {terminatingConversationalCall,terminatingStreamingCall,terminatingInteractiveCall,terminatingBackgroundCall,sms,spare1, spare2, spare3 }

PagingRecord ::= CHOICE {cn-Page SEQUENCE {

pagingCause PagingCause,cn-DomainIdentity CN-DomainIdentity,cn-pagedUE-Identity CN-PagedUE-Identity

},utran-Page U-RNTI

pagingCause PagingCause,cn-DomainIdentity CN-DomainIdentity,

}}

PagingRecordList ::= SEQUENCE (SIZE (1..maxPage1)) OFPagingRecord

PDCP-Capability ::= SEQUENCE {losslessSRNS-RelocationSupport BOOLEAN,supportForRfc2507 CHOICE {

notSupported NULL,supported MaxHcContextSpace

}}

PhysicalChannelCapability ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {downlinkPhysChCapability DL-PhysChCapabilityFDD,

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uplinkPhysChCapability UL-PhysChCapabilityFDD},tdd SEQUENCE {

downlinkPhysChCapability DL-PhysChCapabilityTDD,uplinkPhysChCapability UL-PhysChCapabilityTDD

}}

}

ProtocolErrorCause ::= ENUMERATED {asn1-ViolationOrEncodingError,messageTypeNonexistent,messageNotCompatibleWithReceiverState,ie-ValueNotComprehended,conditionalInformationElementError,messageExtensionNotComprehended,spare1, spare2 }

ProtocolErrorIndicator ::= ENUMERATED {noError, errorOccurred }

ProtocolErrorIndicatorWithInfo ::= CHOICE {noError NULL,errorOccurred ProtocolErrorInformation

}

RadioFrequencyBand ::= ENUMERATED {a, b, c,spare1 }

RadioFrequencyBandList ::= SEQUENCE (SIZE (1..maxFrequencybands)) OFRadioFrequencyBand

Re-EstablishmentTimer ::= CHOICE {t-314 T-314Value,t-315 T-315Value

}

RedirectionInfo ::= CHOICE {frequencyInfo FrequencyInfo,interSystemInfo InterSystemInfo,spare NULL

}

RejectionCause ::= ENUMERATED {congestion,unspecified,spare1, spare2 }

ReleaseCause ::= ENUMERATED {normalEvent,unspecified,pre-emptiveRelease,congestion,re-establishmentReject,

directedsignallingconnectionre-establishment,userInactivity,

spare1, spare2, spare3, spare4, spare5, spare6, spare7, spare8, spare9 }

RF-Capability ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {ue-PowerClass UE-PowerClass,txRxFrequencySeparation TxRxFrequencySeparation

},tdd SEQUENCE {

ue-PowerClass UE-PowerClass,radioFrequencyBandList RadioFrequencyBandList,chipRateCapability ChipRateCapability

}}

}

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RLC-Capability ::= SEQUENCE {totalRLC-AM-BufferSize TotalRLC-AM-BufferSize,maximumRLC-WindowSize MaximumRLC-WindowSize,maximumAM-EntityNumber MaximumAM-EntityNumberRLC-Cap

}

RRC-MessageSequenceNumber ::= INTEGER (0..15)

RRC-MessageSequenceNumberList ::= SEQUENCE (SIZE (4..5)) OFRRC-MessageSequenceNumber

RRC-MessageTX-Count ::= INTEGER (1..8)

S-RNTI ::= BIT STRING (SIZE (20))

S-RNTI-2 ::= INTEGER (0..1023)

SecurityCapability ::= SEQUENCE {cipheringAlgorithmCap BIT STRING (SIZE (16)),integrityProtectionAlgorithmCap BIT STRING (SIZE (16))

}

SimultaneousSCCPCH-DPCH-Reception ::= CHOICE {notSupported NULL,supported SEQUENCE {

maxNoSCCPCH-RL MaxNoSCCPCH-RL,simultaneousSCCPCH-DPCH-DPDCH-Reception

BOOLEAN-- The IE above is applicable only if IE Support of PDSCH = TRUE

}}

SRNC-Identity ::= BIT STRING (SIZE (12))

START ::= BIT STRING (SIZE (20))

STARTList ::= SEQUENCE (SIZE (1..maxCNdomains)) OFSTARTSingle

STARTSingle ::= SEQUENCE {cn-DomainIdentity CN-DomainIdentity,startValue START

}

SystemSpecificCapUpdateReq ::= ENUMERATED {gsm, spare1, spare2, spare3,spare4, spare5, spare6, spare7,spare8, spare9, spare10, spare11,spare12, spare13, spare14, spare15 }

SystemSpecificCapUpdateReqList ::= SEQUENCE (SIZE (1..maxSystemCapability)) OF SystemSpecificCapUpdateReq

T-300 ::= ENUMERATED {ms100, ms200, ms400, ms600, ms800,ms1000, ms1200, ms1400, ms1600,ms1800, ms2000, ms3000, ms4000,ms6000, ms8000 }

T-301 ::= ENUMERATED {ms100, ms200, ms400, ms600, ms800,ms1000, ms1200, ms1400, ms1600,ms1800, ms2000, ms3000, ms4000,ms6000, ms8000 }

T-302 ::= ENUMERATED {ms100, ms200, ms400, ms600, ms800,ms1000, ms1200, ms1400, ms1600,ms1800, ms2000, ms3000, ms4000,ms6000, ms8000 }

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T-303 ::= ENUMERATED {ms100, ms200, ms400, ms600, ms800,ms1000, ms1200, ms1400, ms1600,ms1800, ms2000, ms3000, ms4000,ms6000, ms8000 }

T-304 ::= ENUMERATED {ms100, ms200, ms400, ms1000, ms2000,spare1, spare2, spare3 }

T-305 ::= ENUMERATED {noUpdate, m5, m10, m30,m60, m120, m360, m720 }

T-306 ::= ENUMERATED {noUpdate, m5, m10, m30,m60, m120, m360, m720 }

T-307 ::= ENUMERATED {s5, s10, s15, s20,s30, s40, s50, spare1 }

T-308 ::= ENUMERATED {ms40, ms80, ms160, ms320 }

T-309 ::= INTEGER (1..8)

T-310 ::= ENUMERATED {ms40, ms80, ms120, ms160,ms200, ms240, ms280, ms320 }

T-311 ::= ENUMERATED {ms250, ms500, ms750, ms1000,ms1250, ms1500, ms1750, ms2000 }

T-312 ::= INTEGER (0..15)

T-313 ::= INTEGER (0..15)

T-314 ::= ENUMERATED {s0, s2, s4, s6, s8,s12, s16, s20 }

T-314Value ::= SEQUENCE {t-314 T-314 OPTIONAL

}

T-315 ::= ENUMERATED {s0, s10, s30, s60, s180,s600, s1200, s1800 }

T-315Value ::= SEQUENCE {t-315 T-315 OPTIONAL

}

T-CPCH ::= ENUMERATED {ct0, ct1 }

TMSI-and-LAI-GSM-MAP ::= SEQUENCE {tmsi TMSI-GSM-MAP,lai LAI

}

TMSI-DS-41 ::= OCTET STRING (SIZE (2..12))

TotalRLC-AM-BufferSize ::= ENUMERATED {kb2, kb10, kb50, kb100,kb150, kb500, kb1000,spare1 }

-- Actual value = IE value * 0.125TransmissionProbability ::= INTEGER (1..8)

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TransportChannelCapability ::= SEQUENCE {dl-TransChCapability DL-TransChCapability,ul-TransChCapability UL-TransChCapability

}

TurboSupport ::= CHOICE {notSupported NULL,supported MaxNoBits

}

TxRxFrequencySeparation ::= ENUMERATED {mhz190, mhz174-8-205-2,mhz134-8-245-2, spare1 }

U-RNTI ::= SEQUENCE {srnc-Identity SRNC-Identity,s-RNTI S-RNTI

}

U-RNTI-Short ::= SEQUENCE {srnc-Identity SRNC-Identity,s-RNTI-2 S-RNTI-2

}

UE-ConnTimersAndConstants ::= SEQUENCE {-- Optional is used also for parameters for which the default value is the last one read in SIB1

t-301 T-301 DEFAULT ms2000,n-301 N-301 DEFAULT 2,t-302 T-302 DEFAULT ms4000,n-302 N-302 DEFAULT 3,t-303 T-303 DEFAULT ms2000,n-303 N-303 DEFAULT 3,t-304 T-304 OPTIONAL,n-304 N-304 OPTIONAL,t-305 T-305 DEFAULT m30,t-306 T-306 DEFAULT m30,t-307 T-307 DEFAULT s30,t-308 T-308 OPTIONAL,t-309 T-309 OPTIONAL,t-310 T-310 DEFAULT ms160,n-310 N-310 DEFAULT 4,t-311 T-311 DEFAULT ms2000,t-312 T-312 DEFAULT 1,n-312 N-312 DEFAULT s1,t-313 T-313 OPTIONAL,n-313 N-313 OPTIONAL,t-314 T-314 OPTIONAL,t-315 T-315 OPTIONAL,n-315 N-315 OPTIONAL

}

UE-DCHTimersAndConstants ::= SEQUENCE {t-304 T-304 DEFAULT ms2000,n-304 N-304 DEFAULT 2,t-308 T-308 DEFAULT ms160,t-309 T-309 DEFAULT 5,t-310 T-310 OPTIONAL,n-310 N-310 OPTIONAL,t-311 T-311 OPTIONAL,t-313 T-313 DEFAULT 3,n-313 N-313 DEFAULT s20,t-314 T-314 DEFAULT s12,t-315 T-315 DEFAULT s180,n-315 N-315 DEFAULT s1

}

UE-IdleTimersAndConstants ::= SEQUENCE {t-300 T-300,n-300 N-300,t-312 T-312,n-312 N-312

}

UE-MultiModeRAT-Capability ::= SEQUENCE {

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multiRAT-CapabilityList MultiRAT-Capability,multiModeCapability MultiModeCapability

}

UE-PowerClass ::= INTEGER (1..4)

UE-RadioAccessCapability ::= SEQUENCE {ics-Version ICS-Version,pdcp-Capability PDCP-Capability,rlc-Capability RLC-Capability,transportChannelCapability TransportChannelCapability,rf-Capability RF-Capability,physicalChannelCapability PhysicalChannelCapability,ue-MultiModeRAT-Capability UE-MultiModeRAT-Capability,securityCapability SecurityCapability,lcs-Capability LCS-Capability,modeSpecificInfo CHOICE {

fdd SEQUENCE {measurementCapability MeasurementCapability

},tdd NULL

}}

UL-PhysChCapabilityFDD ::= SEQUENCE {maxNoDPDCH-BitsTransmitted MaxNoDPDCH-BitsTransmitted,supportOfPCPCH BOOLEAN

}

UL-PhysChCapabilityTDD ::= SEQUENCE {maxSimultaneousCCTrCH-Count MaxSimultaneousCCTrCH-Count,maxTS-PerFrame MaxTS-PerFrame,maxPhysChPerTimeslot MaxPhysChPerTimeslot,minimumSF MinimumSF-UL,supportOfPUSCH BOOLEAN

}

UL-TransChCapability ::= SEQUENCE {maxNoBitsTransmitted MaxNoBits,maxConvCodeBitsTransmitted MaxNoBits,turboDecodingSupport TurboSupport,maxSimultaneousTransChs MaxSimultaneousTransChsUL,maxTransmittedBlocks MaxTransportBlocksUL,maxNumberOfTFC-InTFCS MaxNumberOfTFC-InTFCS-UL,maxNumberOfTF MaxNumberOfTF

}

URA-UpdateCause ::= ENUMERATED { changeOfURA, periodicURAUpdate, re-enteredServiceArea,spare1, spare2, spare3,spare4, spare5 }

UTRAN-DRX-CycleLengthCoefficient ::= INTEGER (3..12)

WaitTime ::= INTEGER (0..15)

END

11.3.4 RB信息元素RadioBearer-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

CN-DomainIdentity,NAS-Synchronization-Indicator,RAB-Identity

FROM CoreNetwork-IEs

Re-EstablishmentTimerFROM UserEquipment-IEs

PreDefTransChConfiguration,

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TransportChannelIdentityFROM TransportChannel-IEs

PreDefPhyChConfigurationFROM PhysicalChannel-IEs

maxLoCHperRLC,maxPDCPAlgoType,maxRABsetup,maxRB,maxRBallRABs,maxRBMuxOptions,maxRBperRAB,maxSRBsetup

FROM Constant-definitions;

AlgorithmSpecificInfo ::= CHOICE {rfc2507-Info RFC2507-Info,spare1 NULL,spare2 NULL,spare3 NULL,spare4 NULL,spare5 NULL,spare6 NULL,spare7 NULL

}

-- Upper limit is 2^32 - 1COUNT-C ::= INTEGER (0..4294967295)

-- Upper limit is 2^25 - 1COUNT-C-MSB ::= INTEGER (0..33554431)

DL-AM-RLC-Mode ::= SEQUENCE {inSequenceDelivery BOOLEAN,receivingWindowSize ReceivingWindowSize,dl-RLC-StatusInfo DL-RLC-StatusInfo

}

DL-LogicalChannelMapping ::= SEQUENCE {-- TABULAR: DL-TransportChannelType contains TransportChannelIdentity as well.dl-TransportChannelType DL-TransportChannelType,logicalChannelIdentity LogicalChannelIdentity OPTIONAL

}

DL-LogicalChannelMappingList ::= SEQUENCE (SIZE (1..maxLoCHperRLC)) OFDL-LogicalChannelMapping

DL-RLC-Mode ::= CHOICE {dl-AM-RLC-Mode DL-AM-RLC-Mode,dl-UM-RLC-Mode NULL,dl-TM-RLC-Mode DL-TM-RLC-Mode,spare NULL

}

DL-RLC-StatusInfo ::= SEQUENCE {timerStatusProhibit TimerStatusProhibit OPTIONAL,timerEPC TimerEPC OPTIONAL,missingPU-Indicator BOOLEAN,timerStatusPeriodic TimerStatusPeriodic OPTIONAL

}

DL-TM-RLC-Mode ::= SEQUENCE {segmentationIndication BOOLEAN

}

DL-TransportChannelType ::= CHOICE {dch TransportChannelIdentity,fach NULL,dsch TransportChannelIdentity

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}

ExpectReordering ::= ENUMERATED {reorderingNotExpected,reorderingExpected }

ExplicitDiscard ::= SEQUENCE {timerMRW TimerMRW,timerDiscard TimerDiscard,maxMRW MaxMRW

}

HeaderCompressionInfo ::= SEQUENCE {algorithmSpecificInfo AlgorithmSpecificInfo

}

HeaderCompressionInfoList ::= SEQUENCE (SIZE (1..maxPDCPAlgoType)) OFHeaderCompressionInfo

LogicalChannelIdentity ::= INTEGER (1..15)

LogicalChannelMaxLoss ::= ENUMERATED {lcm0, lcm5, lcm10, lcm15, lcm20, lcm25,lcm30, lcm35, lcm40, lcm45, lcm50, lcm55,lcm60, lcm65, lcm70, lcm75, lcm80, lcm85,lcm90, lcm95, lcm100 }

LosslessSRNS-RelocSupport ::= CHOICE {supported MaxPDCP-SN,notSupported NULL

}

MAC-LogicalChannelPriority ::= INTEGER (1..8)

MaxDAT ::= ENUMERATED {dat1, dat2, dat3, dat4, dat5, dat6,dat7, dat8, dat9, dat10, dat15, dat20,dat25, dat30, dat35, dat40 }

MaxDAT-Retransmissions ::= SEQUENCE {maxDAT MaxDAT,timerMRW TimerMRW,maxMRW MaxMRW

}

MaxMRW ::= ENUMERATED {mm1, mm4, mm6, mm8, mm12, mm16,mm24, mm32, spare1, spare2, spare3,spare4, spare5, spare6, spare7, spare8 }

MaxPDCP-SN ::= ENUMERATED {sn255, sn65535 }

MaxRST ::= ENUMERATED {rst1, rst4, rst6, rst8, rst12,rst16, rst24, rst32,spare1, spare2, spare3, spare4,spare5, spare6, spare7, spare8 }

NoExplicitDiscard ::= ENUMERATED {dt10, dt20, dt30, dt40, dt50,dt60, dt70, dt80, dt90, dt100 }

PDCP-Info ::= SEQUENCE {losslessSRNS-RelocSupport LosslessSRNS-RelocSupport OPTIONAL,pdcp-PDU-Header PDCP-PDU-Header,-- TABULAR: The IE above is MD in the tabular format and it can be encoded-- in one bit, so the OPTIONAL is removed for compactness.headerCompressionInfoList HeaderCompressionInfoList OPTIONAL

}

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PDCP-InfoReconfig ::= SEQUENCE {pdcp-Info PDCP-Info,pdcp-SN-Info PDCP-SN-Info

}

PDCP-PDU-Header ::= ENUMERATED {present, absent }

PDCP-SN-Info ::= INTEGER (0..65535)

Poll-PU ::= ENUMERATED {pu1, pu2, pu4, pu8, pu16, pu32, pu64, pu128,spare1, spare2, spare3, spare4, spare5, spare6, spare7, spare8 }

Poll-SDU ::= ENUMERATED {sdu1, sdu4, sdu16, sdu64,spare1, spare2, spare3, spare4 }

PollingInfo ::= SEQUENCE {timerPollProhibit TimerPollProhibit OPTIONAL,timerPoll TimerPoll OPTIONAL,poll-PU Poll-PU OPTIONAL,poll-SDU Poll-SDU OPTIONAL,lastTransmissionPU-Poll BOOLEAN,lastRetransmissionPU-Poll BOOLEAN,pollWindow PollWindow OPTIONAL,timerPollPeriodic TimerPollPeriodic OPTIONAL

}

PollWindow ::= ENUMERATED {pw50, pw60, pw70, pw80, pw85, pw90, pw95, pw99,spare1, spare2, spare3, spare4,spare5, spare6, spare7, spare8 }

PredefinedConfigIdentity ::= INTEGER (0..15)

PredefinedConfigValueTag ::= INTEGER (0..15)

PredefinedRB-Configuration ::= SEQUENCE {srb-InformationList SRB-InformationSetupList,rb-InformationList RB-InformationSetupList

}

PreDefRadioConfiguration ::= SEQUENCE {-- User equipment IEsre-EstablishmentTimer Re-EstablishmentTimer,-- Radio bearer IEspredefinedRB-Configuration PredefinedRB-Configuration,-- Transport channel IEspreDefTransChConfiguration PreDefTransChConfiguration,-- Physical channel IEspreDefPhyChConfiguration PreDefPhyChConfiguration

}

RAB-Info ::= SEQUENCE {rab-Identity RAB-Identity,cn-DomainIdentity CN-DomainIdentity,re-EstablishmentTimer Re-EstablishmentTimer

}

RAB-InformationReconfigList ::= SEQUENCE (SIZE (1.. maxRABsetup)) OFRAB-InformationReconfig

RAB-InformationReconfig ::= SEQUENCE {rab-Identity RAB-Identity,nas-Synchronization-Indicator NAS-Synchronization-Indicator

}

RAB-Info-Short ::= SEQUENCE {rab-Identity RAB-Identity,cn-DomainIdentity CN-DomainIdentity

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}

RAB-InformationSetup ::= SEQUENCE {rab-Info RAB-Info,nas-Synchronization-Indicator NAS-Synchronization-Indicator OPTIONAL,rb-InformationSetupList RB-InformationSetupList

}

RAB-InformationSetupList ::= SEQUENCE (SIZE (1..maxRABsetup)) OFRAB-InformationSetup

RB-ActivationTimeInfo ::= SEQUENCE {rb-Identity RB-Identity,rlc-SequenceNumber RLC-SequenceNumber

}

RB-ActivationTimeInfoList ::= SEQUENCE (SIZE (1..maxRB)) OFRB-ActivationTimeInfo

RB-COUNT-C-Information ::= SEQUENCE {rb-Identity RB-Identity,count-C-UL COUNT-C,count-C-DL COUNT-C

}

RB-COUNT-C-InformationList ::= SEQUENCE (SIZE (1..maxRBallRABs)) OFRB-COUNT-C-Information

RB-COUNT-C-MSB-Information ::= SEQUENCE {rb-Identity RB-Identity,count-C-MSB-UL COUNT-C-MSB,count-C-MSB-DL COUNT-C-MSB

}

RB-COUNT-C-MSB-InformationList ::= SEQUENCE (SIZE (1..maxRBallRABs)) OFRB-COUNT-C-MSB-Information

RB-Identity ::= INTEGER (0..31)

RB-IdentityList ::= SEQUENCE (SIZE (1..maxRB)) OFRB-Identity

RB-InformationAffected ::= SEQUENCE {rb-Identity RB-Identity,rb-MappingInfo RB-MappingInfo

}

RB-InformationAffectedList ::= SEQUENCE (SIZE (1..maxRB)) OFRB-InformationAffected

RB-InformationReconfig ::= SEQUENCE {rb-Identity RB-Identity,pdcp-Info PDCP-InfoReconfig OPTIONAL,rlc-InfoChoice RLC-InfoChoice OPTIONAL,rb-MappingInfo RB-MappingInfo OPTIONAL,rb-SuspendResume RB-SuspendResume OPTIONAL

}

RB-InformationReconfigList ::= SEQUENCE (SIZE (1..maxRB)) OFRB-InformationReconfig

RB-InformationReleaseList ::= SEQUENCE (SIZE (1..maxRB)) OFRB-Identity

RB-InformationSetup ::= SEQUENCE {rb-Identity RB-Identity,pdcp-Info PDCP-Info OPTIONAL,rlc-Info RLC-Info,rb-MappingInfo RB-MappingInfo

}

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RB-InformationSetupList ::= SEQUENCE (SIZE (1..maxRBperRAB)) OFRB-InformationSetup

RB-MappingInfo ::= SEQUENCE (SIZE (1..maxRBMuxOptions)) OFRB-MappingOption

RB-MappingOption ::= SEQUENCE {ul-LogicalChannelMappings UL-LogicalChannelMappings OPTIONAL,dl-LogicalChannelMappingList DL-LogicalChannelMappingList OPTIONAL

}

RB-SuspendResume ::= ENUMERATED {suspend, resume }

RB-WithPDCP-Info ::= SEQUENCE {rb-Identity RB-Identity,pdcp-SN-Info PDCP-SN-Info

}

RB-WithPDCP-InfoList ::= SEQUENCE (SIZE (1..maxRBallRABs)) OFRB-WithPDCP-Info

ReceivingWindowSize ::= ENUMERATED {rw1, rw8, rw16, rw32, rw64, rw128, rw256,rw512, rw768, rw1024, rw1536, rw2047, rw2560, rw3072, rw3584, rw4095 }

RFC2507-Info ::= SEQUENCE {f-MAX-PERIOD INTEGER (1..65535) DEFAULT 256,f-MAX-TIME INTEGER (1..255) DEFAULT 5,max-HEADER INTEGER (60..65535) DEFAULT 168,tcp-SPACE INTEGER (3..255) DEFAULT 15,non-TCP-SPACE INTEGER (3..65535) DEFAULT 15,expectReordering ExpectReordering-- TABULAR: The IE above has only two possible values, so using Optional or Default-- would be wasteful

}

RLC-Info ::= SEQUENCE {ul-RLC-Mode UL-RLC-Mode OPTIONAL,dl-RLC-Mode DL-RLC-Mode OPTIONAL

}

RLC-InfoChoice ::= CHOICE {rlc-Info RLC-Info,spare NULL

}

RLC-SequenceNumber ::= INTEGER (0..4095)

SRB-InformationSetup ::= SEQUENCE {rb-Identity RB-Identity OPTIONAL,-- The default value for the IE above is the smallest value not used yet.rlc-InfoChoice RLC-InfoChoice,rb-MappingInfo RB-MappingInfo

}

SRB-InformationSetupList ::= SEQUENCE (SIZE (1..maxSRBsetup)) OFSRB-InformationSetup

SRB-InformationSetupList2 ::= SEQUENCE (SIZE (3..4)) OFSRB-InformationSetup

TimerDiscard ::= ENUMERATED {td0-1, td0-25, td0-5, td0-75,td1, td1-25, td1-5, td1-75,td2, td2-5, td3, td3-5, td4,td4-5, td5, td7-5 }

TimerEPC ::= ENUMERATED {te50, te60, te70, te80, te90,te100, te120, te140, te160, te180,

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te200, te300, te400, te500, te700,te900, spare1, spare2, spare3,spare4, spare5, spare6, spare7,spare8, spare9, spare10, spare11,spare12, spare13, spare14, spare15,spare16 }

TimerMRW ::= ENUMERATED {te50, te60, te70, te80, te90, te100, te120, te140, te160, te180, te200, te300, te400, te500, te700, te900,spare1, spare2, spare3, spare4, spare5,spare6, spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14,spare15, spare16 }

TimerPoll ::= ENUMERATED {tp10, tp20, tp30, tp40, tp50,tp60, tp70, tp80, tp90, tp100,tp110, tp120, tp130, tp140, tp150,tp160, tp170, tp180, tp190, tp200,tp210, tp220, tp230, tp240, tp250,tp260, tp270, tp280, tp290, tp300,tp310, tp320, tp330, tp340, tp350,tp360, tp370, tp380, tp390, tp400,tp410, tp420, tp430, tp440, tp450,tp460, tp470, tp480, tp490, tp500,tp510, tp520, tp530, tp540, tp550,tp600, tp650, tp700, tp750, tp800,tp850, tp900, tp950, tp1000,

spare1, spare2, spare3, spare4, spare5,spare6, spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14,spare15, spare16 }

TimerPollPeriodic ::= ENUMERATED {tper100, tper200, tper300, tper400,tper500, tper750, tper1000, tper2000,spare1, spare2, spare3, spare4,spare5, spare6, spare7, spare8 }

TimerPollProhibit ::= ENUMERATED {tpp10, tpp20, tpp30, tpp40, tpp50,tpp60, tpp70, tpp80, tpp90, tpp100,tpp110, tpp120, tpp130, tpp140, tpp150,tpp160, tpp170, tpp180, tpp190, tpp200,tpp210, tpp220, tpp230, tpp240, tpp250,tpp260, tpp270, tpp280, tpp290, tpp300,tpp310, tpp320, tpp330, tpp340, tpp350,tpp360, tpp370, tpp380, tpp390, tpp400,tpp410, tpp420, tpp430, tpp440, tpp450,tpp460, tpp470, tpp480, tpp490, tpp500,tpp510, tpp520, tpp530, tpp540, tpp550,tpp600, tpp650, tpp700, tpp750, tpp800,tpp850, tpp900, tpp950, tpp1000,spare1, spare2, spare3, spare4, spare5,spare6, spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14, spare15, spare16 }

TimerRST ::= ENUMERATED {tr50, tr100, tr150, tr200, tr250, tr300, tr350, tr400, tr450, tr500, tr550,tr600, tr700, tr800, tr900, tr1000,spare1, spare2, spare3, spare4, spare5,spare6, spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14,spare15, spare16 }

TimerStatusPeriodic ::= ENUMERATED {tsp100, tsp200, tsp300, tsp400, tsp500,tsp750, tsp1000, tsp2000 }

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TimerStatusProhibit ::= ENUMERATED {tsp10,tsp20,tsp30,tsp40,tsp50,tsp60,tsp70,tsp80,tsp90,tsp100,tsp110,tsp120,tsp130,tsp140,tsp150,tsp160,tsp170,tsp180,tsp190,tsp200,tsp210,tsp220,tsp230,tsp240,tsp250,tsp260,tsp270,tsp280,tsp290,tsp300,tsp310,tsp320,tsp330,tsp340,tsp350,tsp360,tsp370,tsp380,tsp390,tsp400,tsp410,tsp420,tsp430,tsp440,tsp450,tsp460,tsp470,tsp480,tsp490,tsp500,tsp510,tsp520,tsp530,tsp540,tsp550,tsp600,tsp650,tsp700,tsp750,tsp800,tsp850,tsp900,tsp950,tsp1000,spare1, spare2, spare3, spare4, spare5,spare6, spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14, spare15, spare16 }

TransmissionRLC-Discard ::= CHOICE {timerBasedExplicit ExplicitDiscard,timerBasedNoExplicit NoExplicitDiscard,maxDAT-Retransmissions MaxDAT-Retransmissions,noDiscard MaxDAT

}

TransmissionWindowSize ::= ENUMERATED {tw1, tw8, tw16, tw32, tw64, tw128, tw256,tw512, tw768, tw1024, tw1536, tw2047, tw2560, tw3072, tw3584, tw4095 }

UL-AM-RLC-Mode ::= SEQUENCE {transmissionRLC-Discard TransmissionRLC-Discard,transmissionWindowSize TransmissionWindowSize,timerRST TimerRST,max-RST MaxRST,pollingInfo PollingInfo

}

UL-LogicalChannelMapping ::= SEQUENCE {-- TABULAR: UL-TransportChannelType contains TransportChannelIdentity as well.ul-TransportChannelType UL-TransportChannelType,logicalChannelIdentity LogicalChannelIdentity OPTIONAL,mac-LogicalChannelPriority MAC-LogicalChannelPriority,logicalChannelMaxLoss LogicalChannelMaxLoss DEFAULT lcm0

}

UL-LogicalChannelMappingList ::= SEQUENCE {rlc-LogicalChannelMappingIndicator BOOLEAN,ul-LogicalChannelMapping SEQUENCE (SIZE (maxLoCHperRLC)) OF

UL-LogicalChannelMapping}

UL-LogicalChannelMappings ::= CHOICE {oneLogicalChannel UL-LogicalChannelMapping,twoLogicalChannels UL-LogicalChannelMappingList

}

UL-RLC-Mode ::= CHOICE {ul-AM-RLC-Mode UL-AM-RLC-Mode,ul-UM-RLC-Mode UL-UM-RLC-Mode,ul-TM-RLC-Mode UL-TM-RLC-Mode,spare NULL

}

UL-TM-RLC-Mode ::= SEQUENCE {transmissionRLC-Discard TransmissionRLC-Discard OPTIONAL,segmentationIndication BOOLEAN

}

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UL-UM-RLC-Mode ::= SEQUENCE {transmissionRLC-Discard TransmissionRLC-Discard OPTIONAL

}

UL-TransportChannelType ::= CHOICE {dch TransportChannelIdentity,rach NULL,cpch NULL,usch NULL

}

END

11.3.5 传输信道信息元素TransportChannel-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

hiRM,maxCCTrCH,maxCPCHsets,maxDRACclasses,maxPDSCH-TFCIgroups,maxTF,maxTFC,maxTrCH

FROM Constant-definitions;

AllowedTFC-List ::= SEQUENCE (SIZE (1..maxTFC)) OFTFC-Value

AllowedTFI-List ::= SEQUENCE (SIZE (1..maxTF)) OFINTEGER (0..31)

BitModeRLC-SizeInfo ::= CHOICE {sizeType1 INTEGER (1..127),sizeType2 SEQUENCE {

part1 INTEGER (0..15),part2 INTEGER (1..7) OPTIONAL-- Actual size = (part1 * 8) + 128 + part2

},sizeType3 SEQUENCE {

part1 INTEGER (0..47),part2 INTEGER (1..15) OPTIONAL-- Actual size = (part1 * 16) + 256 + part2

},sizeType4 SEQUENCE {

part1 INTEGER (0..62),part2 INTEGER (1..63) OPTIONAL-- Actual size = (part1 * 64) + 1024 + part2

}}

BLER-QualityValue ::= INTEGER (0..63)

ChannelCodingType ::= CHOICE { noCoding NULL,convolutional CodingRate,turbo NULL

}

CodingRate ::= ENUMERATED {half,third }

CommonDynamicTF-Info ::= SEQUENCE {numberOfTransportBlocks NumberOfTransportBlocks,rlc-Size CHOICE {

fdd SEQUENCE {octetModeRLC-SizeInfoType2 OctetModeRLC-SizeInfoType2 OPTIONAL

},tdd SEQUENCE {

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commonTDD-Choice CHOICE {bitModeRLC-SizeInfo BitModeRLC-SizeInfo,octetModeRLC-SizeInfoType1 OctetModeRLC-SizeInfoType1

} OPTIONAL}

}}

CommonDynamicTF-Info-DynamicTTI ::= SEQUENCE {numberOfTransportBlocks NumberOfTransportBlocks,transmissionTimeInterval TransmissionTimeInterval,commonTDD-Choice CHOICE {

bitModeRLC-SizeInfo BitModeRLC-SizeInfo,octetModeRLC-SizeInfoType1 OctetModeRLC-SizeInfoType1

} OPTIONAL}

CommonDynamicTF-InfoList ::= SEQUENCE (SIZE (1..maxTF)) OFCommonDynamicTF-Info

CommonDynamicTF-InfoList-DynamicTTI ::= SEQUENCE (SIZE (1..maxTF)) OFCommonDynamicTF-Info-DynamicTTI

CommonTransChTFS ::= SEQUENCE {tti CHOICE {

tti10 CommonDynamicTF-InfoList,tti20 CommonDynamicTF-InfoList,tti40 CommonDynamicTF-InfoList,tti80 CommonDynamicTF-InfoList,dynamic CommonDynamicTF-InfoList-DynamicTTI

},semistaticTF-Information SemistaticTF-Information

}

CPCH-SetID ::= INTEGER (1..maxCPCHsets)

CRC-Size ::= ENUMERATED { crc0, crc8, crc12, crc16, crc24 }

DedicatedDynamicTF-Info ::= SEQUENCE {numberOfTransportBlocks NumberOfTransportBlocks,rlc-Size CHOICE {

bitMode BitModeRLC-SizeInfo,octetModeType1 OctetModeRLC-SizeInfoType1

} OPTIONAL}

DedicatedDynamicTF-Info-DynamicTTI ::= SEQUENCE {numberOfTransportBlocks NumberOfTransportBlocks,transmissionTimeInterval TransmissionTimeInterval,rlc-Size CHOICE {

bitMode BitModeRLC-SizeInfo,octetModeType1 OctetModeRLC-SizeInfoType1

} OPTIONAL}

DedicatedDynamicTF-InfoList ::= SEQUENCE (SIZE (1..maxTF)) OFDedicatedDynamicTF-Info

DedicatedDynamicTF-InfoList-DynamicTTI ::= SEQUENCE (SIZE (1..maxTF)) OFDedicatedDynamicTF-Info-DynamicTTI

DedicatedTransChTFS ::= SEQUENCE {tti CHOICE {

tti10 DedicatedDynamicTF-InfoList,tti20 DedicatedDynamicTF-InfoList,tti40 DedicatedDynamicTF-InfoList,tti80 DedicatedDynamicTF-InfoList,dynamic DedicatedDynamicTF-InfoList-DynamicTTI

},semistaticTF-Information SemistaticTF-Information

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}

DL-AddReconfTransChInfo2List ::= SEQUENCE (SIZE (1..maxTrCH)) OFDL-AddReconfTransChInformation2

DL-AddReconfTransChInfoList ::= SEQUENCE (SIZE (1..maxTrCH)) OFDL-AddReconfTransChInformation

DL-AddReconfTransChInformation ::= SEQUENCE {dl-transportChannelIdentity TransportChannelIdentity,tfs-SignallingMode CHOICE {

explicit TransportFormatSet,sameAsULTrCH TransportChannelIdentity

},dch-QualityTarget QualityTarget OPTIONAL,tm-SignallingInfo TM-SignallingInfo OPTIONAL

}

DL-AddReconfTransChInformation2 ::= SEQUENCE {transportChannelIdentity TransportChannelIdentity,tfs-SignallingMode CHOICE {

explicit TransportFormatSet,sameAsULTrCH TransportChannelIdentity

},qualityTarget QualityTarget

}

DL-CommonTransChInfo ::= SEQUENCE {sccpch-TFCS TFCS OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {tfcs-SignallingMode CHOICE {

explicit TFCS,sameAsUL NULL

} OPTIONAL},tdd SEQUENCE {

individualDL-CCTrCH-InfoList IndividualDL-CCTrCH-InfoListOPTIONAL

}}

}

DL-DeletedTransChInfoList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

DRAC-ClassIdentity ::= INTEGER (1..maxDRACclasses)

DRAC-StaticInformation ::= SEQUENCE {transmissionTimeValidity TransmissionTimeValidity,timeDurationBeforeRetry TimeDurationBeforeRetry,drac-ClassIdentity DRAC-ClassIdentity

}

DRAC-StaticInformationList ::= SEQUENCE (SIZE (1..maxTrCH)) OF DRAC-StaticInformation

ExplicitTFCS-Configuration ::= CHOICE {complete TFCS-ReconfAdd,addition TFCS-ReconfAdd,removal TFCS-RemovalList,replacement SEQUENCE {

tfcsRemoval TFCS-RemovalList,tfcsAdd TFCS-ReconfAdd

}}

GainFactor ::= INTEGER (0..15)

GainFactorInformation ::= CHOICE {

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signalledGainFactors SignalledGainFactors,computedGainFactors ReferenceTFC-ID

}

IndividualDL-CCTrCH-Info ::= SEQUENCE {dl-TFCS-Identity TFCS-Identity,tfcs-SignallingMode CHOICE {

explicit TFCS,sameAsUL TFCS-Identity

}}

IndividualDL-CCTrCH-InfoList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFIndividualDL-CCTrCH-Info

IndividualUL-CCTrCH-Info ::= SEQUENCE {ul-TFCS-Identity TFCS-Identity,ul-TFCS TFCS

}

IndividualUL-CCTrCH-InfoList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFIndividualUL-CCTrCH-Info

MessType ::= ENUMERATED {transportFormatCombinationControl, spare1 }

Non-allowedTFC-List ::= SEQUENCE (SIZE (1..maxTFC)) OFTFC-Value

NumberOfTransportBlocks::= CHOICE {zero NULL,one NULL,small INTEGER (2..17),long INTEGER (18..512)

}

OctetModeRLC-SizeInfoType1 ::= CHOICE {sizeType1 INTEGER (0..31),-- Actual size = (8 * sizeType1) + 16sizeType2 SEQUENCE {

part1 INTEGER (0..23),part2 INTEGER (1..3) OPTIONAL-- Actual size = (32 * part1) + 272 + (part2 * 8)

},sizeType3 SEQUENCE {

part1 INTEGER (0..61),part2 INTEGER (1..7) OPTIONAL-- Actual size = (64 * part1) + 1040 + (part2 * 8)

}}

OctetModeRLC-SizeInfoType2 ::= CHOICE {sizeType1 INTEGER (0..31),-- Actual size = (sizeType1 * 8) + 48sizeType2 INTEGER (0..63),-- Actual size = (sizeType2 * 16) + 312sizeType3 INTEGER (0..56)-- Actual size = (sizeType3 *64) + 1384

}

PowerOffsetInformation ::= SEQUENCE {gainFactorInformation GainFactorInformation,-- PowerOffsetPp-m is always absent in TDDpowerOffsetPp-m PowerOffsetPp-m OPTIONAL

}

PowerOffsetPp-m ::= INTEGER (-5..10)

PreDefTransChConfiguration ::= SEQUENCE {ul-CommonTransChInfo UL-CommonTransChInfo,ul-AddReconfTrChInfoList UL-AddReconfTransChInfoList,dl-CommonTransChInfo DL-CommonTransChInfo,dl-TrChInfoList DL-AddReconfTransChInfoList

}

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QualityTarget ::= SEQUENCE {bler-QualityValue BLER-QualityValue

}

RateMatchingAttribute ::= INTEGER (1..hiRM)

ReferenceTFC-ID ::= INTEGER (0..3)

RestrictedTrChInfo ::= SEQUENCE {restrictedTrChIdentity TransportChannelIdentity,allowedTFI-List AllowedTFI-List OPTIONAL

}

RestrictedTrChInfoList ::= SEQUENCE (SIZE (1..maxTrCH)) OFRestrictedTrChInfo

SemistaticTF-Information ::= SEQUENCE {-- TABULAR: Transmission time interval has been included in the IE CommonTransChTFS.channelCodingType ChannelCodingType,rateMatchingAttribute RateMatchingAttribute,crc-Size CRC-Size

}

SignalledGainFactors ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {gainFactorBetaC GainFactor

},tdd NULL

},gainFactorBetaD GainFactor,referenceTFC-ID ReferenceTFC-ID OPTIONAL

}

SplitTFCI-Signalling ::= SEQUENCE {splitType SplitType OPTIONAL,tfci-Field2-Length INTEGER (1..10) OPTIONAL,tfci-Field1-Information ExplicitTFCS-Configuration OPTIONAL,tfci-Field2-Information TFCI-Field2-Information OPTIONAL

}

SplitType ::= ENUMERATED {hardSplit, logicalSplit }

TFC-Subset ::= CHOICE {minimumAllowedTFC-Number TFC-Value,allowedTFC-List AllowedTFC-List,non-allowedTFC-List Non-allowedTFC-List,restrictedTrChInfoList RestrictedTrChInfoList

}

TFC-Value ::= INTEGER (0..1023)

TFCI-Field2-Information ::= CHOICE {tfci-Range TFCI-RangeList,explicit ExplicitTFCS-Configuration

}

TFCI-Range ::= SEQUENCE {maxTFCIField2Value INTEGER (1..1023),tfcs-InfoForDSCH TFCS-InfoForDSCH

}

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TFCI-RangeList ::= SEQUENCE (SIZE (1..maxPDSCH-TFCIgroups)) OFTFCI-Range

TFCS ::= CHOICE {normalTFCI-Signalling ExplicitTFCS-Configuration,splitTFCI-Signalling SplitTFCI-Signalling

}

TFCS-Identity ::= SEQUENCE {tfcs-ID INTEGER (1..8) DEFAULT 1,sharedChannelIndicator BOOLEAN

}

TFCS-IdentityPlain ::= INTEGER (1..8)

TFCS-InfoForDSCH ::= CHOICE {ctfc2bit INTEGER (0..3),ctfc4bit INTEGER (0..15),ctfc6bit INTEGER (0..63),ctfc8bit INTEGER (0..255),ctfc12bit INTEGER (0..4095),ctfc16bit INTEGER (0..65535),ctfc24bit INTEGER (0..16777215),spare NULL

}

TFCS-ReconfAdd ::= SEQUENCE{ctfcSize CHOICE{

ctfc2Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {ctfc2 INTEGER (0..3),gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc4Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {

ctfc4 INTEGER (0..15),gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc6Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {

ctfc8 INTEGER (0..63),gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc8Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {

ctfc16 INTEGER (0..255),gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc12Bit SEQUENCE (SIZE(1..maxTFC)) OF SEQUENCE {

ctfc12 INTEGER (0..4095), gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc16Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {

ctfc16 INTEGER(0..65535),gainFactorInformation PowerOffsetInformation OPTIONAL

},ctfc24Bit SEQUENCE (SIZE (1..maxTFC)) OF SEQUENCE {

ctfc24 INTEGER(0..16777215),gainFactorInformation PowerOffsetInformation OPTIONAL

},spare NULL

}}

TFCS-Removal ::= SEQUENCE {tfci INTEGER (0..1023)

}

TFCS-RemovalList ::= SEQUENCE (SIZE (1..maxTFC)) OFTFCS-Removal

TimeDurationBeforeRetry ::= INTEGER (1..256)

TM-SignallingInfo ::= SEQUENCE {messType MessType,tm-SignallingMode CHOICE {

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mode1 NULL,mode2 SEQUENCE {

ul-controlledTrChList UL-ControlledTrChList}

}}

TransmissionTimeInterval ::= ENUMERATED {tti10, tti20, tti40, tti80,spare1, spare2, spare3, spare4 }

TransmissionTimeValidity ::= INTEGER (1..256)

TransportChannelIdentity ::= INTEGER (1..32)

TransportFormatSet ::= CHOICE {dedicatedTransChTFS DedicatedTransChTFS,commonTransChTFS CommonTransChTFS

}

UL-AddReconfTransChInfoList ::= SEQUENCE (SIZE (1..maxTrCH)) OFUL-AddReconfTransChInformation

UL-AddReconfTransChInformation ::= SEQUENCE {transportChannelIdentity TransportChannelIdentity,transportFormatSet TransportFormatSet

}

UL-CommonTransChInfo ::= SEQUENCE {tfc-Subset TFC-Subset OPTIONAL,prach-TFCS TFCS OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {ul-TFCS TFCS

},tdd SEQUENCE {

individualUL-CCTrCH-InfoList IndividualUL-CCTrCH-InfoListOPTIONAL,

ul-TFCS TFCS}

} OPTIONAL}

UL-ControlledTrChList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

UL-DeletedTransChInfoList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

END

11.3.6 物理信道信息元素PhysicalChannel-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

hiPDSCHidentities,hiPUSCHidentities,maxASC,maxASCmap,maxASCpersist,maxCCTrCH,maxCPCHsets,maxDPCH-DLchan,maxDPCHcodesPerTS,maxDPDCH-UL,maxFACH,maxPCPCH-APsig,

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maxPCPCH-APsubCh,maxPCPCH-CDsig,maxPCPCH-CDsubCh,maxPCPCH-SF,maxPCPCHs,maxPDSCH,maxPDSCH-TFCIgroups,maxPRACH,maxPUSCH,maxRL,maxRL-1,maxSCCPCH,maxSig,maxSubCh,maxTF-CPCH,maxTFCI-2-Combs,maxTGPS,maxTrCH,maxTS,maxTS-1

FROM Constant-definitionsActivationTime

FROM UserEquipment-IEs

AllowedTFI-List,CPCH-SetID,TFCS,TFCS-Identity,TFCS-IdentityPlain,TransportChannelIdentity,TransportFormatSet

FROM TransportChannel-IEs

SIB-ReferenceListFACHFROM Other-IEs;

AC-To-ASC-Mapping ::= INTEGER (0..7)

AC-To-ASC-MappingTable ::= SEQUENCE (SIZE (maxASCmap)) OFAC-To-ASC-Mapping

AccessServiceClass ::= SEQUENCE {availableSignatureStartIndex INTEGER (0..15),availableSignatureEndIndex INTEGER (0..15),availableSubChannelStartIndex INTEGER (0..11),availableSubChannelEndIndex INTEGER (0..11)

}

AccessServiceClassIndex ::= INTEGER (1..8)

AICH-Info ::= SEQUENCE {secondaryScramblingCode SecondaryScramblingCode OPTIONAL,channelizationCode256 ChannelizationCode256,sttd-Indicator BOOLEAN,aich-TransmissionTiming AICH-TransmissionTiming

}

AICH-PowerOffset ::= INTEGER (-22..5)

AICH-TransmissionTiming ::= ENUMERATED {e0, e1 }

AllocationPeriodInfo ::= SEQUENCE {allocationActivationTime INTEGER (1..256),allocationDuration INTEGER (1..256)

}

AP-AICH-ChannelizationCode ::= INTEGER (0..255)

AP-PreambleScramblingCode ::= INTEGER (0..79)

AP-Signature ::= INTEGER (0..15)

AP-Signature-VCAM ::= SEQUENCE {ap-Signature AP-Signature,

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availableAP-SubchannelList AvailableAP-SubchannelList OPTIONAL}

AP-Subchannel ::= INTEGER (0..11)

ASC ::= SEQUENCE {accessServiceClass AccessServiceClassIndex,repetitionPeriodAndOffset ASC-RepetitionPeriodAndOffset OPTIONAL-- TABULAR: The offset is nested in the repetition period

}

ASC-RepetitionPeriodAndOffset ::= CHOICE {rp1 NULL,rp2 INTEGER (0..1),rp4 INTEGER (0..3),rp8 INTEGER (0..7)

}

ASCSetting ::= SEQUENCE {-- TABULAR: This is MD in tabular description-- Default value is previous ASC-- If this is the first ASC, the default value is all available signature and sub-

channelsaccessServiceClass AccessServiceClass OPTIONAL

}

AvailableAP-Signature-VCAMList ::= SEQUENCE (SIZE (1..maxPCPCH-APsig)) OFAP-Signature-VCAM

AvailableAP-SignatureList ::= SEQUENCE (SIZE (1..maxPCPCH-APsig)) OFAP-Signature

AvailableAP-SubchannelList ::= SEQUENCE (SIZE (1..maxPCPCH-APsubCh)) OFAP-Subchannel

AvailableMinimumSF-ListVCAM ::= SEQUENCE (SIZE (1..maxPCPCH-SF)) OFAvailableMinimumSF-VCAM

AvailableMinimumSF-VCAM ::= SEQUENCE {minimumSpreadingFactor MinimumSpreadingFactor,nf-Max NF-Max,maxAvailablePCPCH-Number MaxAvailablePCPCH-Number,availableAP-Signature-VCAMList AvailableAP-Signature-VCAMList

}

AvailableSignatures ::= BIT STRING(SIZE(16))

AvailableSubChannelNumbers ::= BIT STRING(SIZE(12))

BurstType ::= ENUMERATED {short1, long2 }

BurstType1 ::= ENUMERATED { ms4, ms8, ms16 }

BurstType2 ::= ENUMERATED { ms3, ms6 }

CCTrCH-PowerControlInfo ::= SEQUENCE {tfcs-Identity TFCS-Identity OPTIONAL,ul-DPCH-PowerControlInfo UL-DPCH-PowerControlInfo

}

CD-AccessSlotSubchannel ::= INTEGER (0..11)

CD-AccessSlotSubchannelList ::= SEQUENCE (SIZE (1..maxPCPCH-CDsubCh)) OFCD-AccessSlotSubchannel

CD-CA-ICH-ChannelizationCode ::= INTEGER (0..255)

CD-PreambleScramblingCode ::= INTEGER (0..79)

CD-SignatureCode ::= INTEGER (0..15)

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CD-SignatureCodeList ::= SEQUENCE (SIZE (1..maxPCPCH-CDsig)) OFCD-SignatureCode

CellParametersID ::= INTEGER (0..127)

Cfntargetsfnframeoffset ::= INTEGER(0..255)

ChannelAssignmentActive ::= CHOICE {notActive NULL,isActive AvailableMinimumSF-ListVCAM

}

ChannelizationCode256 ::= INTEGER (0..255)

ChannelReqParamsForUCSM ::= SEQUENCE {availableAP-SignatureList AvailableAP-SignatureList,availableAP-SubchannelList AvailableAP-SubchannelList OPTIONAL

}

ClosedLoopTimingAdjMode ::= ENUMERATED {slot1, slot2 }

CodeNumberDSCH ::= INTEGER (0..255)

CodeRange ::= SEQUENCE {pdsch-CodeMapList PDSCH-CodeMapList,codeNumberStart CodeNumberDSCH,codeNumberStop CodeNumberDSCH

}

CodeWordSet ::= ENUMERATED {longCWS,mediumCWS,shortCWS,ssdtOff }

CommonTimeslotInfo ::= SEQUENCE {-- TABULAR: The IE below is MD, but since it can be encoded in a single-- bit it is not defined as OPTIONAL.secondInterleavingMode SecondInterleavingMode,tfci-Coding TFCI-Coding OPTIONAL,puncturingLimit PuncturingLimit,repetitionPeriodAndLength RepetitionPeriodAndLength OPTIONAL

}

CommonTimeslotInfoSCCPCH ::= SEQUENCE {-- TABULAR: The IE below is MD, but since it can be encoded in a single-- bit it is not defined as OPTIONAL.secondInterleavingMode SecondInterleavingMode,tfci-Coding TFCI-Coding OPTIONAL,puncturingLimit PuncturingLimit,repetitionPeriodLengthAndOffset RepetitionPeriodLengthAndOffset OPTIONAL

}

-- Values from -35 to 10 are used in Release 99ConstantValue ::= INTEGER (-41..10)

CPCH-PersistenceLevels ::= SEQUENCE {cpch-SetID CPCH-SetID,dynamicPersistenceLevelTF-List DynamicPersistenceLevelTF-List

}

CPCH-PersistenceLevelsList ::= SEQUENCE (SIZE (1..maxCPCHsets)) OFCPCH-PersistenceLevels

CPCH-SetInfo ::= SEQUENCE {cpch-SetID CPCH-SetID,transportFormatSet TransportFormatSet,tfcs TFCS,ap-PreambleScramblingCode AP-PreambleScramblingCode,ap-AICH-ScramblingCode SecondaryScramblingCode OPTIONAL,ap-AICH-ChannelizationCode AP-AICH-ChannelizationCode,cd-PreambleScramblingCode CD-PreambleScramblingCode,cd-CA-ICH-ScramblingCode SecondaryScramblingCode OPTIONAL,cd-CA-ICH-ChannelizationCode CD-CA-ICH-ChannelizationCode,

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cd-AccessSlotSubchannelList CD-AccessSlotSubchannelList OPTIONAL,cd-SignatureCodeList CD-SignatureCodeList OPTIONAL,deltaPp-m DeltaPp-m,ul-DPCCH-SlotFormat UL-DPCCH-SlotFormat,n-StartMessage N-StartMessage,n-EOT N-EOT,channelAssignmentActive ChannelAssignmentActive,-- TABULAR: VCAM info has been nested inside ChannelAssignmentActive,-- which in turn is mandatory since it's only a binary choice.cpch-StatusIndicationMode CPCH-StatusIndicationMode,pcpch-ChannelInfoList PCPCH-ChannelInfoList

}

CPCH-SetInfoList ::= SEQUENCE (SIZE (1..maxCPCHsets)) OFCPCH-SetInfo

CPCH-StatusIndicationMode ::= ENUMERATED {pcpch-Availability,pcpch-AvailabilityAndMinAvailableSF }

CSICH-PowerOffset ::= INTEGER (-10..5)

-- Actual value = IE value * 512, only values from 0 to 599 used in Release 99. DefaultDPCH-OffsetValueFDD ::= INTEGER (0..1023)

DefaultDPCH-OffsetValueTDD ::= INTEGER (0..7)

DeltaPp-m ::= INTEGER (-10..10)

-- Actual value = IE value * 0.1DeltaSIR ::= INTEGER (0..30)

DL-CCTrCh ::= SEQUENCE {tfcs-Identity TFCS-IdentityPlain OPTIONAL,timeInfo TimeInfo,dl-CCTrCH-TimeslotsCodes DownlinkTimeslotsCodes OPTIONAL,ul-CCTrChTPCList UL-CCTrChTPCList OPTIONAL

}

DL-CCTrChList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFDL-CCTrCh

DL-ChannelizationCode ::= SEQUENCE {secondaryScramblingCode SecondaryScramblingCode OPTIONAL,sf-AndCodeNumber SF512-AndCodeNumber,scramblingCodeChange ScramblingCodeChange OPTIONAL

}

DL-ChannelizationCodeList ::= SEQUENCE (SIZE (1..maxDPCH-DLchan)) OFDL-ChannelizationCode

DL-CommonInformation ::= SEQUENCE {dl-DPCH-InfoCommon DL-DPCH-InfoCommon OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {defaultDPCH-OffsetValue DefaultDPCH-OffsetValueFDD OPTIONAL,dpch-CompressedModeInfo DPCH-CompressedModeInfo OPTIONAL,tx-DiversityMode TX-DiversityMode OPTIONAL,ssdt-Information SSDT-Information OPTIONAL

},tdd SEQUENCE {

defaultDPCH-OffsetValue DefaultDPCH-OffsetValueTDD OPTIONAL}

}}

DL-CommonInformationPost ::= SEQUENCE {dl-DPCH-InfoCommon DL-DPCH-InfoCommonPost OPTIONAL

}

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DL-CommonInformationPredef ::= SEQUENCE {dl-DPCH-InfoCommon DL-DPCH-InfoCommonPredef OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {defaultDPCH-OffsetValue DefaultDPCH-OffsetValueFDD DEFAULT 0

},tdd SEQUENCE {

defaultDPCH-OffsetValue DefaultDPCH-OffsetValueTDD DEFAULT 0}

}}

DL-CompressedModeMethod ::= ENUMERATED {puncturing, sf-2,higherLayerScheduling }

DL-DPCH-InfoCommon ::= SEQUENCE {timingIndication TimingIndication,cfntargetsfnframeoffset Cfntargetsfnframeoffset OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {dl-DPCH-PowerControlInfo DL-DPCH-PowerControlInfo OPTIONAL,dl-rate-matching-restriction Dl-rate-matching-restriction OPTIONAL,spreadingFactorAndPilot SF512-AndPilot,

-- TABULAR: The number of pilot bits is nested inside the spreading factor.positionFixedOrFlexible PositionFixedOrFlexible,tfci-Existence BOOLEAN

},tdd SEQUENCE {

commonTimeslotInfo CommonTimeslotInfo OPTIONAL}

}}

DL-DPCH-InfoCommonPost ::= SEQUENCE {timingIndication TimingIndication,cfntargetsfnframeoffset Cfntargetsfnframeoffset OPTIONAL,dl-DPCH-PowerControlInfo DL-DPCH-PowerControlInfo OPTIONAL

}

DL-DPCH-InfoCommonPredef ::= SEQUENCE {timingIndication TimingIndication,cfntargetsfnframeoffset Cfntargetsfnframeoffset OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {spreadingFactorAndPilot SF512-AndPilot,

-- TABULAR: The number of pilot bits is nested inside the spreading factor.positionFixedOrFlexible PositionFixedOrFlexible,tfci-Existence BOOLEAN

},tdd SEQUENCE {

commonTimeslotInfo CommonTimeslotInfo}

}}

DL-DPCH-InfoPerRL ::= CHOICE {fdd SEQUENCE {

pCPICH-UsageForChannelEst PCPICH-UsageForChannelEst,dcph-FrameOffset DPCH-FrameOffset OPTIONAL,secondaryCPICH-Info SecondaryCPICH-Info OPTIONAL,dl-ChannelizationCodeList DL-ChannelizationCodeList,tpc-CombinationIndex TPC-CombinationIndex,ssdt-CellIdentity SSDT-CellIdentity OPTIONAL,closedLoopTimingAdjMode ClosedLoopTimingAdjMode OPTIONAL

},tdd DL-CCTrChList

}

DL-DPCH-InfoPerRL-PostFDD ::= SEQUENCE {pCPICH-UsageForChannelEst PCPICH-UsageForChannelEst OPTIONAL,dl-ChannelizationCode DL-ChannelizationCode,tpc-CombinationIndex TPC-CombinationIndex

}

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DL-DPCH-InfoPerRL-PostTDD ::= SEQUENCE {dl-CCTrCH-TimeslotsCodes DownlinkTimeslotsCodes

}

DL-DPCH-PowerControlInfo ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {dpc-Mode DPC-Mode

},tdd SEQUENCE {

tpc-StepSizeTDD TPC-StepSizeTDD OPTIONAL}

}}

DL-FrameType ::= ENUMERATED {dl-FrameTypeA, dl-FrameTypeB }

DL-InformationPerRL ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,pdsch-SHO-DCH-Info PDSCH-SHO-DCH-Info OPTIONAL,pdsch-CodeMapping PDSCH-CodeMapping OPTIONAL

},tdd PrimaryCCPCH-Info

},dl-DPCH-InfoPerRL DL-DPCH-InfoPerRL OPTIONAL,secondaryCCPCH-Info SecondaryCCPCH-Info OPTIONAL,tfcs TFCS OPTIONAL,fach-PCH-InformationList FACH-PCH-InformationList OPTIONAL,sib-ReferenceList SIB-ReferenceListFACH OPTIONAL

}

DL-InformationPerRL-List ::= SEQUENCE (SIZE (1..maxRL)) OFDL-InformationPerRL

DL-InformationPerRL-ListPostFDD ::= SEQUENCE (SIZE (1..maxRL)) OFDL-InformationPerRL-PostFDD

DL-InformationPerRL-PostFDD ::= SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,

dl-DPCH-InfoPerRL DL-DPCH-InfoPerRL-PostFDD}

DL-InformationPerRL-PostTDD ::= SEQUENCE {primaryCCPCH-Info PrimaryCCPCH-InfoPost,dl-DPCH-InfoPerRL DL-DPCH-InfoPerRL-PostTDD

}

DL-OuterLoopControl ::= ENUMERATED {increaseAllowed, increaseNotAllowed }

DL-PDSCH-Information ::= SEQUENCE {pdsch-SHO-DCH-Info PDSCH-SHO-DCH-Info OPTIONAL,pdsch-CodeMapping PDSCH-CodeMapping OPTIONAL

}

Dl-rate-matching-restriction ::= SEQUENCE {restrictedTrCH-InfoList RestrictedTrCH-InfoList OPTIONAL

}

DL-TS-ChannelizationCode ::= ENUMERATED {cc16-1, cc16-2, cc16-3, cc16-4,cc16-5, cc16-6, cc16-7, cc16-8,cc16-9, cc16-10, cc16-11, cc16-12,cc16-13, cc16-14, cc16-15, cc16-16 }

DL-TS-ChannelizationCodesShort ::= SEQUENCE {codesRepresentation CHOICE {

consecutive SEQUENCE {firstChannelizationCode DL-TS-ChannelizationCode,

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lastChannelizationCode DL-TS-ChannelizationCode},bitmap BIT STRING (SIZE (16))

}}

DownlinkAdditionalTimeslots ::= SEQUENCE {parameters CHOICE {

sameAsLast SEQUENCE {timeslotNumber TimeslotNumber

},newParameters SEQUENCE {

individualTimeslotInfo IndividualTimeslotInfo,dl-TS-ChannelizationCodesShort DL-TS-ChannelizationCodesShort

}}

}

DownlinkTimeslotsCodes ::= SEQUENCE {firstIndividualTimeslotInfo IndividualTimeslotInfo,dl-TS-ChannelizationCodesShort DL-TS-ChannelizationCodesShort,moreTimeslots CHOICE {

noMore NULL,additionalTimeslots CHOICE {

consecutive INTEGER (1..maxTS-1),timeslotList SEQUENCE (SIZE (1..maxTS-1)) OF

DownlinkAdditionalTimeslots}

}}

DPC-Mode ::= ENUMERATED {singleTPC,tpcTripletInSoft }

-- The actual value of DPCCH power offset is the value of this IE * 2.DPCCH-PowerOffset ::= INTEGER (-82..-3)

DPCH-CompressedModeInfo ::= SEQUENCE {tgp-SequenceList TGP-SequenceList

}

DPCH-CompressedModeStatusInfo ::= SEQUENCE (SIZE (1..maxTGPS)) OFTGP-SequenceShort

-- TABULAR: Actual value = IE value * 256DPCH-FrameOffset::= INTEGER (0..149)

DSCH-Mapping ::= SEQUENCE {maxTFCI-Field2Value MaxTFCI-Field2Value,spreadingFactor SF-PDSCH,codeNumber CodeNumberDSCH,multiCodeInfo MultiCodeInfo

}

DSCH-MappingList ::= SEQUENCE (SIZE (1..maxPDSCH-TFCIgroups)) OFDSCH-Mapping

DSCH-RadioLinkIdentifier ::= INTEGER (0..511)

DurationTimeInfo ::= INTEGER (1..4096)

-- TABULAR : value [Duration = infinite] is the value by default, -- and is encoded by absence of the full sequence. If the sequence is present, -- thefield is absent, the default is respectivelyinfinite. Presence of the -- field absent should not be used, but shall be understood as if the-- sequence was absent.

DynamicPersistenceLevel ::= INTEGER (1..8)

DynamicPersistenceLevelList ::= SEQUENCE (SIZE (1..maxPRACH)) OF

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DynamicPersistenceLevel

DynamicPersistenceLevelTF-List ::= SEQUENCE (SIZE (1..maxTF-CPCH)) OFDynamicPersistenceLevel

FACH-PCH-Information ::= SEQUENCE {transportFormatSet TransportFormatSet,transportChannelIdentity TransportChannelIdentity,ctch-Indicator BOOLEAN

}

FACH-PCH-InformationList ::= SEQUENCE (SIZE (1..maxFACH)) OFFACH-PCH-Information

FrequencyInfo ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd FrequencyInfoFDD,tdd FrequencyInfoTDD }

}

FrequencyInfoFDD ::= SEQUENCE {uarfcn-UL UARFCN,uarfcn-DL UARFCN OPTIONAL

}

FrequencyInfoTDD ::= SEQUENCE {uarfcn-Nt UARFCN

}

IndividualTimeslotInfo ::= SEQUENCE {timeslotNumber TimeslotNumber,tfci-Existence BOOLEAN ,

midambleShiftAndBurstType MidambleShiftAndBurstType}

IndividualTS-Interference ::= SEQUENCE {timeslot TimeslotNumber,ul-TimeslotInterference UL-Interference

}

IndividualTS-InterferenceList ::= SEQUENCE (SIZE (1..maxTS)) OFIndividualTS-Interference

ITP ::= ENUMERATED {mode0, mode1 }

-- Value range of -50..33 is used for Release 99MaxAllowedUL-TX-Power ::= INTEGER (-50..77)

MaxAvailablePCPCH-Number ::= INTEGER (1..64)

MaxTFCI-Field2Value ::= INTEGER (1..1023)

MidambleConfiguration ::= SEQUENCE {burstType1 BurstType1 DEFAULT ms8,-- TABULAR: The default value for BurstType2 has not been specified due to-- compactness reasons.burstType2 BurstType2

}

MidambleShiftAndBurstType ::= SEQUENCE {burstType CHOICE {

type1 SEQUENCE {midambleAllocationMode CHOICE {

defaultMidamble NULL,commonMidamble NULL,ueSpecificMidamble SEQUENCE {

midambleShift MidambleShiftLong}

}},type2 SEQUENCE {

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midambleAllocationMode CHOICE {defaultMidamble NULL,commonMidamble NULL,ueSpecificMidamble SEQUENCE {

midambleShift MidambleShiftShort}

}},type3 SEQUENCE {

midambleAllocationMode CHOICE {defaultMidamble NULL,ueSpecificMidamble SEQUENCE {

midambleShift MidambleShiftAccess}

}}

}}MidambleShiftLong ::= INTEGER (0..15)

MidambleShiftShort ::= INTEGER (0..5)

MidambleShiftAccess ::= INTEGER (0..7)

MinimumSpreadingFactor ::= ENUMERATED {sf4, sf8, sf16, sf32,sf64, sf128, sf256 }

MultiCodeInfo ::= INTEGER (1..16)

N-EOT ::= INTEGER (0..7)

N-GAP ::= ENUMERATED {f2, f4, f8 }

N-PCH ::= INTEGER (1..8)

N-StartMessage ::= INTEGER (1..8)

NB01 ::= INTEGER (0..50)

NF-Max ::= INTEGER (1..64)

NumberOfDPDCH ::= INTEGER (1..maxDPDCH-UL)

NumberOfFBI-Bits ::= INTEGER (1..2)

PagingIndicatorLength ::= ENUMERATED {pi4, pi8, pi16 }

PC-Preamble ::= ENUMERATED {pcp0, pcp15 }

PCP-Length ::= ENUMERATED {as0, as8 }

PCPCH-ChannelInfo ::= SEQUENCE {pcpch-UL-ScramblingCode INTEGER (0..79),pcpch-DL-ChannelizationCode INTEGER (0..511),pcpch-DL-ScramblingCode SecondaryScramblingCode OPTIONAL,pcp-Length PCP-Length,ucsm-Info UCSM-Info OPTIONAL

}

PCPCH-ChannelInfoList ::= SEQUENCE (SIZE (1..maxPCPCHs)) OFPCPCH-ChannelInfo

PCPICH-UsageForChannelEst ::= ENUMERATED {mayBeUsed,shallNotBeUsed }

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PDSCH-CapacityAllocationInfo ::= SEQUENCE {pdsch-PowerControlInfo PDSCH-PowerControlInfo OPTIONAL,pdsch-AllocationPeriodInfo AllocationPeriodInfo,tfcs-Identity TFCS-IdentityPlain OPTIONAL,configuration CHOICE {

old-Configuration SEQUENCE {pdsch-Identity PDSCH-Identity

},new-Configuration SEQUENCE {

pdsch-Info PDSCH-Info,pdsch-Identity PDSCH-Identity OPTIONAL

}}

}

PDSCH-CodeInfo ::= SEQUENCE {spreadingFactor SF-PDSCH,codeNumber CodeNumberDSCH,multiCodeInfo MultiCodeInfo

}

PDSCH-CodeInfoList ::= SEQUENCE (SIZE (1..maxTFCI-2-Combs)) OFPDSCH-CodeInfo

PDSCH-CodeMap ::= SEQUENCE {spreadingFactor SF-PDSCH,multiCodeInfo MultiCodeInfo

}

PDSCH-CodeMapList ::= SEQUENCE (SIZE (1..maxPDSCH-TFCIgroups)) OFPDSCH-CodeMap

PDSCH-CodeMapping ::= SEQUENCE {dl-ScramblingCode SecondaryScramblingCode OPTIONAL,signallingMethod CHOICE {

codeRange CodeRange,tfci-Range DSCH-MappingList,explicit PDSCH-CodeInfoList,replace ReplacedPDSCH-CodeInfoList

}}

PDSCH-Identity ::= INTEGER (1..hiPDSCHidentities)

PDSCH-Info ::= SEQUENCE {

commonTimeslotInfo CommonTimeslotInfo OPTIONAL,pdsch-TimeslotsCodes DownlinkTimeslotsCodes OPTIONAL

}

PDSCH-PowerControlInfo ::= SEQUENCE {tpc-StepSizeTDD TPC-StepSizeTDD OPTIONAL,ul-CCTrChTPCList UL-CCTrChTPCList OPTIONAL

}

PDSCH-SHO-DCH-Info ::= SEQUENCE {dsch-RadioLinkIdentifier DSCH-RadioLinkIdentifier,tfci-CombiningSet TFCI-CombiningSet OPTIONAL,rl-IdentifierList RL-IdentifierList OPTIONAL

}

PDSCH-SysInfo ::= SEQUENCE {pdsch-Identity PDSCH-Identity,pdsch-Info PDSCH-Info,dsch-TFS TransportFormatSet OPTIONAL,dsch-TFCS TFCS OPTIONAL

}

PDSCH-SysInfoList ::= SEQUENCE (SIZE (1..maxPDSCH)) OFPDSCH-SysInfo

PDSCH-SysInfoList-SFN ::= SEQUENCE (SIZE (1..maxPDSCH)) OFSEQUENCE {

pdsch-SysInfo PDSCH-SysInfo,sfn-TimeInfo SFN-TimeInfo OPTIONAL

}

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PersistenceScalingFactor ::= ENUMERATED {psf0-9, psf0-8, psf0-7, psf0-6,psf0-5, psf0-4, psf0-3, psf0-2 }

PersistenceScalingFactorList ::= SEQUENCE (SIZE (1..maxASCpersist)) OFPersistenceScalingFactor

PI-CountPerFrame ::= ENUMERATED {e18, e36, e72, e144 }

PICH-Info ::= CHOICE {fdd SEQUENCE {

secondaryScramblingCode SecondaryScramblingCode OPTIONAL,channelizationCode256 ChannelizationCode256,pi-CountPerFrame PI-CountPerFrame,sttd-Indicator BOOLEAN

},tdd SEQUENCE {

channelizationCode TDD-PICH-CCode OPTIONAL,timeslot TimeslotNumber OPTIONAL,burstType CHOICE {

type-1 MidambleShiftLong,type-2 MidambleShiftShort

} OPTIONAL,repetitionPeriodLengthOffset RepPerLengthOffset-PICH OPTIONAL,pagingIndicatorLength PagingIndicatorLength DEFAULT pi4,n-GAP N-GAP DEFAULT f4,n-PCH N-PCH DEFAULT 2

}}

PICH-PowerOffset ::= INTEGER (-10..5)

PilotBits128 ::= ENUMERATED {pb4, pb8 }

PilotBits256 ::= ENUMERATED {pb2, pb4, pb8 }

PositionFixedOrFlexible ::= ENUMERATED {fixed,flexible }

PowerControlAlgorithm ::= CHOICE {algorithm1 TPC-StepSizeFDD,algorithm2 NULL

}

PowerRampStep ::= INTEGER (1..8)

PRACH-Midamble ::= ENUMERATED {direct,direct-Inverted }

PRACH-Partitioning ::= CHOICE {fdd SEQUENCE (SIZE (1..maxASC)) OF

ASCSetting,tdd SEQUENCE (SIZE (1..maxASC)) OF

ASC}

PRACH-PowerOffset ::= SEQUENCE {powerRampStep PowerRampStep,preambleRetransMax PreambleRetransMax

}

PRACH-RACH-Info ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {availableSignatures AvailableSignatures,availableSF SF-PRACH,preambleScramblingCodeWordNumber PreambleScramblingCodeWordNumber,puncturingLimit PuncturingLimit,availableSubChannelNumbers AvailableSubChannelNumbers

},

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tdd SEQUENCE {timeslot TimeslotNumber,channelizationCode TDD-PRACH-CCodeList,prach-Midamble PRACH-Midamble OPTIONAL

}}

}

PRACH-SystemInformation ::= SEQUENCE {prach-RACH-Info PRACH-RACH-Info,transportChannelIdentity TransportChannelIdentity,rach-TransportFormatSet TransportFormatSet OPTIONAL,rach-TFCS TFCS OPTIONAL,prach-Partitioning PRACH-Partitioning OPTIONAL,persistenceScalingFactorList PersistenceScalingFactorList OPTIONAL,ac-To-ASC-MappingTable AC-To-ASC-MappingTable OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,constantValue ConstantValue OPTIONAL,prach-PowerOffset PRACH-PowerOffset OPTIONAL,rach-TransmissionParameters RACH-TransmissionParameters OPTIONAL,aich-Info AICH-Info OPTIONAL

},tdd NULL

}}

PRACH-SystemInformationList ::= SEQUENCE (SIZE (1..maxPRACH)) OFPRACH-SystemInformation

PreambleRetransMax ::= INTEGER (1..64)

PreambleScramblingCodeWordNumber ::= INTEGER (0..15)

PreDefPhyChConfiguration ::= SEQUENCE {ul-DPCH-InfoPredef UL-DPCH-InfoPredef,dl-CommonInformationPredef DL-CommonInformationPredef OPTIONAL

}

PrimaryCCPCH-Info ::= CHOICE {fdd SEQUENCE {

tx-DiversityIndicator BOOLEAN},tdd SEQUENCE {

syncCase CHOICE {syncCase1 SEQUENCE {

timeslot TimeslotNumber},syncCase2 SEQUENCE {

timeslotSync2 TimeslotSync2}

} OPTIONAL,cellParametersID CellParametersID OPTIONAL,blockSTTD-Indicator BOOLEAN

}}

PrimaryCCPCH-InfoPost ::= SEQUENCE {syncCase CHOICE {

syncCase1 SEQUENCE {timeslot TimeslotNumber

},syncCase2 SEQUENCE {

timeslotSync2 TimeslotSync2}

},cellParametersID CellParametersID,blockSTTD-Indicator BOOLEAN

}

PrimaryCCPCH-TX-Power ::= INTEGER (6..43)

PrimaryCPICH-Info ::= SEQUENCE {primaryScramblingCode PrimaryScramblingCode

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}

-- Value range -10 .. 50 used for Release 99 PrimaryCPICH-TX-Power ::= INTEGER (-10..53)

PrimaryScramblingCode ::= INTEGER (0..511)

PuncturingLimit ::= ENUMERATED {pl0-40, pl0-44, pl0-48, pl0-52, pl0-56,pl0-60, pl0-64, pl0-68, pl0-72, pl0-76,pl0-80, pl0-84, pl0-88, pl0-92, pl0-96, pl1 }

PUSCH-CapacityAllocationInfo ::= SEQUENCE {pusch-Allocation CHOICE {

pusch-AllocationPending NULL,pusch-AllocationAssignment SEQUENCE {

pdsch-AllocationPeriodInfo AllocationPeriodInfo,pusch-PowerControlInfo UL-TargetSIR OPTIONAL,tfcs-Identity TFCS-IdentityPlain OPTIONAL,configuration CHOICE {

old-Configuration SEQUENCE {pusch-Identity PUSCH-Identity

},new-Configuration SEQUENCE {

pusch-Info PUSCH-Info,pusch-Identity PUSCH-Identity OPTIONAL

}}

}}

}

PUSCH-Identity ::= INTEGER (1..hiPUSCHidentities)

PUSCH-Info ::= SEQUENCE {commonTimeslotInfo CommonTimeslotInfo OPTIONAL,pusch-TimeslotsCodes UplinkTimeslotsCodes OPTIONAL

}

PUSCH-SysInfo ::= SEQUENCE {pusch-Identity PUSCH-Identity,pusch-Info PUSCH-Info,usch-TFS TransportFormatSet OPTIONAL,usch-TFCS TFCS OPTIONAL

}

PUSCH-SysInfoList ::= SEQUENCE (SIZE (1..maxPUSCH)) OFPUSCH-SysInfo

PUSCH-SysInfoList-SFN ::= SEQUENCE (SIZE (1..maxPDSCH)) OFSEQUENCE {

pusch-SysInfo PUSCH-SysInfo,sfn-TimeInfo SFN-TimeInfo OPTIONAL

}

RACH-TransmissionParameters ::= SEQUENCE {mmax INTEGER (1..32),nb01Min NB01,nb01Max NB01

}

ReducedScramblingCodeNumber ::= INTEGER (0..8191)

RepetitionPeriodAndLength ::= CHOICE {repetitionPeriod1 NULL,repetitionPeriod2 INTEGER (1..1),-- repetitionPeriod2 could just as well be NULL also.repetitionPeriod4 INTEGER (1..3),repetitionPeriod8 INTEGER (1..7),repetitionPeriod16 INTEGER (1..15),repetitionPeriod32 INTEGER (1..31),repetitionPeriod64 INTEGER (1..63)

}

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RepetitionPeriodLengthAndOffset ::= CHOICE {repetitionPeriod1 NULL,repetitionPeriod2 SEQUENCE {

length NULL,offset INTEGER (0..1)

},repetitionPeriod4 SEQUENCE {

length INTEGER (1..3),offset INTEGER (0..3)

},repetitionPeriod8 SEQUENCE {

length INTEGER (1..7),offset INTEGER (0..7)

},repetitionPeriod16 SEQUENCE {

length INTEGER (1..15),offset INTEGER (0..15)

},repetitionPeriod32 SEQUENCE {

length INTEGER (1..31),offset INTEGER (0..31)

},repetitionPeriod64 SEQUENCE {

length INTEGER (1..63),offset INTEGER (0..63)

}}

ReplacedPDSCH-CodeInfo ::= SEQUENCE {tfci-Field2 MaxTFCI-Field2Value,spreadingFactor SF-PDSCH,codeNumber CodeNumberDSCH,multiCodeInfo MultiCodeInfo

}

ReplacedPDSCH-CodeInfoList ::= SEQUENCE (SIZE (1..maxTFCI-2-Combs)) OFReplacedPDSCH-CodeInfo

RepPerLengthOffset-PICH ::= CHOICE {rpp4-2 INTEGER (0..3), rpp8-2 INTEGER (0..7), rpp8-4 INTEGER (0..7),rpp16-2 INTEGER (0..15), rpp16-4 INTEGER (0..15), rpp32-2 INTEGER (0..31), rpp32-4 INTEGER (0..31), rpp64-2 INTEGER (0..63), rpp64-4 INTEGER (0..63)

}

RestrictedTrCH ::= SEQUENCE {restrictedDL-TrCH-Identity TransportChannelIdentity,allowedTFIList AllowedTFI-List

}

RestrictedTrCH-InfoList ::= SEQUENCE (SIZE(1..maxTrCH)) OFRestrictedTrCH

RL-AdditionInformation ::= SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,dl-DPCH-InfoPerRL DL-DPCH-InfoPerRL,tfci-CombiningIndicator BOOLEAN,sccpch-InfoforFACH SCCPCH-InfoForFACH OPTIONAL

}

RL-AdditionInformationList ::= SEQUENCE (SIZE (1..maxRL-1)) OFRL-AdditionInformation

RL-IdentifierList ::= SEQUENCE (SIZE (1..maxRL)) OFPrimaryCPICH-Info

RL-RemovalInformationList ::= SEQUENCE (SIZE (1..maxRL-1)) OFPrimaryCPICH-Info

RPP ::= ENUMERATED {mode0, mode1 }

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S-Field ::= ENUMERATED {e1bit, e2bits }

SCCPCH-ChannelizationCode ::= ENUMERATED {cc16-1, cc16-2, cc16-3, cc16-4,cc16-5, cc16-6, cc16-7, cc16-8,cc16-9, cc16-10, cc16-11, cc16-12,cc16-13, cc16-14, cc16-15, cc16-16 }

SCCPCH-ChannelizationCodeList ::= SEQUENCE (SIZE (1..16)) OFSCCPCH-ChannelizationCode

SCCPCH-InfoForFACH ::= SEQUENCE {secondaryCCPCH-Info SecondaryCCPCH-Info,tfcs TFCS,fach-PCH-InformationList FACH-PCH-InformationList,sib-ReferenceListFACH SIB-ReferenceListFACH

}

SCCPCH-SystemInformation ::= SEQUENCE {secondaryCCPCH-Info SecondaryCCPCH-Info,tfcs TFCS OPTIONAL,fach-PCH-InformationList FACH-PCH-InformationList OPTIONAL,pich-Info PICH-Info OPTIONAL

}

SCCPCH-SystemInformationList ::= SEQUENCE (SIZE (1..maxSCCPCH)) OFSCCPCH-SystemInformation

ScramblingCodeChange ::= ENUMERATED {codeChange, noCodeChange }

ScramblingCodeType ::= ENUMERATED {shortSC,longSC }

SecondaryCCPCH-Info ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {pCPICH-UsageForChannelEst PCPICH-UsageForChannelEst,secondaryCPICH-Info SecondaryCPICH-Info OPTIONAL,secondaryScramblingCode SecondaryScramblingCode OPTIONAL,sttd-Indicator BOOLEAN,sf-AndCodeNumber SF256-AndCodeNumber,pilotSymbolExistence BOOLEAN,tfci-Existence BOOLEAN,positionFixedOrFlexible PositionFixedOrFlexible,timingOffset TimingOffset DEFAULT 0

},tdd SEQUENCE {

-- TABULAR: the offset is included in CommonTimeslotInfoSCCPCHcommonTimeslotInfo CommonTimeslotInfoSCCPCH,individualTimeslotInfo IndividualTimeslotInfo,channelizationCode SCCPCH-ChannelizationCodeList

}}

}

SecondaryCPICH-Info ::= SEQUENCE {secondaryDL-ScramblingCode SecondaryScramblingCode OPTIONAL,channelizationCode ChannelizationCode256

}

-- Value range 1..15 used for Release 99SecondaryScramblingCode ::= INTEGER (1..16)

SecondInterleavingMode ::= ENUMERATED {frameRelated, timeslotRelated }

-- SF256-AndCodeNumber encodes both "Spreading factor" and "Code Number"SF256-AndCodeNumber ::= CHOICE {

sf4 INTEGER (0..3),sf8 INTEGER (0..7),sf16 INTEGER (0..15),sf32 INTEGER (0..31),sf64 INTEGER (0..63),sf128 INTEGER (0..127),

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sf256 INTEGER (0..255)}

-- SF512-AndCodeNumber encodes both "Spreading factor" and "Code Number"SF512-AndCodeNumber ::= CHOICE {

sf4 INTEGER (0..3),sf8 INTEGER (0..7),sf16 INTEGER (0..15),sf32 INTEGER (0..31),sf64 INTEGER (0..63),sf128 INTEGER (0..127),sf256 INTEGER (0..255),sf512 INTEGER (0..511)

}

-- SF512-AndPilot encodes both "Spreading factor" and "Number of bits for Pilot bits"SF512-AndPilot ::= CHOICE {

sfd4 NULL, sfd8 NULL, sfd16 NULL, sfd32 NULL,sfd64 NULL, sfd128 PilotBits128, sfd256 PilotBits256, sfd512 NULL

}SF-PDSCH ::= ENUMERATED {

sfp4, sfp8, sfp16, sfp32,sfp64, sfp128, sfp256, spare }

SF-PRACH ::= ENUMERATED {sfpr32, sfpr64, sfpr128, sfpr256 }

SFN-TimeInfo ::= SEQUENCE {activationTimeSFN INTEGER (0..4095),physChDuration DurationTimeInfo

}

Signature ::= INTEGER (0..15)

SpreadingFactor::= ENUMERATED {sf4, sf8, sf16, sf32,sf64, sf128, sf256 }

SSDT-CellIdentity ::= ENUMERATED {ssdt-id-a, ssdt-id-b, ssdt-id-c,ssdt-id-d, ssdt-id-e, ssdt-id-f,ssdt-id-g, ssdt-id-h }

SSDT-Information ::= SEQUENCE {s-Field S-Field,codeWordSet CodeWordSet

}

TDD-PICH-CCode ::= ENUMERATED {cc16-1, cc16-2, cc16-3, cc16-4,cc16-5, cc16-6, cc16-7, cc16-8,cc16-9, cc16-10, cc16-11, cc16-12,cc16-13, cc16-14, cc16-15, cc16-16 }

TDD-PRACH-CCode8 ::= ENUMERATED {cc8-1, cc8-2, cc8-3, cc8-4,cc8-5, cc8-6, cc8-7, cc8-8 }

TDD-PRACH-CCode16 ::= ENUMERATED {cc16-1, cc16-2, cc16-3, cc16-4,cc16-5, cc16-6, cc16-7, cc16-8,cc16-9, cc16-10, cc16-11, cc16-12,cc16-13, cc16-14, cc16-15, cc16-16 }

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TDD-PRACH-CCodeList ::= CHOICE {sf8 SEQUENCE (SIZE (1..8)) OF

TDD-PRACH-CCode8,sf16 SEQUENCE (SIZE (1..8)) OF

TDD-PRACH-CCode16}

TFC-ControlDuration ::= ENUMERATED {tfc-cd1, tfc-cd2, tfc-cd4, tfc-cd8,tfc-cd16, tfc-cd24, tfc-cd32,tfc-cd48, tfc-cd64, tfc-cd128,tfc-cd192, tfc-cd256, tfc-cd512,spare1, spare2, spare3 }

TFCI-Coding ::= ENUMERATED { tfci-bits-4, tfci-bits-8,tfci-bits-16, tfci-bits-32 }

-- **TODO**, not definedTFCI-CombiningSet ::= SEQUENCE {}

TGCFN ::= INTEGER (0..255)

-- The value 270 represents "undefined" in the tabular description.TGD ::= INTEGER (15..270)

TGL ::= INTEGER (1..14)

TGMP ::= ENUMERATED {tdd-Measurement, fdd-Measurement,gsm-Measurement, otherMP }

TGP-Sequence ::= SEQUENCE {tgpsi TGPSI,tgps-StatusFlag TGPS-StatusFlag,tgps-ConfigurationParams TGPS-ConfigurationParams OPTIONAL

}

TGP-SequenceList ::= SEQUENCE (SIZE (1..maxTGPS)) OFTGP-Sequence

TGP-SequenceShort ::= SEQUENCE {tgpsi TGPSI,tgps-StatusFlag TGPS-StatusFlag

}

TGPL ::= INTEGER (1..144)

-- TABULAR: The value 0 represents "infinity" in the tabular description.TGPRC ::= INTEGER (0..63)

TGPS-ConfigurationParams ::= SEQUENCE {tgmp TGMP,tgprc TGPRC,tgcfn TGCFN,tgsn TGSN,tgl1 TGL,tgl2 TGL OPTIONAL,tgd TGD,tgpl1 TGPL,tgpl2 TGPL OPTIONAL,rpp RPP,itp ITP,ul-DL-Mode UL-DL-Mode,-- TABULAR: Compressed mode method is nested inside UL-DL-Modedl-FrameType DL-FrameType,deltaSIR1 DeltaSIR,deltaSIRAfter1 DeltaSIR,deltaSIR2 DeltaSIR OPTIONAL,deltaSIRAfter2 DeltaSIR OPTIONAL

}

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TGPS-StatusFlag ::= ENUMERATED {tgpsActive, tgpsInactive }

TGPSI ::= INTEGER (1..maxTGPS)

TGSN ::= INTEGER (0..14)

TimeInfo ::= SEQUENCE {activationTime ActivationTime OPTIONAL,durationTimeInfo DurationTimeInfo OPTIONAL

}

TimeslotList ::= SEQUENCE (SIZE (1..maxTS)) OFTimeslotNumber

TimeslotNumber ::= INTEGER (0..14)

TimeslotSync2 ::= INTEGER (0..6)

TimingIndication ::= ENUMERATED{initialize, maintain}

-- Actual value = IE value * 256TimingOffset ::= INTEGER (0..149)

TPC-CombinationIndex ::= INTEGER (0..5)

TPC-StepSizeFDD ::= INTEGER (0..1)

TPC-StepSizeTDD ::= INTEGER (1..3)

TX-DiversityMode ::= ENUMERATED {noDiversity,sttd,closedLoopMode1,closedLoopMode2 }

UARFCN ::= INTEGER (0..16383)

UCSM-Info ::= SEQUENCE {minimumSpreadingFactor MinimumSpreadingFactor,nf-Max NF-Max,channelReqParamsForUCSM ChannelReqParamsForUCSM

}

UL-CCTrCH ::= SEQUENCE {tfcs-Identity TFCS-IdentityPlain OPTIONAL,timeInfo TimeInfo,commonTimeslotInfo CommonTimeslotInfo OPTIONAL,ul-CCTrCH-TimeslotsCodes UplinkTimeslotsCodes OPTIONAL

}

UL-CCTrCHList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFUL-CCTrCH

UL-CCTrChTPCList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFTFCS-Identity

UL-ChannelRequirement ::= CHOICE {ul-DPCH-Info UL-DPCH-Info,prach-RACH-Info PRACH-RACH-Info,cpch-SetInfo CPCH-SetInfo,cpch-SetID CPCH-SetID,spare NULL

}

UL-CompressedModeMethod ::= ENUMERATED {sf-2, higherLayerScheduling }

UL-DL-Mode ::= CHOICE {ul UL-CompressedModeMethod,dl DL-CompressedModeMethod

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}

UL-DPCCH-SlotFormat ::= ENUMERATED {slf0, slf1, slf2 }

UL-DPCH-Info ::= SEQUENCE {ul-DPCH-PowerControlInfo UL-DPCH-PowerControlInfo OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {scramblingCodeType ScramblingCodeType,scramblingCode UL-ScramblingCode,numberOfDPDCH NumberOfDPDCH DEFAULT 1,spreadingFactor SpreadingFactor,tfci-Existence BOOLEAN,numberOfFBI-Bits NumberOfFBI-Bits OPTIONAL,-- The IE above is conditional based on historypuncturingLimit PuncturingLimit

},tdd SEQUENCE {

ul-TimingAdvance UL-TimingAdvanceControl OPTIONAL,ul-CCTrCHList UL-CCTrCHList

}}

}

UL-DPCH-InfoPostFDD ::= SEQUENCE {ul-DPCH-PowerControlInfo UL-DPCH-PowerControlInfoPostFDD,

scramblingCodeType ScramblingCodeType,reducedScramblingCodeNumber ReducedScramblingCodeNumber,spreadingFactor SpreadingFactor

}

UL-DPCH-InfoPostTDD ::= SEQUENCE {ul-DPCH-PowerControlInfo UL-DPCH-PowerControlInfoPostTDD,ul-TimingAdvance UL-TimingAdvanceControl OPTIONAL,ul-CCTrCH-TimeslotsCodes UplinkTimeslotsCodes

}

UL-DPCH-InfoPredef ::= SEQUENCE {ul-DPCH-PowerControlInfo UL-DPCH-PowerControlInfoPredef,modeSpecificInfo CHOICE {

fdd SEQUENCE {tfci-Existence BOOLEAN,puncturingLimit PuncturingLimit

},tdd SEQUENCE {

commonTimeslotInfo CommonTimeslotInfo}

}}

UL-DPCH-PowerControlInfo ::= CHOICE {fdd SEQUENCE {

dpcch-PowerOffset DPCCH-PowerOffset,pc-Preamble PC-Preamble,powerControlAlgorithm PowerControlAlgorithm-- TABULAR: TPC step size nested inside PowerControlAlgorithm

},tdd SEQUENCE {

ul-TargetSIR UL-TargetSIR,ul-OL-PC-Signalling CHOICE {

broadcast-UL-OL-PC-info NULL,handoverGroup SEQUENCE {

individualTS-InterferenceList IndividualTS-InterferenceList,dpch-ConstantValue ConstantValue,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power

}} OPTIONAL

}}

UL-DPCH-PowerControlInfoPostFDD ::= SEQUENCE {powerControlAlgorithm PowerControlAlgorithm-- TABULAR: TPC step size nested inside PowerControlAlgorithm

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}

UL-DPCH-PowerControlInfoPostTDD ::= SEQUENCE {ul-TargetSIR UL-TargetSIR,ul-TimeslotInterference UL-Interference

}

UL-DPCH-PowerControlInfoPredef ::= CHOICE {fdd SEQUENCE {

dpcch-PowerOffset DPCCH-PowerOffset,pc-Preamble PC-Preamble

},tdd SEQUENCE {

dpch-ConstantValue ConstantValue}

}

-- Value range -110 .. -70 used for Release 99UL-Interference ::= INTEGER (-110..-47)

-- UL-ScramblingCode ::= INTEGER (0..16777215)

-- Actual value = (IE value * 0.5) - 11UL-TargetSIR ::= INTEGER (0..62)

UL-TimingAdvance ::= INTEGER (0..63)

UL-TimingAdvanceControl ::= CHOICE {disabled NULL,enabled SEQUENCE {

ul-TimingAdvance UL-TimingAdvance OPTIONAL,activationTime ActivationTime OPTIONAL

}}

UL-TS-ChannelizationCode ::= ENUMERATED {cc1-1, cc2-1, cc2-2,cc4-1, cc4-2, cc4-3, cc4-4,cc8-1, cc8-2, cc8-3, cc8-4,cc8-5, cc8-6, cc8-7, cc8-8,cc16-1, cc16-2, cc16-3, cc16-4,cc16-5, cc16-6, cc16-7, cc16-8,cc16-9, cc16-10, cc16-11, cc16-12,cc16-13, cc16-14, cc16-15, cc16-16 }

UL-TS-ChannelizationCodeList ::= SEQUENCE (SIZE (1..2)) OFUL-TS-ChannelizationCode

UplinkAdditionalTimeslots ::= SEQUENCE {parameters CHOICE {

sameAsLast SEQUENCE {timeslotNumber TimeslotNumber

},newParameters SEQUENCE {

individualTimeslotInfo IndividualTimeslotInfo,ul-TS-ChannelizationCodeList UL-TS-ChannelizationCodeList

}}

}

UplinkTimeslotsCodes ::= SEQUENCE {firstIndividualTimeslotInfo IndividualTimeslotInfo,ul-TS-ChannelizationCodeList UL-TS-ChannelizationCodeList,moreTimeslots CHOICE {

noMore NULL,additionalTimeslots CHOICE {

consecutive SEQUENCE {numAdditionalTimeslots INTEGER (1..maxTS-1)

},timeslotList SEQUENCE (SIZE (1..maxTS-1)) OF

UplinkAdditionalTimeslots}

}}

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END

11.3.7 测量信息元素Measurement-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

CellIdentityFROM UTRANMobility-IEs

UTRAN-DRX-CycleLengthCoefficientFROM UserEquipment-IEs

RB-IdentityFROM RadioBearer-IEs

TFCS-IdentityPlain,TransportChannelIdentity

FROM TransportChannel-IEs

BurstType,CellParametersID,FrequencyInfo,MaxAllowedUL-TX-Power,PrimaryCCPCH-Info,PrimaryCCPCH-TX-Power,PrimaryCPICH-Info,PrimaryCPICH-TX-Power,TimeslotNumber,UL-TimingAdvance

FROM PhysicalChannel-IEs

BSICFROM Other-IEs

maxAdditionalMeas,maxCCTrCH,maxCellMeas,maxCellMeas-1,maxFreq,maxMeasEvent,maxMeasParEvent,maxOtherRAT,maxRB,maxRL,maxRL-1,maxSat,maxTrCH,maxTS

FROM Constant-definitions;

AcquisitionSatInfo ::= SEQUENCE {satID SatID,doppler0thOrder INTEGER (-2048..2047),extraDopplerInfo ExtraDopplerInfo OPTIONAL,codePhase INTEGER (0..1022),integerCodePhase INTEGER (0..19),gps-BitNumber INTEGER (0..3),codePhaseSearchWindow CodePhaseSearchWindow,azimuthAndElevation AzimuthAndElevation OPTIONAL

}

AcquisitionSatInfoList ::= SEQUENCE (SIZE (1..maxSat)) OFAcquisitionSatInfo

AdditionalAssistanceData ::= OCTET STRING (SIZE (1..38))

AdditionalMeasurementID-List ::= SEQUENCE (SIZE (1..maxAdditionalMeas)) OFMeasurementIdentityNumber

AlmanacSatInfo ::= SEQUENCE {satID SatID,

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e BIT STRING (SIZE (16)),t-oa BIT STRING (SIZE (8)),deltaI BIT STRING (SIZE (16)),omegaDot BIT STRING (SIZE (16)),satHealth BIT STRING (SIZE (8)),a-Sqrt BIT STRING (SIZE (24)),omega0 BIT STRING (SIZE (24)),m0 BIT STRING (SIZE (24)),omega BIT STRING (SIZE (24)),af0 BIT STRING (SIZE (11)),af1 BIT STRING (SIZE (11))

}

AlmanacSatInfoList ::= SEQUENCE (SIZE (1..maxSat)) OFAlmanacSatInfo

AverageRLC-BufferPayload ::= ENUMERATED {pla0, pla4, pla8, pla16, pla32,pla64, pla128, pla256, pla512,pla1024, pla2k, pla4k, pla8k, pla16k,pla32k, pla64k, pla128k, pla256k,pla512k, pla1024k }

AzimuthAndElevation ::= SEQUENCE {azimuth INTEGER (0..31),elevation INTEGER (0..7)

}

BadSatList ::= SEQUENCE (SIZE (1..maxSat)) OFINTEGER (0..63)

BCCH-ARFCN ::= INTEGER (0..1023)

BLER-MeasurementResults ::= SEQUENCE {transportChannelIdentity TransportChannelIdentity,dl-TransportChannelBLER DL-TransportChannelBLER OPTIONAL

}

BLER-MeasurementResultsList ::= SEQUENCE (SIZE (1..maxTrCH)) OFBLER-MeasurementResults

BLER-TransChIdList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

BSIC-VerificationRequired ::= ENUMERATED {required, notRequired }

BurstModeParameters ::= SEQUENCE {burstStart INTEGER (0..15),burstLength INTEGER (10..25),burstFreq INTEGER (1..16)

}

CellDCH-ReportCriteria ::= CHOICE {intraFreqReportingCriteria IntraFreqReportingCriteria,periodicalReportingCriteria PeriodicalReportingCriteria

}

-- Actual value = IE value * 0.5CellIndividualOffset ::= INTEGER (-20..20)

CellInfo ::= SEQUENCE {cellIndividualOffset CellIndividualOffset DEFAULT 0,referenceTimeDifferenceToCell ReferenceTimeDifferenceToCell OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info OPTIONAL,primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,readSFN-Indicator BOOLEAN,tx-DiversityIndicator BOOLEAN

},tdd SEQUENCE {

primaryCCPCH-Info PrimaryCCPCH-Info,

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primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,timeslotInfoList TimeslotInfoList OPTIONAL

}}

}

CellInfoSI-RSCP ::= SEQUENCE {cellIndividualOffset CellIndividualOffset DEFAULT 0,referenceTimeDifferenceToCell ReferenceTimeDifferenceToCell OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info OPTIONAL,primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,readSFN-Indicator BOOLEAN,tx-DiversityIndicator BOOLEAN

},tdd SEQUENCE {

primaryCCPCH-Info PrimaryCCPCH-Info,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,timeslotInfoList TimeslotInfoList OPTIONAL

}},cellSelectionReselectionInfo CellSelectReselectInfoSIB-11-12-RSCP OPTIONAL

}

CellInfoSI-ECN0 ::= SEQUENCE {cellIndividualOffset CellIndividualOffset DEFAULT 0,referenceTimeDifferenceToCell ReferenceTimeDifferenceToCell OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info OPTIONAL,primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,readSFN-Indicator BOOLEAN,tx-DiversityIndicator BOOLEAN

},tdd SEQUENCE {

primaryCCPCH-Info PrimaryCCPCH-Info,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,timeslotInfoList TimeslotInfoList OPTIONAL

}},cellSelectionReselectionInfo CellSelectReselectInfoSIB-11-12-ECN0 OPTIONAL

}

CellInfoSI-HCS-RSCP ::= SEQUENCE {cellIndividualOffset CellIndividualOffset DEFAULT 0,referenceTimeDifferenceToCell ReferenceTimeDifferenceToCell OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info OPTIONAL,primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,readSFN-Indicator BOOLEAN,tx-DiversityIndicator BOOLEAN

},tdd SEQUENCE {

primaryCCPCH-Info PrimaryCCPCH-Info,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,timeslotInfoList TimeslotInfoList OPTIONAL

}},cellSelectionReselectionInfo CellSelectReselectInfoSIB-11-12-HCS-RSCP OPTIONAL

}

CellInfoSI-HCS-ECN0 ::= SEQUENCE {cellIndividualOffset CellIndividualOffset DEFAULT 0,referenceTimeDifferenceToCell ReferenceTimeDifferenceToCell OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info OPTIONAL,primaryCPICH-TX-Power PrimaryCPICH-TX-Power OPTIONAL,readSFN-Indicator BOOLEAN,tx-DiversityIndicator BOOLEAN

},tdd SEQUENCE {

primaryCCPCH-Info PrimaryCCPCH-Info,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,timeslotInfoList TimeslotInfoList OPTIONAL

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}},cellSelectionReselectionInfo CellSelectReselectInfoSIB-11-12-HCS-ECN0 OPTIONAL

}

CellMeasuredResults ::= SEQUENCE {cellIdentity CellIdentity OPTIONAL,sfn-SFN-ObsTimeDifference SFN-SFN-ObsTimeDifference OPTIONAL,cfn-SFN-ObsTimeDifference CFN-SFN-ObsTimeDifference OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,cpich-Ec-N0 CPICH-Ec-N0 OPTIONAL,cpich-RSCP CPICH-RSCP OPTIONAL,pathloss Pathloss OPTIONAL

},tdd SEQUENCE {

cellParametersID CellParametersID,primaryCCPCH-RSCP PrimaryCCPCH-RSCP OPTIONAL,timeslotISCP-List TimeslotISCP-List OPTIONAL

}}

}

CellMeasurementEventResults ::= CHOICE {fdd SEQUENCE (SIZE (1..maxCellMeas)) OF

PrimaryCPICH-Info,tdd SEQUENCE (SIZE (1..maxCellMeas)) OF

PrimaryCCPCH-Info}

CellPosition ::= SEQUENCE {relativeNorth INTEGER (-32767..32767),relativeEast INTEGER (-32767..32767),relativeAltitude INTEGER (-4095..4095)

}

CellReportingQuantities ::= SEQUENCE {sfn-SFN-OTD-Type SFN-SFN-OTD-Type,cellIdentity BOOLEAN,cfn-SFN-ObsTimeDifference BOOLEAN,modeSpecificInfo CHOICE {

fdd SEQUENCE {cpich-Ec-N0 BOOLEAN,cpich-RSCP BOOLEAN,pathloss BOOLEAN

},tdd SEQUENCE {

timeslotISCP BOOLEAN,primaryCCPCH-RSCP BOOLEAN,pathloss BOOLEAN

}}

}

CellSelectReselectInfoSIB-11-12-RSCP ::= SEQUENCE {q-OffsetS-N Q-OffsetS-N DEFAULT 0,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {q-QualMin Q-QualMin OPTIONAL,q-RxlevMin Q-RxlevMin OPTIONAL

},tdd SEQUENCE {

q-RxlevMin Q-RxlevMin OPTIONAL}

}}

CellSelectReselectInfoSIB-11-12-ECN0 ::= SEQUENCE {q-Offset1S-N Q-OffsetS-N DEFAULT 0,q-Offset2S-N Q-OffsetS-N DEFAULT 0,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {q-QualMin Q-QualMin OPTIONAL,

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q-RxlevMin Q-RxlevMin OPTIONAL},tdd SEQUENCE {

q-RxlevMin Q-RxlevMin OPTIONAL}

}}

CellSelectReselectInfoSIB-11-12-HCS-RSCP ::= SEQUENCE {q-OffsetS-N Q-OffsetS-N DEFAULT 0,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,hcs-NeighbouringCellInformation-RSCP HCS-NeighbouringCellInformation-RSCPOPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {q-QualMin Q-QualMin OPTIONAL,q-RxlevMin Q-RxlevMin OPTIONAL

},tdd SEQUENCE {

q-RxlevMin Q-RxlevMin OPTIONAL}

}}--???CellSelectReselectInfoSIB-11-12-HCS-ECN0 ::= SEQUENCE {

q-Offset1S-N Q-OffsetS-N DEFAULT 0,q-Offset2S-N Q-OffsetS-N DEFAULT 0,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power OPTIONAL,hcs-NeighbouringCellInformation-ECN0 HCS-NeighbouringCellInformation-ECN0OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {q-QualMin Q-QualMin OPTIONAL,q-RxlevMin Q-RxlevMin OPTIONAL

},tdd SEQUENCE {

q-RxlevMin Q-RxlevMin OPTIONAL}

}}

CellToMeasure ::= SEQUENCE {sfn-sfn-Drift INTEGER (0..30) OPTIONAL,primaryCPICH-Info PrimaryCPICH-Info,frequencyInfo FrequencyInfo OPTIONAL,sfn-SFN-ObservedTimeDifference SFN-SFN-ObsTimeDifference1,fineSFN-SFN FineSFN-SFN,cellPosition CellPosition OPTIONAL

}

CellToMeasureInfoList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFCellToMeasure

CellToReport ::= SEQUENCE {frequency Frequency,bsic BSIC

}

CellToReportList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFCellToReport

CFN-SFN-ObsTimeDifference ::= CHOICE {fdd-ChipDiff INTEGER (0..157286399),tdd-FrameDiff INTEGER (0..4095)

}

CodePhaseSearchWindow ::= ENUMERATED {w1023, w1, w2, w3, w4, w6, w8,w12, w16, w24, w32, w48, w64,w96, w128, w192 }

CPICH-Ec-N0 ::= INTEGER (-20..0)

-- IE value 0 = <-24 dB, 1 = between -24 and -23 and so onCPICH-Ec-N0-OTDOA ::= INTEGER (0..26)

CPICH-RSCP ::= INTEGER (-115..-40)

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DeltaPRC ::= INTEGER (-127..127)

DeltaRRC ::= INTEGER (-7..7)

DGPS-CorrectionSatInfo ::= SEQUENCE {satID SatID,iode BIT STRING (SIZE (8)),udre UDRE,prc PRC,rrc RRC,deltaPRC2 DeltaPRC,deltaRRC2 DeltaRRC,deltaPRC3 DeltaPRC,deltaRRC3 DeltaRRC

}

DGPS-CorrectionSatInfoList ::= SEQUENCE (SIZE (1..maxSat)) OFDGPS-CorrectionSatInfo

DGPS-Information ::= SEQUENCE {satID SatID,iode IODE,udre UDRE,prc PRC,rrc RRC,deltaPRC2 DeltaPRC,deltaRRC2 DeltaRRC

}

DGPS-InformationList ::= SEQUENCE (SIZE (1..maxSat)) OFDGPS-Information

DiffCorrectionStatus ::= ENUMERATED {udre-1-0, udre-0-75, udre-0-5, udre-0-3,udre-0-2, udre-0-1, noData, invalidData }

-- Actual value = IE value * 0.02DL-PhysicalChannelBER ::= INTEGER (0..255)

-- Actual value = IE value * 0.02DL-TransportChannelBLER ::= INTEGER (0..255)

DopplerUncertainty ::= ENUMERATED {hz12-5, hz25, hz50, hz100, hz200 }

EllipsoidPoint ::= OCTET STRING (SIZE (7))

EllipsoidPointAltitude ::= OCTET STRING (SIZE (9))

EllipsoidPointAltitudeEllipse ::= OCTET STRING (SIZE (14))

EllipsoidPointUncertCircle ::= OCTET STRING (SIZE (8))

EllipsoidPointUncertEllipse ::= OCTET STRING (SIZE (11))

EnvironmentCharacterization ::= ENUMERATED {possibleHeavyMultipathNLOS,lightMultipathLOS,notDefined }

Event1a ::= SEQUENCE {triggeringCondition TriggeringCondition,reportingRange ReportingRange,forbiddenAffectCellList ForbiddenAffectCellList OPTIONAL,w W,reportDeactivationThreshold ReportDeactivationThreshold

}

Event1b ::= SEQUENCE {triggeringCondition TriggeringCondition,reportingRange ReportingRange,forbiddenAffectCellList ForbiddenAffectCellList OPTIONAL,w W

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}

Event1c ::= SEQUENCE {replacementActivationThreshold ReplacementActivationThreshold

}

Event1ef ::= SEQUENCE {triggeringCondition TriggeringCondition,thresholdUsedFrequency ThresholdUsedFrequency

}

Event2a ::= SEQUENCE {usedFreqThreshold Threshold,usedFreqW W,hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL,nonUsedFreqParameterList NonUsedFreqParameterList OPTIONAL

}

Event2b ::= SEQUENCE {usedFreqThreshold Threshold,usedFreqW W,hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL,nonUsedFreqParameterList NonUsedFreqParameterList OPTIONAL

}

Event2c ::= SEQUENCE {hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL,nonUsedFreqParameterList NonUsedFreqParameterList OPTIONAL

}

Event2d ::= SEQUENCE {usedFreqThreshold Threshold,usedFreqW W,hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

Event2e ::= SEQUENCE {hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL,nonUsedFreqParameterList NonUsedFreqParameterList OPTIONAL

}

Event2f ::= SEQUENCE {usedFreqThreshold Threshold,usedFreqW W,hysteresis HysteresisInterFreq,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

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Event3a ::= SEQUENCE {thresholdOwnSystem Threshold,w W,thresholdOtherSystem Threshold,hysteresis Hysteresis,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

Event3b ::= SEQUENCE {thresholdOtherSystem Threshold,hysteresis Hysteresis,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

Event3c ::= SEQUENCE {thresholdOtherSystem Threshold,hysteresis Hysteresis,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

Event3d ::= SEQUENCE {hysteresis Hysteresis,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

EventIDInterFreq ::= ENUMERATED {e2a, e2b, e2c, e2d, e2e, e2f }

EventIDInterSystem ::= ENUMERATED {e3a, e3b, e3c, e3d }

EventIDIntraFreq ::= ENUMERATED {e1a, e1b, e1c, e1d, e1e,e1f, e1g, e1h, e1i }

EventResults ::= CHOICE {intraFreqEventResults IntraFreqEventResults,interFreqEventResults InterFreqEventResults,interSystemEventResults InterSystemEventResults,trafficVolumeEventResults TrafficVolumeEventResults,qualityEventResults QualityEventResults,ue-InternalEventResults UE-InternalEventResults,lcs-MeasurementEventResults LCS-MeasurementEventResults

}

ExtraDopplerInfo ::= SEQUENCE {doppler1stOrder INTEGER (-42..21),dopplerUncertainty DopplerUncertainty

}

FACH-MeasurementOccasionInfo ::= SEQUENCE {k-UTRA UTRAN-DRX-CycleLengthCoefficient,otherRAT-InSysInfoList OtherRAT-InSysInfoList OPTIONAL

}

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FilterCoefficient ::= ENUMERATED {fc0, fc1, fc2, fc3, fc4, fc5, fc6, fc7, fc8, fc9, fc11, fc13, fc15, fc17, fc19, spare1 }

FineSFN-SFN ::= ENUMERATED {fs0, fs0-25, fs0-5, fs0-75 }

ForbiddenAffectCell ::= CHOICE {fdd PrimaryCPICH-Info,tdd PrimaryCCPCH-Info

}

ForbiddenAffectCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFForbiddenAffectCell

FreqQualityEstimateQuantity-FDD ::= ENUMERATED {cpich-Ec-N0,cpich-RSCP }

FreqQualityEstimateQuantity-TDD ::= ENUMERATED {primaryCCPCH-RSCP }

-- **TODO**, not defined yetFrequency ::= SEQUENCE {}

GSM-CarrierRSSI ::= BIT STRING (SIZE (6))

GPS-MeasurementParam ::= SEQUENCE {satelliteID INTEGER (0..63),c-N0 INTEGER (0..63),doppler INTEGER (-32768..32768),wholeGPS-Chips INTEGER (0..1023),fractionalGPS-Chips INTEGER (0..1023),multipathIndicator MultipathIndicator,pseudorangeRMS-Error INTEGER (0..63)

}

GPS-MeasurementParamList ::= SEQUENCE (SIZE (1..maxSat)) OFGPS-MeasurementParam

-- **TODO**, not defined yetGSM-OutputPower ::= SEQUENCE {}

GPS-TOW-1msec ::= INTEGER (0..604799999)

GPS-TOW-1usec ::= SEQUENCE {tow-1msec GPS-TOW-1msec,tow-rem-usec GPS-TOW-rem-usec

}

GPS-TOW-Assist ::= SEQUENCE {satID SatID,tlm-Message BIT STRING (SIZE (14)),antiSpoof BOOLEAN,alert BOOLEAN,tlm-Reserved BIT STRING (SIZE (2))

}

GPS-TOW-AssistList ::= SEQUENCE (SIZE (1..maxSat)) OFGPS-TOW-Assist

GPS-TOW-rem-usec ::= INTEGER (0..999)

HCS-CellReselectInformation-RSCP ::= SEQUENCE {penaltyTime PenaltyTime-RSCP-- TABULAR: The default value is "notUsed", temporary offset is nested inside PenaltyTime

}

HCS-CellReselectInformation-ECN0 ::= SEQUENCE {penaltyTime PenaltyTime-ECN0-- TABULAR: The default value is "notUsed", temporary offset is nested inside PenaltyTime

}

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HCS-NeighbouringCellInformation-RSCP ::= SEQUENCE {hcs-PRIO HCS-PRIO DEFAULT 0,q-HCS Q-HCS DEFAULT 0,hcs-CellReselectInformation HCS-CellReselectInformation-RSCP

}

HCS-NeighbouringCellInformation-ECN0 ::= SEQUENCE {hcs-PRIO HCS-PRIO DEFAULT 0,q-HCS Q-HCS DEFAULT 0,hcs-CellReselectInformation HCS-CellReselectInformation-ECN0

}

HCS-PRIO ::= INTEGER (0..7)

HCS-ServingCellInformation ::= SEQUENCE {hcs-PRIO HCS-PRIO DEFAULT 0,q-HCS Q-HCS DEFAULT 0,t-CR-Max T-CRMax OPTIONAL

}

-- Actual value = IE value * 0.5Hysteresis ::= INTEGER (0..15)

-- Actual value = IE value * 0.5HysteresisInterFreq ::= INTEGER (0..29)

InterFreqCell ::= SEQUENCE {frequencyInfo FrequencyInfo,nonFreqRelatedEventResults CellMeasurementEventResults

}

InterFreqCellID ::= INTEGER (0..maxCellMeas-1)

InterFreqCellInfoList ::= SEQUENCE {removedInterFreqCellList RemovedInterFreqCellList OPTIONAL,newInterFreqCellList NewInterFreqCellList OPTIONAL

}

InterFreqCellInfoSI-List-RSCP ::= SEQUENCE {removedInterFreqCellList RemovedInterFreqCellList OPTIONAL,newInterFreqCellList NewInterFreqCellSI-List-RSCP OPTIONAL

}

InterFreqCellInfoSI-List-ECN0 ::= SEQUENCE {removedInterFreqCellList RemovedInterFreqCellList OPTIONAL,newInterFreqCellList NewInterFreqCellSI-List-ECN0 OPTIONAL

}

InterFreqCellInfoSI-List-HCS-RSCP ::= SEQUENCE {removedInterFreqCellList RemovedInterFreqCellList OPTIONAL,newInterFreqCellList NewInterFreqCellSI-List-HCS-RSCP OPTIONAL

}InterFreqCellInfoSI-List-HCS-ECN0 ::= SEQUENCE {

removedInterFreqCellList RemovedInterFreqCellList OPTIONAL,newInterFreqCellList NewInterFreqCellSI-List-HCS-ECN0 OPTIONAL

}

InterFreqCellList ::= SEQUENCE (SIZE (1..maxFreq)) OFInterFreqCell

InterFreqCellMeasuredResultsList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFCellMeasuredResults

InterFreqEvent ::= CHOICE {event2a Event2a,event2b Event2b,event2c Event2c,event2d Event2d,event2e Event2e,event2f Event2f

}

InterFreqEventList ::= SEQUENCE (SIZE (1..maxMeasEvent)) OFInterFreqEvent

InterFreqEventResults ::= SEQUENCE {

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eventID EventIDInterFreq,interFreqCellList InterFreqCellList OPTIONAL

}

InterFreqMeasQuantity ::= SEQUENCE {reportingCriteria CHOICE {

intraFreqReportingCriteria SEQUENCE {intraFreqMeasQuantity IntraFreqMeasQuantity

},interFreqReportingCriteria SEQUENCE {

filterCoefficient FilterCoefficient DEFAULT fc0,modeSpecificInfo CHOICE {

fdd SEQUENCE {freqQualityEstimateQuantity-FDD FreqQualityEstimateQuantity-FDD

},tdd SEQUENCE {

freqQualityEstimateQuantity-TDD FreqQualityEstimateQuantity-TDD}

}}

}}

InterFreqMeasuredResults ::= SEQUENCE {frequencyInfo FrequencyInfo OPTIONAL,utra-CarrierRSSI UTRA-CarrierRSSI OPTIONAL,interFreqCellMeasuredResultsList InterFreqCellMeasuredResultsList OPTIONAL

}

InterFreqMeasuredResultsList ::= SEQUENCE (SIZE (1..maxFreq)) OFInterFreqMeasuredResults

InterFreqMeasurementSysInfo-RSCP ::= SEQUENCE {interFreqMeasurementID MeasurementIdentityNumber DEFAULT 2,interFreqCellInfoSI-List InterFreqCellInfoSI-List-RSCP OPTIONAL,interFreqMeasQuantity InterFreqMeasQuantity OPTIONAL,interFreqReportingCriteria InterFreqReportingCriteria OPTIONAL

}

InterFreqMeasurementSysInfo-ECN0 ::= SEQUENCE {interFreqMeasurementID MeasurementIdentityNumber DEFAULT 2,interFreqCellInfoSI-List InterFreqCellInfoSI-List-ECN0 OPTIONAL,interFreqMeasQuantity InterFreqMeasQuantity OPTIONAL,interFreqReportingCriteria InterFreqReportingCriteria OPTIONAL

}

InterFreqMeasurementSysInfo-HCS-RSCP ::= SEQUENCE {interFreqMeasurementID MeasurementIdentityNumber DEFAULT 2,interFreqCellInfoSI-List InterFreqCellInfoSI-List-HCS-RSCP OPTIONAL,interFreqMeasQuantity InterFreqMeasQuantity OPTIONAL,interFreqReportingCriteria InterFreqReportingCriteria OPTIONAL

}

InterFreqMeasurementSysInfo-HCS-ECN0 ::= SEQUENCE {interFreqMeasurementID MeasurementIdentityNumber DEFAULT 2,interFreqCellInfoSI-List InterFreqCellInfoSI-List-HCS-ECN0 OPTIONAL,interFreqMeasQuantity InterFreqMeasQuantity OPTIONAL,interFreqReportingCriteria InterFreqReportingCriteria OPTIONAL

}

InterFreqReportCriteria ::= CHOICE {intraFreqReportingCriteria IntraFreqReportingCriteria,interFreqReportingCriteria InterFreqReportingCriteria,periodicalReportingCriteria PeriodicalWithReportingCellStatus,noReporting ReportingCellStatusOpt

}

InterFreqReportingCriteria ::= SEQUENCE {interFreqEventList InterFreqEventList OPTIONAL

}

InterFreqReportingQuantity ::= SEQUENCE {utra-Carrier-RSSI BOOLEAN,frequencyQualityEstimate BOOLEAN,nonFreqRelatedQuantities CellReportingQuantities

}

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InterFrequencyMeasurement ::= SEQUENCE {interFreqCellInfoList InterFreqCellInfoList,interFreqMeasQuantity InterFreqMeasQuantity OPTIONAL,interFreqReportingQuantity InterFreqReportingQuantity OPTIONAL,measurementValidity MeasurementValidity OPTIONAL,interFreqSetUpdate UE-AutonomousUpdateMode OPTIONAL,reportCriteria InterFreqReportCriteria

}

InterSystemCellID ::= INTEGER (0..maxCellMeas-1)

InterSystemCellInfoList ::= SEQUENCE {removedInterSystemCellList RemovedInterSystemCellList,newInterSystemCellList NewInterSystemCellList

}

InterSystemCellInfoList-HCS ::= SEQUENCE {removedInterSystemCellList RemovedInterSystemCellList,newInterSystemCellList NewInterSystemCellList-HCS

}

InterSystemEvent ::= CHOICE {event3a Event3a,event3b Event3b,event3c Event3c,event3d Event3d

}

InterSystemEventList ::= SEQUENCE (SIZE (1..maxMeasEvent)) OFInterSystemEvent

InterSystemEventResults ::= SEQUENCE {eventID EventIDInterSystem,cellToReportList CellToReportList

}

InterSystemInfo ::= ENUMERATED {gsm, spare1 }

InterSystemMeasQuantity ::= SEQUENCE {measQuantityUTRAN-QualityEstimate IntraFreqMeasQuantity,systemSpecificInfo CHOICE {

gsm SEQUENCE {measurementQuantity MeasurementQuantityGSM,filterCoefficient FilterCoefficient DEFAULT fc1,bsic-VerificationRequired BSIC-VerificationRequired

},is-2000 SEQUENCE {

tadd-EcIo INTEGER (0..63),tcomp-EcIo INTEGER (0..15),softSlope INTEGER (0..63) OPTIONAL,addIntercept INTEGER (0..63) OPTIONAL

}}

}

InterSystemMeasuredResults ::= CHOICE {gsm SEQUENCE {

frequency Frequency,gsm-CarrierRSSI GSM-CarrierRSSI OPTIONAL,pathloss Pathloss OPTIONAL,bsic BSIC OPTIONAL,observedTimeDifferenceToGSM ObservedTimeDifferenceToGSM OPTIONAL

},spare NULL

}

InterSystemMeasuredResultsList ::= SEQUENCE (SIZE (1..maxOtherRAT)) OFInterSystemMeasuredResults

InterSystemMeasurement ::= SEQUENCE {interSystemCellInfoList InterSystemCellInfoList OPTIONAL,interSystemMeasQuantity InterSystemMeasQuantity OPTIONAL,interSystemReportingQuantity InterSystemReportingQuantity OPTIONAL,

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reportCriteria InterSystemReportCriteria}

InterSystemMeasurementSysInfo ::= SEQUENCE {interSystemMeasurementID MeasurementIdentityNumber DEFAULT 3,interSystemCellInfoList InterSystemCellInfoList OPTIONAL,interSystemMeasQuantity InterSystemMeasQuantity OPTIONAL

}

InterSystemMeasurementSysInfo-HCS ::= SEQUENCE {interSystemMeasurementID MeasurementIdentityNumber DEFAULT 3,interSystemCellInfoList InterSystemCellInfoList-HCS OPTIONAL,interSystemMeasQuantity InterSystemMeasQuantity OPTIONAL

}

InterSystemReportCriteria ::= CHOICE {interSystemReportingCriteria InterSystemReportingCriteria,periodicalReportingCriteria PeriodicalWithReportingCellStatus,noReporting ReportingCellStatusOpt

}

InterSystemReportingCriteria ::= SEQUENCE {interSystemEventList InterSystemEventList OPTIONAL

}

InterSystemReportingQuantity ::= SEQUENCE {utran-EstimatedQuality BOOLEAN,systemSpecificInfo CHOICE {

gsm SEQUENCE {pathloss BOOLEAN,observedTimeDifferenceGSM BOOLEAN,gsm-Carrier-RSSI BOOLEAN,bsic BOOLEAN

},spare1 NULL

}}

IntraFreqCellID ::= INTEGER (0..maxCellMeas-1)

IntraFreqCellInfoList ::= SEQUENCE {removedIntraFreqCellList RemovedIntraFreqCellList OPTIONAL,newIntraFreqCellList NewIntraFreqCellList OPTIONAL

}

IntraFreqCellInfoSI-List-RSCP ::= SEQUENCE {removedIntraFreqCellList RemovedIntraFreqCellList OPTIONAL,newIntraFreqCellList NewIntraFreqCellSI-List-RSCP

}

IntraFreqCellInfoSI-List-ECN0 ::= SEQUENCE {removedIntraFreqCellList RemovedIntraFreqCellList OPTIONAL,newIntraFreqCellList NewIntraFreqCellSI-List-ECN0

}

IntraFreqCellInfoSI-List-HCS-RSCP ::= SEQUENCE {removedIntraFreqCellList RemovedIntraFreqCellList OPTIONAL,newIntraFreqCellList NewIntraFreqCellSI-List-HCS-RSCP

}

IntraFreqCellInfoSI-List-HCS-ECN0 ::= SEQUENCE {removedIntraFreqCellList RemovedIntraFreqCellList OPTIONAL,newIntraFreqCellList NewIntraFreqCellSI-List-HCS-ECN0

}

IntraFreqEvent ::= CHOICE {e1a Event1a,e1b Event1b,e1c Event1c,e1d NULL,e1e Event1ef,e1f Event1ef,e1g NULL,e1h ThresholdUsedFrequency,e1i ThresholdUsedFrequency

}

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IntraFreqEventCriteria ::= SEQUENCE {event IntraFreqEvent,hysteresis Hysteresis,timeToTrigger TimeToTrigger,reportingAmount ReportingAmount,reportingInterval ReportingInterval,reportingCellStatus ReportingCellStatus OPTIONAL

}

IntraFreqEventCriteriaList ::= SEQUENCE (SIZE (1..maxMeasEvent)) OFIntraFreqEventCriteria

IntraFreqEventResults ::= SEQUENCE {eventID EventIDIntraFreq,cellMeasurementEventResults CellMeasurementEventResults

}

IntraFreqMeasQuantity ::= SEQUENCE {filterCoefficient FilterCoefficient DEFAULT fc1,modeSpecificInfo CHOICE {

fdd SEQUENCE {intraFreqMeasQuantity-FDD IntraFreqMeasQuantity-FDD

},tdd SEQUENCE {

intraFreqMeasQuantity-TDDList IntraFreqMeasQuantity-TDDList}

}}

IntraFreqMeasQuantity-FDD ::= ENUMERATED {cpich-Ec-NO,cpich-RSCP,pathloss,utra-CarrierRSSI }

IntraFreqMeasQuantity-TDD ::= ENUMERATED {primaryCCPCH-RSCP,pathloss,timeslotISCP,utra-CarrierRSSI }

IntraFreqMeasQuantity-TDDList ::= SEQUENCE (SIZE (1..4)) OFIntraFreqMeasQuantity-TDD

IntraFreqMeasuredResultsList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFCellMeasuredResults

IntraFreqMeasurementSysInfo-RSCP ::= SEQUENCE {intraFreqMeasurementID MeasurementIdentityNumber DEFAULT 1,intraFreqCellInfoSI-List IntraFreqCellInfoSI-List-RSCP OPTIONAL,intraFreqMeasQuantity IntraFreqMeasQuantity OPTIONAL,intraFreqReportingQuantityForRACH IntraFreqReportingQuantityForRACH OPTIONAL,maxReportedCellsOnRACH MaxReportedCellsOnRACH OPTIONAL,reportingInfoForCellDCH ReportingInfoForCellDCH OPTIONAL

}

IntraFreqMeasurementSysInfo-ECN0 ::= SEQUENCE {intraFreqMeasurementID MeasurementIdentityNumber DEFAULT 1,intraFreqCellInfoSI-List IntraFreqCellInfoSI-List-ECN0 OPTIONAL,intraFreqMeasQuantity IntraFreqMeasQuantity OPTIONAL,intraFreqReportingQuantityForRACH IntraFreqReportingQuantityForRACH OPTIONAL,maxReportedCellsOnRACH MaxReportedCellsOnRACH OPTIONAL,reportingInfoForCellDCH ReportingInfoForCellDCH OPTIONAL

}

IntraFreqMeasurementSysInfo-HCS-RSCP ::= SEQUENCE {intraFreqMeasurementID MeasurementIdentityNumber DEFAULT 1,intraFreqCellInfoSI-List IntraFreqCellInfoSI-List-HCS-RSCP OPTIONAL,intraFreqMeasQuantity IntraFreqMeasQuantity OPTIONAL,intraFreqReportingQuantityForRACH IntraFreqReportingQuantityForRACH OPTIONAL,maxReportedCellsOnRACH MaxReportedCellsOnRACH OPTIONAL,reportingInfoForCellDCH ReportingInfoForCellDCH OPTIONAL

}

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IntraFreqMeasurementSysInfo-HCS-ECN0 ::= SEQUENCE {intraFreqMeasurementID MeasurementIdentityNumber DEFAULT 1,intraFreqCellInfoSI-List IntraFreqCellInfoSI-List-HCS-ECN0 OPTIONAL,intraFreqMeasQuantity IntraFreqMeasQuantity OPTIONAL,intraFreqReportingQuantityForRACH IntraFreqReportingQuantityForRACH OPTIONAL,maxReportedCellsOnRACH MaxReportedCellsOnRACH OPTIONAL,reportingInfoForCellDCH ReportingInfoForCellDCH OPTIONAL

}

IntraFreqReportCriteria ::= CHOICE {intraFreqReportingCriteria IntraFreqReportingCriteria,periodicalReportingCriteria PeriodicalWithReportingCellStatus,noReporting ReportingCellStatusOpt

}

IntraFreqReportingCriteria ::= SEQUENCE {eventCriteriaList IntraFreqEventCriteriaList OPTIONAL

}

IntraFreqReportingQuantity ::= SEQUENCE {activeSetReportingQuantities CellReportingQuantities,monitoredSetReportingQuantities CellReportingQuantities,detectedSetReportingQuantities CellReportingQuantities OPTIONAL

}

IntraFreqReportingQuantityForRACH ::= SEQUENCE {sfn-SFN-OTD-Type SFN-SFN-OTD-Type,modeSpecificInfo CHOICE {

fdd SEQUENCE {intraFreqRepQuantityRACH-FDD IntraFreqRepQuantityRACH-FDD

},tdd SEQUENCE {

intraFreqRepQuantityRACH-TDDList IntraFreqRepQuantityRACH-TDDList}

}}

IntraFreqRepQuantityRACH-FDD ::= ENUMERATED {cpich-EcN0, cpich-RSCP, pathloss, noReport }

IntraFreqRepQuantityRACH-TDD ::= ENUMERATED {timeslotISCP,primaryCCPCH-RSCP,noReport }

IntraFreqRepQuantityRACH-TDDList ::= SEQUENCE (SIZE (1..2)) OFIntraFreqRepQuantityRACH-TDD

IntraFrequencyMeasurement ::= SEQUENCE {intraFreqCellInfoList IntraFreqCellInfoList OPTIONAL,intraFreqMeasQuantity IntraFreqMeasQuantity OPTIONAL,intraFreqReportingQuantity IntraFreqReportingQuantity OPTIONAL,measurementValidity MeasurementValidity OPTIONAL,reportCriteria IntraFreqReportCriteria

}

IODE ::= INTEGER (0..255)

IP-Length ::= ENUMERATED {ipl5, ipl10 }

IP-Spacing ::= ENUMERATED {e5, e7, e10, e15, e20,e30, e40, e50 }

IS-2000SpecificMeasInfo ::= ENUMERATED {frequency, timeslot, colourcode,outputpower, pn-Offset }

K-InterRAT ::= INTEGER (0..12)

LCS-Accuracy ::= BIT STRING (SIZE (7))

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-- For sfID=0 (sf4), pageNo=18, and sfID=0 & sfID=1 (sf4 & sf5), pageNo=25,-- the IE fileds for word3 – word110 are the same as LCS-GPS-IonosphericModel -- and LCS-GPS-UTC-Model. For the rest of the pages, they are the same as -- LCS-GPS-Almanac.LCS-Alma-SIB-Data ::= SEQUENCE {

sfID INTEGER (0..1),dataID INTEGER (0..3),pageNo INTEGER (0..63),word3 BIT STRING (SIZE (16)),word4 BIT STRING (SIZE (24)),word5 BIT STRING (SIZE (24)),word6 BIT STRING (SIZE (24)),word7 BIT STRING (SIZE (24)),word8 BIT STRING (SIZE (24)),word9 BIT STRING (SIZE (24)),word10 BIT STRING (SIZE (22))

}

LCS-Alma-SIB-DataList ::= SEQUENCE (SIZE (1..3)) OFLCS-Alma-SIB-Data

LCS-CipherParameters ::= SEQUENCE {cipheringKeyFlag BIT STRING (SIZE (1)),cipheringSerialNumber INTEGER (0..65535)

}

LCS-DGPS-SIB-Data ::= SEQUENCE {nodeBClockDrift NodeB-ClockDrift OPTIONAL,referenceLocationforSIB ReferenceLocationforSIB,referenceSFN ReferenceSFN OPTIONAL,referenceGPS-TOW GPS-TOW-1usec,statusHealth DiffCorrectionStatus,dgps-InformationList DGPS-InformationList

}

LCS-Ephe-SIB-Data ::= SEQUENCE {transmissiontTOW INTEGER (0..1048575),satID SatID,tlmMessage BIT STRING (SIZE (14)),tlmRevd BIT STRING (SIZE (2)),how BIT STRING (SIZE (22)),wn BIT STRING (SIZE (10)),navModel NavModel

}

LCS-Error ::= SEQUENCE {errorReason LCS-ErrorCause,additionalAssistanceData AdditionalAssistanceData

}

LCS-ErrorCause ::= ENUMERATED {notEnoughOTDOA-Cells,notEnoughGPS-Satellites,assistanceDataMissing,methodNotSupported,undefinedError,requestDeniedByUser,notProcessedAndTimeout }

LCS-EventID ::= ENUMERATED {e7a, e7b, e7c }

LCS-EventParam ::= SEQUENCE {eventID LCS-EventID,reportingAmount ReportingAmount,reportFirstFix BOOLEAN,measurementInterval LCS-MeasurementInterval,eventSpecificInfo LCS-EventSpecificInfo

}

LCS-EventParamList ::= SEQUENCE (SIZE (1..maxMeasEvent)) OFLCS-EventParam

LCS-EventSpecificInfo ::= CHOICE {e7a ThresholdPositionChange,e7b ThresholdSFN-SFN-Change,e7c ThresholdSFN-GPS-TOW

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}

LCS-GPS-AcquisitionAssistance ::= SEQUENCE {referenceTime CHOICE {

utran-ReferenceTime UTRAN-ReferenceTime,gps-ReferenceTimeOnly INTEGER (0..604799999)

},satelliteInformationList AcquisitionSatInfoList

}

LCS-GPS-Almanac ::= SEQUENCE {wn-a BIT STRING (SIZE (8)),almanacSatInfoList AlmanacSatInfoList

}

LCS-GPS-AssistanceData ::= SEQUENCE {lcs-GPS-ReferenceTime LCS-GPS-ReferenceTime OPTIONAL,lcs-GPS-ReferenceLocation EllipsoidPointAltitude OPTIONAL,lcs-GPS-DGPS-Corrections LCS-GPS-DGPS-Corrections OPTIONAL,lcs-GPS-NavigationModel LCS-GPS-NavigationModel OPTIONAL,lcs-GPS-IonosphericModel LCS-GPS-IonosphericModel OPTIONAL,lcs-GPS-UTC-Model LCS-GPS-UTC-Model OPTIONAL,lcs-GPS-Almanac LCS-GPS-Almanac OPTIONAL,lcs-GPS-AcquisitionAssistance LCS-GPS-AcquisitionAssistance OPTIONAL,lcs-GPS-Real-timeIntegrity BadSatList OPTIONAL

}

LCS-Cipher-GPS-Data-Indicator ::= SEQUENCE {lcs-CipherParameters LCS-CipherParameters OPTIONAL

}

LCS-GPS-DGPS-Corrections ::= SEQUENCE {gps-TOW INTEGER (0..604799),statusHealth DiffCorrectionStatus,dgps-CorrectionSatInfoList DGPS-CorrectionSatInfoList

}

LCS-GPS-IonosphericModel ::= SEQUENCE {alfa0 BIT STRING (SIZE (8)),alfa1 BIT STRING (SIZE (8)),alfa2 BIT STRING (SIZE (8)),alfa3 BIT STRING (SIZE (8)),beta0 BIT STRING (SIZE (8)),beta1 BIT STRING (SIZE (8)),beta2 BIT STRING (SIZE (8)),beta3 BIT STRING (SIZE (8))

}

LCS-GPS-Measurement ::= SEQUENCE {referenceSFN ReferenceSFN OPTIONAL,gps-TOW-1msec GPS-TOW-1msec,gps-TOW-rem-usec GPS-TOW-rem-usec OPTIONAL,gps-MeasurementParamList GPS-MeasurementParamList

}

LCS-GPS-NavigationModel ::= SEQUENCE {n-SAT INTEGER (1..16),navigationModelSatInfoList NavigationModelSatInfoList

}

LCS-GPS-ReferenceTime ::= SEQUENCE {gps-Week INTEGER (0..1023),gps-TOW GPS-TOW-1usec,sfn INTEGER (0..4095),gps-TOW-AssistList GPS-TOW-AssistList OPTIONAL

}

LCS-GPS-UTC-Model ::= SEQUENCE {a1 BIT STRING (SIZE (24)),a0 BIT STRING (SIZE (32)),t-ot BIT STRING (SIZE (8)),wn-t BIT STRING (SIZE (8)),delta-t-LS BIT STRING (SIZE (8)),wn-lsf BIT STRING (SIZE (8)),dn BIT STRING (SIZE (8)),

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delta-t-LSF BIT STRING (SIZE (8))}

LCS-IPDL-Parameters ::= SEQUENCE {ip-Spacing IP-Spacing,ip-Length IP-Length,ip-Offset INTEGER (0..9),seed INTEGER (0..63),burstModeParameters BurstModeParameters

}

LCS-MeasuredResults ::= SEQUENCE {lcs-MultipleSets LCS-MultipleSets OPTIONAL,lcs-ReferenceCellIdentity PrimaryCPICH-Info OPTIONAL,lcs-OTDOA-Measurement LCS-OTDOA-Measurement OPTIONAL,lcs-Position LCS-Position OPTIONAL,lcs-GPS-Measurement LCS-GPS-Measurement OPTIONAL,lcs-Error LCS-Error OPTIONAL

}

LCS-Measurement ::= SEQUENCE {lcs-ReportingQuantity LCS-ReportingQuantity,reportCriteria LCS-ReportCriteria,lcs-OTDOA-AssistanceData LCS-OTDOA-AssistanceData OPTIONAL,lcs-GPS-AssistanceData LCS-GPS-AssistanceData OPTIONAL

}

LCS-MeasurementEventResults ::= SEQUENCE {event7a LCS-Position,event7b LCS-OTDOA-Measurement,event7c LCS-GPS-Measurement

}

LCS-MeasurementInterval ::= ENUMERATED {e5, e15, e60, e300,e900, e1800, e3600, e7200 }

LCS-MethodType ::= ENUMERATED {ue-Assisted,ue-Based,ue-BasedPreferred,ue-AssistedPreferred }

LCS-MultipleSets ::= SEQUENCE {numberOfOTDOA-IPDL-GPS-Sets INTEGER (2..3),numberOfReferenceCells INTEGER (1..3),referenceCellRelation ReferenceCellRelation

}

LCS-OTDOA-AssistanceData ::= SEQUENCE {lcs-OTDOA-ReferenceCell LCS-OTDOA-ReferenceCell OPTIONAL,lcs-OTDOA-MeasurementAssistDataList LCS-OTDOA-MeasurementAssistDataList OPTIONAL,lcs-IPDL-Parameters LCS-IPDL-Parameters OPTIONAL

}

LCS-OTDOA-AssistanceSIB ::= SEQUENCE {lcs-CipherParameters LCS-CipherParameters OPTIONAL,searchWindowSize OTDOA-SearchWindowSize,referenceCellPosition ReferenceCellPosition,lcs-IPDL-Parameters LCS-IPDL-Parameters OPTIONAL,cellToMeasureInfoList CellToMeasureInfoList

}

LCS-OTDOA-Measurement ::= SEQUENCE {sfn INTEGER (0..4095),-- Actual value = IE value * 0.25 + 876ue-Rx-Tx-TimeDifference INTEGER (0..1184),qualityType QualityType,qualityChoice CHOICE {

std-10 ReferenceQuality10,std-50 ReferenceQuality50,cpich-EcN0 CPICH-Ec-N0-OTDOA,defaultQuality ReferenceQuality

},neighborList NeighborList OPTIONAL

}

LCS-OTDOA-MeasurementAssistData ::= SEQUENCE {

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primaryCPICH-Info PrimaryCPICH-Info,frequencyInfo FrequencyInfo OPTIONAL,sfn-SFN-ObsTimeDifference SFN-SFN-ObsTimeDifference1,fineSFN-SFN FineSFN-SFN OPTIONAL,searchWindowSize OTDOA-SearchWindowSize,relativeNorth INTEGER (-20000..20000) OPTIONAL,relativeEast INTEGER (-20000..20000) OPTIONAL,relativeAltitude INTEGER (-4000..4000) OPTIONAL

}

LCS-OTDOA-MeasurementAssistDataList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFLCS-OTDOA-MeasurementAssistData

LCS-OTDOA-ReferenceCell ::= SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,frequencyInfo FrequencyInfo OPTIONAL,cellPosition ReferenceCellPosition OPTIONAL

}

LCS-Position ::= SEQUENCE {referenceSFN ReferenceSFN,gps-TOW GPS-TOW-1usec,positionEstimate PositionEstimate

}

LCS-ReportCriteria ::= CHOICE {lcs-ReportingCriteria LCS-EventParamList,periodicalReportingCriteria PeriodicalReportingCriteria,noReporting NULL

}

LCS-ReportingQuantity ::= SEQUENCE {methodType LCS-MethodType,positioningMethod PositioningMethod,responseTime LCS-ResponseTime,accuracy LCS-Accuracy OPTIONAL,gps-TimingOfCellWanted BOOLEAN,multipleSets BOOLEAN,environmentCharacterization EnvironmentCharacterization OPTIONAL

}

LCS-ResponseTime ::= ENUMERATED {s1, s2, s4, s8, s16,s32, s64, s128 }

MaxNumberOfReportingCellsType1 ::= ENUMERATED {e1, e2, e3, e4, e5, e6}

MaxNumberOfReportingCellsType2 ::= ENUMERATED {e1, e2, e3, e4, e5, e6, e7, e8, e9, e10, e11, e12}

MaxNumberOfReportingCellsType3 ::= ENUMERATED {viactCellsPlus1,viactCellsPlus2,viactCellsPlus3,viactCellsPlus4,viactCellsPlus5,viactCellsPlus6 }

MaxReportedCellsOnRACH ::= ENUMERATED {noReport,currentCell,currentAnd-1-BestNeighbour,currentAnd-2-BestNeighbour,currentAnd-3-BestNeighbour,currentAnd-4-BestNeighbour,currentAnd-5-BestNeighbour,currentAnd-6-BestNeighbour }

MeasuredResults ::= CHOICE {intraFreqMeasuredResultsList IntraFreqMeasuredResultsList,interFreqMeasuredResultsList InterFreqMeasuredResultsList,interSystemMeasuredResultsList InterSystemMeasuredResultsList,trafficVolumeMeasuredResultsList TrafficVolumeMeasuredResultsList,qualityMeasuredResults QualityMeasuredResults,ue-InternalMeasuredResults UE-InternalMeasuredResults,

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lcs-MeasuredResults LCS-MeasuredResults}

MeasuredResultsList ::= SEQUENCE (SIZE (1..maxAdditionalMeas)) OFMeasuredResults

MeasuredResultsOnRACH ::= SEQUENCE {currentCell SEQUENCE {

modeSpecificInfo CHOICE {fdd SEQUENCE {

measurementQuantity CHOICE {cpich-Ec-N0 CPICH-Ec-N0,cpich-RSCP CPICH-RSCP,pathloss Pathloss

}},tdd SEQUENCE {

timeslotISCP TimeslotISCP-List OPTIONAL,primaryCCPCH-RSCP PrimaryCCPCH-RSCP OPTIONAL

}}

},monitoredCells MonitoredCellRACH-List OPTIONAL

}

MeasurementCommand ::= CHOICE {setup MeasurementType,modify SEQUENCE {

measurementType MeasurementType OPTIONAL},release NULL

}

MeasurementControlSysInfo ::= SEQUENCE {use-of-HCS CHOICE {

hcs-not-used SEQUENCE {cellSelectQualityMeasure CHOICE {

cpich-RSCP SEQUENCE {intraFreqMeasurementSysInfo IntraFreqMeasurementSysInfo-HCS-RSCP

OPTIONAL,interFreqMeasurementSysInfo InterFreqMeasurementSysInfo-HCS-RSCP

OPTIONAL},cpich-Ec-No SEQUENCE {

intraFreqMeasurementSysInfo IntraFreqMeasurementSysInfo-HCS-ECN0OPTIONAL,

interFreqMeasurementSysInfo InterFreqMeasurementSysInfo-HCS-ECN0OPTIONAL

}},interSystemMeasurementSysInfo InterSystemMeasurementSysInfo-HCS

OPTIONAL},hcs-used SEQUENCE {

cellSelectQualityMeasure CHOICE {cpich-RSCP SEQUENCE {

intraFreqMeasurementSysInfo IntraFreqMeasurementSysInfo-RSCPOPTIONAL,

interFreqMeasurementSysInfo InterFreqMeasurementSysInfo-RSCPOPTIONAL

},cpich-Ec-No SEQUENCE {

intraFreqMeasurementSysInfo IntraFreqMeasurementSysInfo-ECN0OPTIONAL,

interFreqMeasurementSysInfo InterFreqMeasurementSysInfo-ECN0OPTIONAL

}},interSystemMeasurementSysInfo InterSystemMeasurementSysInfo OPTIONAL

}},

trafficVolumeMeasSysInfo TrafficVolumeMeasSysInfo OPTIONAL,ue-InternalMeasurementSysInfo UE-InternalMeasurementSysInfo OPTIONAL

}

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MeasurementIdentityNumber ::= INTEGER (1..16)

MeasurementQuantityGSM ::= ENUMERATED {gsm-CarrierRSSI,pathloss }

MeasurementReportingMode ::= SEQUENCE {measurementReportTransferMode TransferMode,periodicalOrEventTrigger PeriodicalOrEventTrigger

}

MeasurementType ::= CHOICE {intraFrequencyMeasurement IntraFrequencyMeasurement,interFrequencyMeasurement InterFrequencyMeasurement,interSystemMeasurement InterSystemMeasurement,lcs-Measurement LCS-Measurement,trafficVolumeMeasurement TrafficVolumeMeasurement,qualityMeasurement QualityMeasurement,ue-InternalMeasurement UE-InternalMeasurement

}

MeasurementValidity ::= SEQUENCE {resume-Release Resume-Release

}

MonitoredCellRACH-List ::= SEQUENCE (SIZE (1..7)) OFMonitoredCellRACH-Result

MonitoredCellRACH-Result ::= SEQUENCE {sfn-SFN-ObsTimeDifference SFN-SFN-ObsTimeDifference OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,measurementQuantity CHOICE {

cpich-Ec-N0 CPICH-Ec-N0,cpich-RSCP CPICH-RSCP,pathloss Pathloss

} OPTIONAL},tdd SEQUENCE {

cellParametersID CellParametersID,primaryCCPCH-RSCP PrimaryCCPCH-RSCP

}}

}

MultipathIndicator ::= ENUMERATED {nm,low,medium,high }

N-CR-T-CRMaxHyst ::= SEQUENCE {n-CR INTEGER (1..16) DEFAULT 8,t-CRMaxHyst T-CRMaxHyst

}

NavigationModelSatInfo ::= SEQUENCE {satID SatID,satelliteStatus SatelliteStatus,navModel NavModel

}

NavigationModelSatInfoList ::= SEQUENCE (SIZE (1..maxSat)) OFNavigationModelSatInfo

NavModel ::= SEQUENCE {codeOnL2 BIT STRING (SIZE (2)),uraIndex BIT STRING (SIZE (4)),satHealth BIT STRING (SIZE (6)),iodc BIT STRING (SIZE (10)),l2Pflag BIT STRING (SIZE (1)),sf1Revd SubFrame1Reserved,t-GD BIT STRING (SIZE (8)),t-oc BIT STRING (SIZE (16)),af2 BIT STRING (SIZE (8)),af1 BIT STRING (SIZE (16)),

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af0 BIT STRING (SIZE (22)),c-rs BIT STRING (SIZE (16)),delta-n BIT STRING (SIZE (16)),m0 BIT STRING (SIZE (32)),c-uc BIT STRING (SIZE (16)),e BIT STRING (SIZE (32)),c-us BIT STRING (SIZE (16)),a-Sqrt BIT STRING (SIZE (32)),t-oe BIT STRING (SIZE (16)),fitInterval BIT STRING (SIZE (1)),aodo BIT STRING (SIZE (5)),c-ic BIT STRING (SIZE (16)),omega0 BIT STRING (SIZE (32)),c-is BIT STRING (SIZE (16)),i0 BIT STRING (SIZE (32)),c-rc BIT STRING (SIZE (16)),omega BIT STRING (SIZE (32)),omegaDot BIT STRING (SIZE (24)),iDot BIT STRING (SIZE (14))

}

Neighbor ::= SEQUENCE {neighborIdentity PrimaryCPICH-Info OPTIONAL,neignborQuantity NeighborQuantity,sfn-SFN-ObsTimeDifference2 SFN-SFN-ObsTimeDifference2

}

NeighborList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNeighbor

-- **TODO**, to be defined fullyNeighborQuantity ::= SEQUENCE {}

NewInterFreqCell ::= SEQUENCE {interFreqCellID InterFreqCellID OPTIONAL,frequencyInfo FrequencyInfo OPTIONAL,cellInfo CellInfo

}

NewInterFreqCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterFreqCell

NewInterFreqCellSI-RSCP ::= SEQUENCE {interFreqCellID InterFreqCellID OPTIONAL,frequencyInfo FrequencyInfo OPTIONAL,cellInfo CellInfoSI-RSCP

}

NewInterFreqCellSI-ECN0 ::= SEQUENCE {interFreqCellID InterFreqCellID OPTIONAL,frequencyInfo FrequencyInfo OPTIONAL,cellInfo CellInfoSI-ECN0

}

NewInterFreqCellSI-HCS-RSCP ::= SEQUENCE {interFreqCellID InterFreqCellID OPTIONAL,frequencyInfo FrequencyInfo OPTIONAL,cellInfo CellInfoSI-HCS-RSCP

}

NewInterFreqCellSI-HCS-ECN0 ::= SEQUENCE {interFreqCellID InterFreqCellID OPTIONAL,frequencyInfo FrequencyInfo OPTIONAL,cellInfo CellInfoSI-HCS-ECN0

}

NewInterFreqCellSI-List-ECN0 ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterFreqCellSI-ECN0

NewInterFreqCellSI-List-HCS-RSCP ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterFreqCellSI-HCS-RSCP

NewInterFreqCellSI-List-HCS-ECN0 ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterFreqCellSI-HCS-ECN0

NewInterFreqCellSI-List-RSCP ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterFreqCellSI-RSCP

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NewInterSystemCell ::= SEQUENCE {technologySpecificInfo CHOICE {

gsm SEQUENCE {q-Offset Q-Offset OPTIONAL,q-RxlevMin Q-RxlevMin,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power,bsic BSIC,bcch-ARFCN BCCH-ARFCN,gsm-OutputPower GSM-OutputPower OPTIONAL

},is-2000 SEQUENCE {

is-2000SpecificMeasInfo IS-2000SpecificMeasInfo},spare NULL

}}

NewInterSystemCell-HCS ::= SEQUENCE {technologySpecificInfo CHOICE {

gsm SEQUENCE {q-Offset Q-Offset OPTIONAL,hcs-NeighbouringCellInformation-RSCP HCS-NeighbouringCellInformation-RSCP

OPTIONAL,q-RxlevMin Q-RxlevMin,maxAllowedUL-TX-Power MaxAllowedUL-TX-Power,bsic BSIC,bcch-ARFCN BCCH-ARFCN,gsm-OutputPower GSM-OutputPower OPTIONAL

},is-2000 SEQUENCE {

is-2000SpecificMeasInfo IS-2000SpecificMeasInfo},spare NULL

}}--???NewInterSystemCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OF

NewInterSystemCell

NewInterSystemCellList-HCS ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewInterSystemCell-HCS

NewIntraFreqCell ::= SEQUENCE {intraFreqCellID IntraFreqCellID OPTIONAL,cellInfo CellInfo

}

NewIntraFreqCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewIntraFreqCell

NewIntraFreqCellSI-RSCP ::= SEQUENCE {intraFreqCellID IntraFreqCellID OPTIONAL,cellInfo CellInfoSI-RSCP

}

NewIntraFreqCellSI-ECN0 ::= SEQUENCE {intraFreqCellID IntraFreqCellID OPTIONAL,cellInfo CellInfoSI-ECN0

}NewIntraFreqCellSI-HCS-RSCP ::= SEQUENCE {

intraFreqCellID IntraFreqCellID OPTIONAL,cellInfo CellInfoSI-HCS-RSCP

}

NewIntraFreqCellSI-HCS-ECN0 ::= SEQUENCE {intraFreqCellID IntraFreqCellID OPTIONAL,cellInfo CellInfoSI-HCS-ECN0

}

NewIntraFreqCellSI-List-RSCP ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewIntraFreqCellSI-RSCP

NewIntraFreqCellSI-List-ECN0 ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewIntraFreqCellSI-ECN0

NewIntraFreqCellSI-List-HCS-RSCP ::= SEQUENCE (SIZE (1..maxCellMeas)) OF

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NewIntraFreqCellSI-HCS-RSCP

NewIntraFreqCellSI-List-HCS-ECN0 ::= SEQUENCE (SIZE (1..maxCellMeas)) OFNewIntraFreqCellSI-HCS-ECN0

NodeB-ClockDrift ::= INTEGER (0..15)

NonUsedFreqParameter ::= SEQUENCE {nonUsedFreqThreshold Threshold,nonUsedFreqW W

}

NonUsedFreqParameterList ::= SEQUENCE (SIZE (1..maxFreq)) OFNonUsedFreqParameter

ObservedTimeDifferenceToGSM ::= INTEGER (0..4095)

OTDOA-SearchWindowSize ::= ENUMERATED {c10, c20, c30, c40, c50,c60, c70, moreThan70 }

OtherRAT-InSysInfo ::= SEQUENCE {rat-Type RAT-Type,k-InterRAT K-InterRAT

}

OtherRAT-InSysInfoList ::= SEQUENCE (SIZE (1..maxOtherRAT)) OFOtherRAT-InSysInfo

Pathloss ::= INTEGER (46..158)

PenaltyTime-RSCP ::= CHOICE {notUsed NULL,pt10 TemporaryOffset,pt20 TemporaryOffset,pt30 TemporaryOffset,pt40 TemporaryOffset,pt50 TemporaryOffset,pt60 TemporaryOffset

}

PenaltyTime-ECN0 ::= CHOICE {notUsed NULL,pt10 TemporaryOffsetList,pt20 TemporaryOffsetList,pt30 TemporaryOffsetList,pt40 TemporaryOffsetList,pt50 TemporaryOffsetList,pt60 TemporaryOffsetList

}

PendingTimeAfterTrigger ::= ENUMERATED {ptat0-25, ptat0-5, ptat1,ptat2, ptat4, ptat8, ptat16 }

PeriodicalOrEventTrigger ::= ENUMERATED {periodical,eventTrigger }

PeriodicalReportingCriteria ::= SEQUENCE {reportingAmount ReportingAmount DEFAULT ra-Infinity,reportingInterval ReportingIntervalLong

}

PeriodicalWithReportingCellStatus ::= SEQUENCE {periodicalReportingCriteria PeriodicalReportingCriteria,reportingCellStatus ReportingCellStatus OPTIONAL

}

PositionEstimate ::= CHOICE {ellipsoidPoint EllipsoidPoint,ellipsoidPointUncertCircle EllipsoidPointUncertCircle,ellipsoidPointUncertEllipse EllipsoidPointUncertEllipse,ellipsoidPointAltitude EllipsoidPointAltitude,ellipsoidPointAltitudeEllipse EllipsoidPointAltitudeEllipse

}

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PositioningMethod ::= ENUMERATED {otdoa,gps,otdoaOrGPS }

PRC ::= INTEGER (-2047..2047)

PrimaryCCPCH-RSCP ::= INTEGER (-115..-25)

Q-HCS ::= INTEGER (0..99)

Q-Offset ::= INTEGER (-50..50)

Q-OffsetS-N ::= INTEGER (-50..50)

Q-QualMin ::= INTEGER (-20..0)

-- Actual value = (IE value * 2) + 1Q-RxlevMin ::= INTEGER (-58..-13)

QualityEventResults ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

QualityMeasuredResults ::= SEQUENCE {blerMeasurementResultsList BLER-MeasurementResultsList OPTIONAL,dl-PhysicalChannelBER DL-PhysicalChannelBER OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {sir SIR OPTIONAL

},tdd SEQUENCE {

sir-MeasurementResults SIR-MeasurementList OPTIONAL}

}}

QualityMeasurement ::= SEQUENCE {qualityReportingQuantity QualityReportingQuantity OPTIONAL,reportCriteria QualityReportCriteria

}

QualityReportCriteria ::= CHOICE {qualityReportingCriteria QualityReportingCriteria,periodicalReportingCriteria PeriodicalReportingCriteria,noReporting NULL

}

QualityReportingCriteria ::= SEQUENCE (SIZE (1..maxTrCH)) OFQualityReportingCriteriaSingle

QualityReportingCriteriaSingle ::= SEQUENCE {transportChannelIdentity TransportChannelIdentity,totalCRC INTEGER (1..512),badCRC INTEGER (1..512),pendingAfterTrigger INTEGER (1..512)

}

QualityReportingQuantity ::= SEQUENCE {dl-TransChBLER BOOLEAN,bler-dl-TransChIdList BLER-TransChIdList OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {sir BOOLEAN

},tdd SEQUENCE {

sir-TFCS-List SIR-TFCS-List OPTIONAL}

}}

QualityType ::= ENUMERATED {std-10, std-50, cpich-Ec-N0 }

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RAT-Type ::= ENUMERATED {gsm, is2000, spare1, spare2,spare3, spare4, spare5, spare6,spare7, spare8, spare9, spare10,spare11, spare12, spare13, spare14 }

ReferenceCellPosition ::= CHOICE {ellipsoidPoint EllipsoidPoint,ellipsoidPointWithAltitude EllipsoidPointAltitude

}

ReferenceCellRelation ::= ENUMERATED {first-12-second-3,first-13-second-2,first-1-second-23 }

-- As defined in 23.032 (2D with 24bits for each coordinate)ReferenceLocationforSIB ::= SEQUENCE {

ellipsoidPoint EllipsoidPoint}

ReferenceQuality ::= ENUMERATED {m0-19, m20-39, m40-79,m80-159, m160-319, m320-639,m640-1319, m1320Plus }

-- Actual value = IE value * 10ReferenceQuality10 ::= INTEGER (1..32)

-- Actual value = IE value * 50ReferenceQuality50 ::= INTEGER (1..32)

ReferenceSFN ::= INTEGER (0..4095)

-- Actual value = IE value * 512ReferenceTimeDifferenceToCell ::= CHOICE {

-- Actual value = IE value * 40accuracy40 INTEGER (0..960),-- Actual value = IE value * 256accuracy256 INTEGER (0..150),-- Actual value = IE value * 2560accuracy2560 INTEGER (0..15)

}

RemovedInterFreqCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFInterFreqCellID

RemovedInterSystemCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFInterSystemCellID

RemovedIntraFreqCellList ::= SEQUENCE (SIZE (1..maxCellMeas)) OFIntraFreqCellID

ReplacementActivationThreshold ::= ENUMERATED {notApplicable, t1, t2,t3, t4, t5, t6, t7 }

ReportDeactivationThreshold ::= ENUMERATED {notApplicable, t1, t2,t3, t4, t5, t6, t7 }

ReportingAmount ::= ENUMERATED {ra1, ra2, ra4, ra8, ra16, ra32,ra64, ra-Infinity }

ReportingCellStatus ::= CHOICE{withinActiveSet MaxNumberOfReportingCellsType1,withinMonitoredSetUsedFreq MaxNumberOfReportingCellsType1,withinMonitoredUsedFreq MaxNumberOfReportingCellsType1,allActiveplusMonitoredSet MaxNumberOfReportingCellsType3,withinVirtualActSet MaxNumberOfReportingCellsType1,withinMonitoredSetNonUsedFreq MaxNumberOfReportingCellsType1,withinMonitoredNonUsedFreq MaxNumberOfReportingCellsType1,allVirtualActSetplusMonitoredSetNonUsedFreq

MaxNumberOfReportingCellsType3,withinActSetOrVirtualActSet MaxNumberOfReportingCellsType2,

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withinMonitoredUsedFreqOrMonitoredNonUsedFreqMaxNumberOfReportingCellsType2

}

ReportingCellStatusOpt ::= SEQUENCE {reportingCellStatus ReportingCellStatus OPTIONAL

}

ReportingInfoForCellDCH ::= SEQUENCE {intraFreqReportingQuantity IntraFreqReportingQuantity,measurementReportingMode MeasurementReportingMode,reportCriteria CellDCH-ReportCriteria

}

ReportingInterval ::= ENUMERATED {noPeriodicalreporting, ri0-25, ri0-5, ri1, ri2, ri4, ri8, ri16 }

ReportingIntervalLong ::= ENUMERATED {ril0, ril0-25, ril0-5, ril1,ril2, ril3, ril4, ril6, ril8,ril12, ril16, ril20, ril24,ril28, ril32, ril64 }

-- Actual value = IE value * 0.5ReportingRange ::= INTEGER (0..29)

Resume-Release ::= CHOICE {resume UE-State,release NULL

}

RL-AdditionInfoList ::= SEQUENCE (SIZE (1..maxRL-1)) OFPrimaryCPICH-Info

RL-InformationLists ::= SEQUENCE {rl-AdditionInfoList RL-AdditionInfoList OPTIONAL,rl-RemovalInfoList RL-RemovalInfoList OPTIONAL

}

RL-RemovalInfoList ::= SEQUENCE (SIZE (1..maxRL)) OFPrimaryCPICH-Info

RLC-BuffersPayload ::= ENUMERATED {pl0, pl4, pl8, pl16, pl32, pl64, pl128,pl256, pl512, pl1024, pl2k, pl4k,pl8k, pl16k, pl32k, pl64k, pl128k,pl256k, pl512k, pl1024k }

RRC ::= INTEGER (-127..127)

SatelliteStatus ::= ENUMERATED {ns-NN-U,es-SN,es-NN-U,es-NN-C }

SatID ::= INTEGER (0..63)

SFN-SFN-ObsTimeDifference ::= CHOICE {type1 SFN-SFN-ObsTimeDifference1,-- Actual value for type2 = IE value * 0.25type2 SFN-SFN-ObsTimeDifference2

}

SFN-SFN-ObsTimeDifference1 ::= INTEGER (0..9830399)

SFN-SFN-ObsTimeDifference2 ::= INTEGER (-5119..5120)

SFN-SFN-OTD-Type ::= ENUMERATED {noReport,type1,type2 }

SIR ::= INTEGER (-10..20)

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SIR-MeasurementList ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFSIR-MeasurementResults

SIR-MeasurementResults ::= SEQUENCE {tfcs-ID TFCS-IdentityPlain,sir-TimeslotList SIR-TimeslotList

}

SIR-TFCS ::= TFCS-IdentityPlain

SIR-TFCS-List ::= SEQUENCE (SIZE (1..maxCCTrCH)) OFSIR-TFCS

SIR-TimeslotList ::= SEQUENCE (SIZE (1..maxTS)) OFSIR

-- Reserved bits in subframe 1 of the GPS navigation messageSubFrame1Reserved ::= SEQUENCE { reserved1 BIT STRING (SIZE (23)),

reserved2 BIT STRING (SIZE (24)),reserved3 BIT STRING (SIZE (24)),reserved4 BIT STRING (SIZE (16))

}

T-CRMax ::= CHOICE {notUsed NULL,t30 N-CR-T-CRMaxHyst,t60 N-CR-T-CRMaxHyst,t120 N-CR-T-CRMaxHyst,t180 N-CR-T-CRMaxHyst,t240 N-CR-T-CRMaxHyst

}

T-CRMaxHyst ::= ENUMERATED {notUsed, t10, t20, t30,t40, t50, t60, t70 }

TemporaryOffset ::= ENUMERATED {to10, to20, to30, to40, to50,to60, to70, infinite }

TemporaryOffsetList ::= SEQUENCE {temporaryOffset1 TemporaryOffset,temporaryOffset2 TemporaryOffset

}

Threshold ::= INTEGER (-115..0)

ThresholdPositionChange ::= ENUMERATED {pc10, pc20, pc30, pc40, pc50,pc100, pc200, pc300, pc500,pc1000, pc2000, pc5000, pc10000,pc20000, pc50000, pc100000 }

ThresholdSFN-GPS-TOW ::= ENUMERATED {ms1, ms2, ms3, ms5, ms10,ms20, ms50, ms100 }

ThresholdSFN-SFN-Change ::= ENUMERATED {c0-25, c0-5, c1, c2, c3, c4, c5,c10, c20, c50, c100, c200, c500,c1000, c2000, c5000 }

ThresholdUsedFrequency ::= INTEGER (-115..165)

-- Actual value = IE value * 20, IE values 14-16 are spare values.TimeInterval ::= INTEGER (1..16)

TimeslotInfo ::= SEQUENCE {timeslotNumber TimeslotNumber,burstType BurstType

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}

TimeslotInfoList ::= SEQUENCE (SIZE (1..maxTS)) OFTimeslotInfo

TimeslotISCP ::= INTEGER (-115..-25)

TimeslotISCP-List ::= SEQUENCE (SIZE (1..maxTS)) OFTimeslotISCP

TimeslotListWithISCP ::= SEQUENCE (SIZE (1..maxTS)) OFTimeslotWithISCP

TimeslotWithISCP ::= SEQUENCE {timeslot TimeslotNumber,timeslotISCP TimeslotISCP

}

TimeToTrigger ::= ENUMERATED {ttt0, ttt10, ttt20, ttt40, ttt60,ttt80, ttt100, ttt120, ttt160,ttt200, ttt240, tt320, ttt640,ttt1280, ttt2560, ttt5000 }

TrafficVolumeEventParam ::= SEQUENCE {eventID TrafficVolumeEventType,reportingThreshold TrafficVolumeThreshold

}

TrafficVolumeEventResults ::= SEQUENCE {ul-transportChannelCausingEvent TransportChannelIdentity,trafficVolumeEventIdentity TrafficVolumeEventType

}

TrafficVolumeEventType ::= ENUMERATED {e4a,e4b }

TrafficVolumeMeasQuantity ::= CHOICE {rlc-BufferPayload NULL,averageRLC-BufferPayload TimeInterval,varianceOfRLC-BufferPayload TimeInterval

}

TrafficVolumeMeasSysInfo ::= SEQUENCE {trafficVolumeMeasurementID MeasurementIdentityNumber DEFAULT 4,trafficVolumeMeasurementObjectList TrafficVolumeMeasurementObjectList OPTIONAL,trafficVolumeMeasQuantity TrafficVolumeMeasQuantity OPTIONAL,trafficVolumeReportingQuantity TrafficVolumeReportingQuantity OPTIONAL,trafficVolumeMeasRepCriteria TrafficVolumeReportingCriteria OPTIONAL,measurementValidity MeasurementValidity OPTIONAL,measurementReportingMode MeasurementReportingMode,reportCriteriaSysInf TrafficVolumeReportCriteriaSysInfo

}

TrafficVolumeMeasuredResults ::= SEQUENCE {rb-Identity RB-Identity,rlc-BuffersPayload RLC-BuffersPayload OPTIONAL,averageRLC-BufferPayload AverageRLC-BufferPayload OPTIONAL,varianceOfRLC-BufferPayload VarianceOfRLC-BufferPayload OPTIONAL

}

TrafficVolumeMeasuredResultsList ::= SEQUENCE (SIZE (1..maxRB)) OFTrafficVolumeMeasuredResults

TrafficVolumeMeasurement ::= SEQUENCE {trafficVolumeMeasurementObjectList TrafficVolumeMeasurementObjectList OPTIONAL,trafficVolumeMeasQuantity TrafficVolumeMeasQuantity OPTIONAL,trafficVolumeReportingQuantity TrafficVolumeReportingQuantity OPTIONAL,measurementValidity MeasurementValidity OPTIONAL,reportCriteria TrafficVolumeReportCriteria

}

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TrafficVolumeMeasurementObjectList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransportChannelIdentity

TrafficVolumeReportCriteria ::= CHOICE {trafficVolumeReportingCriteria TrafficVolumeReportingCriteria,periodicalReportingCriteria PeriodicalReportingCriteria,noReporting NULL

}

TrafficVolumeReportCriteriaSysInfo ::= CHOICE {trafficVolumeReportingCriteria TrafficVolumeReportingCriteria,periodicalReportingCriteria PeriodicalReportingCriteria

}

TrafficVolumeReportingCriteria ::= SEQUENCE {transChCriteriaList TransChCriteriaList OPTIONAL,timeToTrigger TimeToTrigger OPTIONAL,pendingTimeAfterTrigger PendingTimeAfterTrigger OPTIONAL,tx-InterruptionAfterTrigger TX-InterruptionAfterTrigger OPTIONAL,reportingAmount ReportingAmount OPTIONAL

}

TrafficVolumeReportingQuantity ::= SEQUENCE {rlc-RB-BufferPayload BOOLEAN,rlc-RB-BufferPayloadAverage BOOLEAN,rlc-RB-BufferPayloadVariance BOOLEAN

}

TrafficVolumeThreshold ::= ENUMERATED {th8, th16, th32, th64, th128,th256, th512, th1024, th2k, th3k, th4k, th6k, th8k, th12k, th16k, th24k, th32k, th48k, th64k, th96k, th128k, th192k, th256k, th384k, th512k, th768k }

TransChCriteria ::= SEQUENCE {ul-transportChannelID TransportChannelIdentity OPTIONAL,eventSpecificParameters SEQUENCE (SIZE (1..maxMeasParEvent)) OF

TrafficVolumeEventParam OPTIONAL}

TransChCriteriaList ::= SEQUENCE (SIZE (1..maxTrCH)) OFTransChCriteria

TransferMode ::= ENUMERATED {acknowledgedModeRLC,unacknowledgedModeRLC }

TransmittedPowerThreshold ::= INTEGER (-50..33)

TriggeringCondition ::= ENUMERATED {activeSetCellsOnly,monitoredCellsOnly,activeSetAndMonitoredCells }

TX-InterruptionAfterTrigger ::= ENUMERATED {txiat0-25, txiat0-5, txiat1,txiat2, txiat4, txiat8, txiat16 }

UDRE ::= ENUMERATED {lessThan1,between1-and-4,between4-and-8,over8 }

UE-6AB-Event ::= SEQUENCE {timeToTrigger TimeToTrigger,transmittedPowerThreshold TransmittedPowerThreshold

}

UE-6FG-Event ::= SEQUENCE {timeToTrigger TimeToTrigger,ue-RX-TX-TimeDifferenceThreshold UE-RX-TX-TimeDifferenceThreshold

}

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UE-AutonomousUpdateMode ::= CHOICE {on NULL,onWithNoReporting NULL,off RL-InformationLists

}

UE-InternalEventParam ::= CHOICE {event6a UE-6AB-Event,event6b UE-6AB-Event,event6c TimeToTrigger,event6d TimeToTrigger,event6e TimeToTrigger,event6f UE-6FG-Event,event6g UE-6FG-Event

}

UE-InternalEventParamList ::= SEQUENCE (SIZE (1..maxMeasEvent)) OFUE-InternalEventParam

UE-InternalEventResults ::= CHOICE {event6a NULL,event6b NULL,event6c NULL,event6d NULL,event6e NULL,event6f PrimaryCPICH-Info,event6g PrimaryCPICH-Info

}

UE-InternalMeasQuantity ::= SEQUENCE {measurementQuantity UE-MeasurementQuantity,filterCoefficient FilterCoefficient DEFAULT fc1

}

UE-InternalMeasuredResults ::= SEQUENCE {modeSpecificInfo CHOICE {

fdd SEQUENCE {ue-TransmittedPowerFDD UE-TransmittedPower OPTIONAL,ue-RX-TX-ReportEntryList UE-RX-TX-ReportEntryList OPTIONAL

},tdd SEQUENCE {

ue-TransmittedPowerTDD-List UE-TransmittedPowerTDD-List OPTIONAL,appliedTA UL-TimingAdvance OPTIONAL

}}

}

UE-InternalMeasurement ::= SEQUENCE {ue-InternalMeasQuantity UE-InternalMeasQuantity OPTIONAL,ue-InternalReportingQuantity UE-InternalReportingQuantity OPTIONAL,reportCriteria UE-InternalReportCriteria

}

UE-InternalMeasurementSysInfo ::= SEQUENCE {ue-InternalMeasurementID MeasurementIdentityNumber DEFAULT 5,ue-InternalMeasQuantity UE-InternalMeasQuantity

}

UE-InternalReportCriteria ::= CHOICE {ue-InternalReportingCriteria UE-InternalReportingCriteria,periodicalReportingCriteria PeriodicalReportingCriteria,noReporting NULL

}

UE-InternalReportingCriteria ::= SEQUENCE {ue-InternalEventParamList UE-InternalEventParamList OPTIONAL

}

UE-InternalReportingQuantity ::= SEQUENCE {ue-TransmittedPower BOOLEAN,modeSpecificInfo CHOICE {

fdd SEQUENCE {ue-RX-TX-TimeDifferece BOOLEAN

},

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tdd SEQUENCE {appliedTA BOOLEAN

}}

}

-- TABULAR: For TDD only the first two values are used.UE-MeasurementQuantity ::= ENUMERATED {

ue-TransmittedPower,utra-Carrier-RSSI,ue-RX-TX-TimeDifference }

UE-RX-TX-ReportEntry ::= SEQUENCE {primaryCPICH-Info PrimaryCPICH-Info,ue-RX-TX-TimeDifference UE-RX-TX-TimeDifference

}

UE-RX-TX-ReportEntryList ::= SEQUENCE (SIZE (1..maxRL)) OFUE-RX-TX-ReportEntry

UE-RX-TX-TimeDifference ::= INTEGER (876..1172)

UE-RX-TX-TimeDifferenceThreshold ::= INTEGER (769..1280)

UE-State ::= ENUMERATED {cell-DCH, all-But-Cell-DCH, all-States }

UE-TransmittedPower ::= INTEGER (-50..33)

UE-TransmittedPowerTDD-List ::= SEQUENCE (SIZE (1..maxTS)) OFUE-TransmittedPower

UTRA-CarrierRSSI ::= INTEGER (-95..-30)

UTRAN-ReferenceTime ::= SEQUENCE {gps-TOW GPS-TOW-1usec,sfn INTEGER (0..4095)

}

VarianceOfRLC-BufferPayload ::= ENUMERATED {plv0, plv4, plv8, plv16, plv32, plv64, plv128, plv256, plv512, plv1024, plv2k, plv4k, plv8k, plv16k }

-- Actual value = IE value * 0.1W ::= INTEGER (0..20)

END

11.3.8 其他信息元素Other-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

CN-DomainSysInfoList,NAS-SystemInformationGSM-MAP,PLMN-Type

FROM CoreNetwork-IEs

CellAccessRestriction,CellIdentity,CellSelectReselectInfoSIB-3-4,URA-IdentityList

FROM UTRANMobility-IEs

CapabilityUpdateRequirement,CPCH-Parameters,DRAC-SysInfoList,ProtocolErrorCause,UE-ConnTimersAndConstants,

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UE-DCHTimersAndConstants,UE-IdleTimersAndConstants

FROM UserEquipment-IEs

PredefinedConfigIdentity,PredefinedConfigValueTag,PreDefRadioConfiguration

FROM RadioBearer-IEs

AICH-PowerOffset,ConstantValue,CPCH-PersistenceLevelsList,CPCH-SetInfoList,CSICH-PowerOffset,DynamicPersistenceLevelList,IndividualTS-InterferenceList,MidambleConfiguration,PDSCH-SysInfoList,PUSCH-SysInfoList-SFN,PICH-PowerOffset,PRACH-SystemInformationList,PrimaryCCPCH-Info,PrimaryCCPCH-TX-Power,PUSCH-SysInfoList,PUSCH-SysInfoList-SFN,SCCPCH-SystemInformationList,UL-Interference

FROM PhysicalChannel-IEs

FACH-MeasurementOccasionInfo,LCS-Alma-SIB-DataList,LCS-DGPS-SIB-Data,LCS-Ephe-SIB-Data,LCS-Cipher-GPS-Data-Indicator,LCS-OTDOA-AssistanceSIB,MeasurementControlSysInfo

FROM Measurement-IEs

ANSI-41-GlobalServiceRedirectInfo,ANSI-41-PrivateNeighborListInfo,ANSI-41-RAND-Information,ANSI-41-UserZoneID-Information

FROM ANSI-41-IEs

maxInterSysMessages,maxSIB,maxSIB-FACH

FROM Constant-definitions;

BCC ::= INTEGER (0..7)

BCCH-ModificationInfo ::= SEQUENCE {mib-ValueTag MIB-ValueTag,bcch-ModificationTime BCCH-ModificationTime OPTIONAL

}

-- Actual value = IE value * 8BCCH-ModificationTime ::= INTEGER (0..511)

BSIC ::= SEQUENCE {ncc NCC,bcc BCC

}

CBS-DRX-Level1Information ::= SEQUENCE {ctch-AllocationPeriod INTEGER (1..256),cbs-FrameOffset INTEGER (0..255)

}

CDMA2000-Message ::= SEQUENCE {msg-Type BIT STRING (SIZE (8)),payload BIT STRING (SIZE (1..512))

}

CDMA2000-MessageList ::= SEQUENCE (SIZE (1..maxInterSysMessages)) OFCDMA2000-Message

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CellValueTag ::= INTEGER (1..4)

GSM-MessageList ::= SEQUENCE (SIZE (1..maxInterSysMessages)) OFBIT STRING (SIZE (1..512))

InterSystemHO-Failure ::= SEQUENCE {interSystemHO-FailureCause InterSystemHO-FailureCause OPTIONAL,interSystemMessage InterSystemMessage OPTIONAL

}

InterSystemHO-FailureCause ::= CHOICE {configurationUnacceptable NULL,physicalChannelFailure NULL,protocolError ProtocolErrorInformation,unspecified NULL,spare1 NULL,spare2 NULL,spare3 NULL

}

InterSystemMessage ::= CHOICE {gsm SEQUENCE {

gsm-MessageList GSM-MessageList},cdma2000 SEQUENCE {

cdma2000-MessageList CDMA2000-MessageList},spare1 NULL,spare2 NULL,spare3 NULL,spare4 NULL,spare5 NULL,spare6 NULL

}

MasterInformationBlock ::= SEQUENCE {mib-ValueTag MIB-ValueTag,plmn-Type PLMN-Type,-- TABULAR: The PLMN identity and ANSI-41 core network information-- are included in PLMN-Type.sib-ReferenceList SIB-ReferenceList,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {} OPTIONAL

}

MIB-ValueTag ::= INTEGER (1..8)

NCC ::= INTEGER (0..7)

PLMN-ValueTag ::= INTEGER (1..256)

PredefinedConfigIdentityAndValueTag ::= SEQUENCE {predefinedConfigIdentity PredefinedConfigIdentity,predefinedConfigValueTag PredefinedConfigValueTag

}

ProtocolErrorInformation ::= SEQUENCE {diagnosticsType CHOICE {

type1 SEQUENCE {protocolErrorCause ProtocolErrorCause

},spare NULL

}}

SchedulingInformation ::= SEQUENCE {sib-Type SIB-TypeAndTag,scheduling SEQUENCE {

segCount SegCount DEFAULT 1,sib-Pos CHOICE {

-- The element name indicates the repetition period and the value-- (multiplied by two) indicates the position of the first segment.rep4 INTEGER (0..1),rep8 INTEGER (0..3),rep16 INTEGER (0..7),rep32 INTEGER (0..15),

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rep64 INTEGER (0..31),rep128 INTEGER (0..63),rep256 INTEGER (0..127),rep512 INTEGER (0..255),rep1024 INTEGER (0..511),rep2048 INTEGER (0..1023),rep4096 INTEGER (0..2047)

},sib-PosOffsetInfo SibOFF-List OPTIONAL

} OPTIONAL}

SegCount ::= INTEGER (1..16)

SegmentIndex ::= INTEGER (0..15)

-- Actual value = 2 * IE valueSFN-Prime ::= INTEGER (0..2047)

SIB-Data-fixed ::= BIT STRING (SIZE (222))

SIB-Data-variable ::= BIT STRING (SIZE (1..214))

SIB-ReferenceList ::= SEQUENCE (SIZE (1..maxSIB)) OFSchedulingInformation

SIB-ReferenceListFACH ::= SEQUENCE (SIZE (1..maxSIB-FACH)) OF SchedulingInformation

SIB-Type ::= ENUMERATED {masterInformationBlock,systemInformationBlockType1,systemInformationBlockType2,systemInformationBlockType3,systemInformationBlockType4,systemInformationBlockType5,systemInformationBlockType6,systemInformationBlockType7,systemInformationBlockType8,systemInformationBlockType9,systemInformationBlockType10,systemInformationBlockType11,systemInformationBlockType12,systemInformationBlockType13,systemInformationBlockType13-1,systemInformationBlockType13-2,systemInformationBlockType13-3,systemInformationBlockType13-4,systemInformationBlockType14,systemInformationBlockType15,systemInformationBlockType15-1,systemInformationBlockType15-2,systemInformationBlockType15-3,systemInformationBlockType16,systemInformationBlockType17,spare1, spare2, spare3, spare4,spare5, spare6, spare7 }

SIB-TypeAndTag ::= CHOICE {sysInfoType1 PLMN-ValueTag,sysInfoType2 PLMN-ValueTag,sysInfoType3 CellValueTag,sysInfoType4 CellValueTag,sysInfoType5 CellValueTag,sysInfoType6 CellValueTag,sysInfoType7 NULL,sysInfoType8 CellValueTag,sysInfoType9 NULL,sysInfoType10 NULL,sysInfoType11 CellValueTag,sysInfoType12 CellValueTag,sysInfoType13 CellValueTag,sysInfoType13-1 CellValueTag, sysInfoType13-2 CellValueTag,sysInfoType13-3 CellValueTag,sysInfoType13-4 CellValueTag,

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sysInfoType14 NULL,sysInfoType15 CellValueTag,sysInfoType16 PredefinedConfigIdentityAndValueTag,sysInfoType17 NULL

}

SibOFF ::= ENUMERATED {so2, so4, so6, so8, so10,so12, so14, so16, so18,so20, so22, so24, so26,so28, so30, so32 }

SibOFF-List ::= SEQUENCE (SIZE (1..15)) OFSibOFF

SysInfoType1 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Core network IEs

cn-CommonGSM-MAP-NAS-SysInfo NAS-SystemInformationGSM-MAP,cn-DomainSysInfoList CN-DomainSysInfoList,

-- User equipment IEsue-IdleTimersAndConstants UE-IdleTimersAndConstants,ue-DCHTimersAndConstants UE-DCHTimersAndConstants,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType2 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- UTRAN mobility IEs

ura-IdentityList URA-IdentityList,-- User equipment IEs

ue-ConnTimersAndConstants UE-ConnTimersAndConstants,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType3 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- UTRAN mobility IEs

cellIdentity CellIdentity,cellSelectReselectInfo CellSelectReselectInfoSIB-3-4,cellAccessRestriction CellAccessRestriction,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType4 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- UTRAN mobility IEs

cellIdentity CellIdentity,cellSelectReselectInfo CellSelectReselectInfoSIB-3-4,cellAccessRestriction CellAccessRestriction,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType5 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

modeSpecificInfo CHOICE {fdd SEQUENCE {

pich-PowerOffset PICH-PowerOffset,aich-PowerOffset AICH-PowerOffset

},tdd SEQUENCE {

pusch-SysInfoList-SFN PUSCH-SysInfoList-SFN OPTIONAL,pdsch-SysInfoList-SFN PDSCH-SysInfoList-SFN OPTIONAL,

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midambleConfiguration MidambleConfiguration OPTIONAL,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,prach-ConstantValue ConstantValue OPTIONAL,dpch-ConstantValue ConstantValue OPTIONAL,pusch-ConstantValue ConstantValue OPTIONAL

}},primaryCCPCH-Info PrimaryCCPCH-Info OPTIONAL,prach-SystemInformationList PRACH-SystemInformationList,sCCPCH-SystemInformationList SCCPCH-SystemInformationList,cbs-DRX-Level1Information CBS-DRX-Level1Information OPTIONAL,-- Conditional on any of the CTCH indicator IEs in-- sCCPCH-SystemInformationList

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType6 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

modeSpecificInfo CHOICE {fdd SEQUENCE {

pich-PowerOffset PICH-PowerOffset,aich-PowerOffset AICH-PowerOffset,csich-PowerOffset CSICH-PowerOffset OPTIONAL

},tdd SEQUENCE {

pusch-SysInfoList-SFN PUSCH-SysInfoList-SFN OPTIONAL,pdsch-SysInfoList-SFN PDSCH-SysInfoList-SFN OPTIONAL,midambleConfiguration MidambleConfiguration OPTIONAL,primaryCCPCH-TX-Power PrimaryCCPCH-TX-Power OPTIONAL,prach-ConstantValue ConstantValue OPTIONAL,dpch-ConstantValue ConstantValue OPTIONAL,pusch-ConstantValue ConstantValue OPTIONAL

}},primaryCCPCH-Info PrimaryCCPCH-Info OPTIONAL,prach-SystemInformationList PRACH-SystemInformationList,sCCPCH-SystemInformationList SCCPCH-SystemInformationList,cbs-DRX-Level1Information CBS-DRX-Level1Information OPTIONAL,-- Conditional on any of the CTCH indicator IEs in-- sCCPCH-SystemInformationList

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType7 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

modeSpecificInfo CHOICE {fdd SEQUENCE {

ul-Interference UL-Interference},tdd NULL

},prach-Information-SIB5-List DynamicPersistenceLevelList,prach-Information-SIB6-List DynamicPersistenceLevelList OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType8 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- User equipment IEs

cpch-Parameters CPCH-Parameters,-- Physical channel IEs

cpch-SetInfoList CPCH-SetInfoList,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

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SysInfoType9 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

cpch-PersistenceLevelsList CPCH-PersistenceLevelsList,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType10 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- User equipment IEs

drac-SysInfoList DRAC-SysInfoList,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType11 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Measurement IEs

fach-MeasurementOccasionInfo FACH-MeasurementOccasionInfo OPTIONAL,measurementControlSysInfo MeasurementControlSysInfo,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType12 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Measurement IEs

fach-MeasurementOccasionInfo FACH-MeasurementOccasionInfo OPTIONAL,measurementControlSysInfo MeasurementControlSysInfo,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType13 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Core network IEs

cn-DomainSysInfoList CN-DomainSysInfoList,-- User equipment IEs

ue-IdleTimersAndConstants UE-IdleTimersAndConstants OPTIONAL,capabilityUpdateRequirement CapabilityUpdateRequirement OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType13-1 ::= SEQUENCE {-- ANSI-41 IEs

ansi-41-RAND-Information ANSI-41-RAND-Information,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType13-2 ::= SEQUENCE {-- ANSI-41 IEs

ansi-41-UserZoneID-Information ANSI-41-UserZoneID-Information,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType13-3 ::= SEQUENCE {-- ANSI-41 IEs

ansi-41-PrivateNeighborListInfo ANSI-41-PrivateNeighborListInfo,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType13-4 ::= SEQUENCE {-- ANSI-41 IEs

ansi-41-GlobalServiceRedirectInfoANSI-41-GlobalServiceRedirectInfo,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

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}

SysInfoType14 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

individualTS-InterferenceList IndividualTS-InterferenceList,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType15 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Measurement IEs

lcs-GPS-Assistance LCS-Cipher-GPS-Data-Indicator OPTIONAL,lcs-OTDOA-Assistance LCS-OTDOA-AssistanceSIB OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

SysInfoType15-1 ::= SEQUENCE {-- DGPS corrections

lcs-DGPS-SIB-Data LCS-DGPS-SIB-Data}

SysInfoType15-2 ::= SEQUENCE {-- Ephemeris and clock corrections

lcs-Ephe-SIB-Data LCS-Ephe-SIB-Data}

SysInfoType15-3 ::= SEQUENCE {-- Almanac and other data

transmissionTOW INTEGER (0..1048575),satMask BIT STRING (SIZE (1..32)),lsbTOW BIT STRING (SIZE (8)),lcs-Alma-SIB-DataList LCS-Alma-SIB-DataList

}

SysInfoType16 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Radio bearer IEs

preDefinedRadioConfiguration PreDefRadioConfiguration,-- Extension mechanism for non- release99 information

nonCriticalExtensions SEQUENCE {}}

SysInfoType17 ::= SEQUENCE {-- Other IEs

sib-ReferenceList SIB-ReferenceList OPTIONAL,-- Physical channel IEs

pusch-SysInfoList PUSCH-SysInfoList-SFN OPTIONAL,pdsch-SysInfoList PDSCH-SysInfoList-SFN OPTIONAL,

-- Extension mechanism for non- release99 informationnonCriticalExtensions SEQUENCE {}

}

END

11.3.9 ANSI-41信息元素ANSI-41-IEs DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

ANSI-41-GlobalServiceRedirectInfo ::= ANSI-41-NAS-ParameterANSI-41-PrivateNeighborListInfo ::= ANSI-41-NAS-ParameterANSI-41-RAND-Information ::= ANSI-41-NAS-ParameterANSI-41-UserZoneID-Information ::= ANSI-41-NAS-ParameterANSI-41-NAS-Parameter ::= BIT STRING (SIZE (1..2048))

Min-P-REV ::= BIT STRING (SIZE (8))

NAS-SystemInformationANSI-41 ::= ANSI-41-NAS-Parameter

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NID ::= BIT STRING (SIZE (16))

P-REV ::= BIT STRING (SIZE (8))

SID ::= BIT STRING (SIZE (15))

END

11.4 常量定义Constant-definitions DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

hiPDSCHidentities INTEGER ::= 64hiPUSCHidentities INTEGER ::= 64hiRM INTEGER ::= 256maxAC INTEGER ::= 16maxAdditionalMeas INTEGER ::= 4maxASC INTEGER ::= 8maxASCmap INTEGER ::= 7maxASCpersist INTEGER ::= 6maxCCTrCH INTEGER ::= 8maxCellMeas INTEGER ::= 32maxCellMeas-1 INTEGER ::= 31

maxCNdomains INTEGER ::= 4maxCPCHsets INTEGER ::= 16maxDPCH-DLchan INTEGER ::= 8maxDPCHcodesPerTS INTEGER ::= 16

-- **TODO**maxDPDCH-UL INTEGER ::= 6maxDRACclasses INTEGER ::= 8-- **TODO**maxFACH INTEGER ::= 8maxFreq INTEGER ::= 8maxFrequencybands INTEGER ::= 4maxInterSysMessages INTEGER ::= 4maxLoCHperRLC INTEGER ::= 2maxMeasEvent INTEGER ::= 8maxMeasIntervals INTEGER ::= 3maxMeasParEvent INTEGER ::= 2maxNoOfMeas INTEGER ::= 16maxOtherRAT INTEGER ::= 15maxPage1 INTEGER ::= 8maxPCPCH-APsig INTEGER ::= 16maxPCPCH-APsubCh INTEGER ::= 12maxPCPCH-CDsig INTEGER ::= 16maxPCPCH-CDsubCh INTEGER ::= 12maxPCPCH-SF INTEGER ::= 7maxPCPCHs INTEGER ::= 64maxPDCPAlgoType INTEGER ::= 8maxPDSCH INTEGER ::= 8maxPDSCH-TFCIgroups INTEGER ::= 256maxPRACH INTEGER ::= 16maxPredefConfig INTEGER ::= 16maxPUSCH INTEGER ::= 8maxRABsetup INTEGER ::= 16maxRAT INTEGER ::= 16maxRB INTEGER ::= 32maxRBallRABs INTEGER ::= 27maxRBMuxOptions INTEGER ::= 8maxRBperRAB INTEGER ::= 8maxRL INTEGER ::= 8maxRL-1 INTEGER ::= 7maxSat INTEGER ::= 16maxSCCPCH INTEGER ::= 16maxSIB INTEGER ::= 32-- **TODO**maxSIB-FACH INTEGER ::= 8maxSIBperMsg INTEGER ::= 16maxSig INTEGER ::= 16maxSignallingFlow INTEGER ::= 16maxSRBsetup INTEGER ::= 8

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maxSubCh INTEGER ::= 12maxSystemCapability INTEGER ::= 16maxTF INTEGER ::= 32maxTF-CPCH INTEGER ::= 16maxTFC INTEGER ::= 1024maxTFCI-2-Combs INTEGER ::= 512maxTGPS INTEGER ::= 6maxTrCH INTEGER ::= 32maxTrCHpreconf INTEGER ::= 16maxTS INTEGER ::= 14maxTS-1 INTEGER ::= 13 maxURA INTEGER ::= 8

END

11.5 网络结点之间的RRC 信息Internode-definitions DEFINITIONS AUTOMATIC TAGS ::=

BEGIN

IMPORTS

HandoverToUTRANCommand,MeasurementReport,PhysicalChannelReconfiguration,RadioBearerReconfiguration,RadioBearerRelease,RadioBearerSetup,TransportChannelReconfiguration,UECapabilityInformation

FROM PDU-definitions

CN-DomainInformationList,NAS-SystemInformationGSM-MAP

FROM CoreNetwork-IEs

CellIdentity,URA-Identity

FROM UTRANMobility-IEs

C-RNTI,RRC-MessageSequenceNumber,START,STARTList,U-RNTI,UE-RadioAccessCapability

FROM UserEquipment-IEs

PDCP-InfoReconfig,PredefinedConfigValueTag,RAB-InformationSetupList,RB-Identity,RB-MappingInfo,RLC-Info,RLC-SequenceNumber,SRB-InformationSetupList

FROM RadioBearer-IEs

CPCH-SetID,DL-CommonTransChInfo,DL-AddReconfTransChInfoList,DRAC-StaticInformationList,UL-CommonTransChInfo,UL-AddReconfTransChInfoList

FROM TransportChannel-IEs

MeasurementIdentityNumber,MeasurementReportingMode,MeasurementType,AdditionalMeasurementID-List

FROM Measurement-IEs

InterSystemMessageFROM Other-IEs

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maxNoOfMeas,maxPredefConfig,maxRABsetup,maxRB,maxSRBsetup,maxTrCH

FROM Constant-definitions;

-- RRC information transferred between network nodes,-- per group of information transfers having same endpoint-- Alike class definitions for RRC PDUs

-- ***************************************************---- RRC information, to target RNC---- ***************************************************

ToRNC-Message ::= SEQUENCE {message ToRNC-MessageType

}

ToRNC-MessageType ::= CHOICE {handoverPreparationInfo HandoverPreparationInfo,sRNC-RelocationInfo SRNC-RelocationInfo,extension NULL

}

-- ***************************************************---- RRC information, target RNC to source RNC---- ***************************************************

T-RNC-ToSRNC-Container ::= SEQUENCE {message T-RNC-ToSRNC-ContainerType

}

T-RNC-ToSRNC-ContainerType::= CHOICE {radioBearerSetup RadioBearerSetup,radioBearerReconfiguration RadioBearerReconfiguration,radioBearerRelease RadioBearerRelease,transportChannelReconfiguration TransportChannelReconfiguration,physicalChannelReconfiguration PhysicalChannelReconfiguration,extension NULL

}

-- ***************************************************---- RRC information, target RNC to source RAT---- ***************************************************

T-RNC-ToSRNC-RAT-Container ::= SEQUENCE {message T-RNC-ToOtherRAT-ContainerType

}

T-RNC-ToOtherRAT-ContainerType::= CHOICE {handoverToUTRANCommand HandoverToUTRANCommand,extension NULL

}

-- Container definitions, alike PDU definitions-- RRC Container definition, to target RNC

HandoverPreparationInfo::= SEQUENCE {uE-RadioAccessCapability UE-RadioAccessCapability,uE-SecurityInfo STARTList,preConfigStatusInfo PreConfigStatusInfo

}

-- ***************************************************---- SRNC Relocation information---- ***************************************************

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SRNC-RelocationInfo ::= SEQUENCE {-- Non-RRC IEs

stateOfRRC StateOfRRC,stateOfRRC-Procedure StateOfRRC-Procedure,cipheringStatus CipheringStatus,calculationTimeForCiphering CalculationTimeForCiphering OPTIONAL,cipheringInfoPerRB-List CipheringInfoPerRB-List OPTIONAL,integrityProtectionStatus IntegrityProtectionStatus,srb-SpecificIntegrityProtInfo SRB-SpecificIntegrityProtInfoList,implementationSpecificParams ImplementationSpecificParams OPTIONAL,

-- User equipment IEsu-RNTI U-RNTI,c-RNTI C-RNTI OPTIONAL,ue-RadioAccessCapability UE-RadioAccessCapability,

-- Other IEsinterSystemMessage InterSystemMessage OPTIONAL,

-- UTRAN mobility IEsura-Identity URA-Identity OPTIONAL,

-- Core network IEscn-CommonGSM-MAP-NAS-SysInfo NAS-SystemInformationGSM-MAP,cn-DomainInformationList CN-DomainInformationList OPTIONAL,

-- Measurement IEsongoingMeasRepList OngoingMeasRepList OPTIONAL,

-- Radio bearer IEspreConfigStatusInfo PreConfigStatusInfo,srb-InformationList SRB-InformationSetupList,rab-InformationList RAB-InformationSetupList OPTIONAL,

-- Transport channel IEsul-CommonTransChInfo UL-CommonTransChInfo OPTIONAL,ul-TransChInfoList UL-AddReconfTransChInfoList OPTIONAL,modeSpecificInfo CHOICE {

fdd SEQUENCE {cpch-SetID CPCH-SetID OPTIONAL,transChDRAC-Info DRAC-StaticInformationList OPTIONAL

},tdd NULL

},dl-CommonTransChInfo DL-CommonTransChInfo OPTIONAL,dl-TransChInfoList DL-AddReconfTransChInfoList OPTIONAL,

-- Measurement reportmeasurementReport MeasurementReport OPTIONAL

}

-- RRC Container definition, target RNC to source RNC-- Nothing new, only re-using RRC PDUs---- RRC Container definition, target RNC to source system-- Nothing new, re-using RRC PDUs (HandoverToUTRANCommand)

-- IE definitions

CalculationTimeForCiphering ::= SEQUENCE {cell-Id CellIdentity,sfn INTEGER (0..4095)

}

CipheringInfoPerRB ::= SEQUENCE {dl-START START,ul-START START

}

-- TABULAR: Multiplicity value numberOfRadioBearers has been replaced-- with maxRB.CipheringInfoPerRB-List ::= SEQUENCE (SIZE (1..maxRB)) OF

CipheringInfoPerRB

CipheringStatus ::= ENUMERATED {started, notStarted }

ImplementationSpecificParams ::= BIT STRING (SIZE (1..512))

IntegrityProtectionStatus ::= ENUMERATED {started, notStarted }

MeasurementCommandWithType ::= CHOICE {setup MeasurementType,modify NULL,

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release NULL}

OngoingMeasRep ::= SEQUENCE {measurementIdentityNumber MeasurementIdentityNumber,measurementCommandWithType MeasurementCommandWithType,-- TABULAR: The CHOICE Measurement in the tabular description is included-- in the IE above.measurementReportingMode MeasurementReportingMode OPTIONAL,additionalMeasurementID-List AdditionalMeasurementID-List OPTIONAL

}

OngoingMeasRepList ::= SEQUENCE (SIZE (1..maxNoOfMeas)) OFOngoingMeasRep

PreConfigStatusInfo ::= SEQUENCE (SIZE (1..maxPredefConfig)) OFPredefinedConfigValueTag

SRB-SpecificIntegrityProtInfo ::= SEQUENCE {rb-Identity RB-Identity OPTIONAL,ul-RRC-HFN BIT STRING (SIZE (28)),dl-RRC-HFN BIT STRING (SIZE (28)),ul-RRC-SequenceNumber RRC-MessageSequenceNumber,dl-RRC-SequenceNumber RRC-MessageSequenceNumber

}

SRB-SpecificIntegrityProtInfoList ::= SEQUENCE (SIZE (4..maxSRBsetup)) OFSRB-SpecificIntegrityProtInfo

StateOfRRC ::= ENUMERATED {cell-DCH, cell-FACH,cell-PCH, ura-PCH }

StateOfRRC-Procedure ::= ENUMERATED {awaitNoRRC-Message,awaitRRC-ConnectionRe-establishmentComplete,awaitRB-SetupComplete,awaitRB-ReconfigurationComplete,awaitTransportCH-ReconfigurationComplete,awaitPhysicalCH-ReconfigurationComplete,awaitActiveSetUpdateComplete,awaitHandoverComplete,sendCellUpdateConfirm,sendUraUpdateConfirm,sendRrcConnectionReestablishment,otherStates }

END

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12 消息传送语法    RRC PDU 的传送语法是通过使用压缩编码规则(Packed Encoding Rules), unaligned (X.691),和适合的最后填充,从它们的 ASN.1定义中提取出来的。若使用了专门的编码,则在为每个ASN.1模块定义的 ECN模块中说明。如何使用专门的编码在 TR25.921中定义。12.1 编码的RRC消息的结构  RRC PDU是在对等实体之间或通过无线接口交换的比特串,同时也是一个基本生产与一个扩展和填充的顺序串联。  基本生产(Basic production)  基本生产是将 UNALIGNED PER应用于 X.691规定的抽象语法值(ASN.1描述),除了在末尾添加0到7个比特以产生8比特的整倍数。基本生产可以是任何正的比特数,并不必须是8比特的整数倍。  扩展(Extension)  发射器遵从协议的这个版本应将扩展部分设为空,除非在一个 PDU类型有其他的说明。发射器遵从更迟的版本将可能发送非空扩展。  填充(Padding)  发射器遵从协议的这个版本应满足下层的大小限制所需要的最小比特数来填充“基本生产”,除非在一个 PDU类型有其他的说明。填充的比特设为0。  接收器遵从这个版本的不需要区分扩展和填充的部分,并应接受在扩展和填充部分有任何比特串的 RRC PDU,除非在一个 PDU类型有其他的说明。

Figure 62: Padding

  当使用AM或UM模式,RLC要求 RRC PDU的长度为8比特的整数倍。  当使用 Tr模式,RLC既不强调大小的要求,也不执行填充。这意味着 RRC必须考虑到为发送这些消息的传输信道而定义的传输格式集。RRC应选择适合该 RRC PDU的最小传输格式,并为满足所选传输信道指定大小的要求而加上最小的填充比特数。  对系统信息块,PDU的构建涉及两个步骤。第一步是 SIB的构建,此时不应用填充(但应用

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扩展规则)。第二步是 RRC PDU的构建,包含 SIB的分段和串联,并按照上文对 Tr模式的描述进行填充。这个过程在下图用例子的方式来表现。这个例子包含两个 SIB:SIBn和 SIBn+1,其中只有 SIBn包含一个协议扩展。例子中使用的两个 SIB不要求分段,并连接为一个系统信息消息。

Figure 63: Padding for System Information

PCI: Protocol control information at SYSTEM INFORMATION message levelSI: SYSTEM INFORMATION message

12.2 用于RRC的 ECN链路模块RRC-ECN-Link-Module LINK-DEFINITIONS ::=BEGIN

Class-definitions ENCODED BY perUnaligned WITH Class-definitions-ECN-ModulePDU-definitions ENCODED BY perUnaligned WITH PDU-definitions-ECN-ModuleCoreNetwork-IEs ENCODED BY perUnaligned WITH CoreNetwork-IEs-ECN-ModuleUTRANMobility-IEs ENCODED BY perUnaligned WITH UTRANMobility-IEs-ECN-ModuleUserEquipment-IEs ENCODED BY perUnaligned WITH UserEquipment-IEs-ECN-ModuleRadioBearer-IEs ENCODED BY perUnaligned WITH RadioBearer-IEs-ECN-ModuleTransportChannel-IEs ENCODED BY perUnaligned WITH TrasportChannel-IEs-ECN-ModulePhysicalChannel-IEs ENCODED BY perUnaligned WITH PhysicalChannel-IEs-ECN-Module

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Measurement-IEs ENCODED BY perUnaligned WITH Measurement-IEs-ECN-ModuleOther-IEs ENCODED BY perUnaligned WITH Other-IEs-ECN-ModuleANSI-41-IEs ENCODED BY perUnaligned WITH ANSI-41-IEs-ECN-Module

END

12.3 用于RRC的 ECN模块Class-definitions-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

PDU-definitions-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

Corenetwork-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

UTRANMobility-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

UserEquipment-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

RadioBearer-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

TransportChannel-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

PhysicalChannel-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

Measurement-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

Other-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

ANSI-41-IEs-ECN-Module ENCODING-DEFINITIONS ::=BEGINEND

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13 协议定时器,计数器和其它参数13.1 用于UE的定时器

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Timer Start Stop At expiryT300 Transmission of RRC

CONNECTION REQUESTReception of RRC CONNECTION SETUP

Retransmit RRC CONNECTION REQUEST if V300 =< N300, else go to Idle mode

T301 Transmission of RRC CONNECTION REESTABLISHMENT REQUEST

Reception of RRC CONNECTION REESTABLISHMENT

See subclause 8.1.5.8.

T302 Transmission of CELL UPDATE

Reception of CELL UPDATE CONFIRM

Retransmit CELL UPDATE if V302 =< N302, else, go to Idle mode

T303 Transmission of URA UPDATE

Reception of URA UPDATE CONFIRM

Retransmit URA UPDATE if V303 =< N303, else go to Idle mode

T304 Transmission of UE CAPABILITY INFORMATION

Reception of UE CAPABILITY INFORMATION CONFIRM

Retransmit UE CAPABILITY INFORMATION if V304 =< N304, else initiate RRC connection reestablishment

T305 Entering CELL_FACH or CELL_PCH state. Reception of CELL UDPATE CONFIRM.

Entering another state. Transmit CELL UPDATE if T307 is not activated.

T306 Entering URA_PCH state. Reception of URA UDPATE CONFIRM.

Entering another state. Transmit URA UPDATE if T307 is not activated.

T307 When the timer T305 or T306 has expired and the UE detects "out of service area".

When the UE detects "in service area".

Transit to idle mode

T308 Transmission of RRC CONNECTION RELEASE COMPLETE

Not stopped Transmit RRC CONNECTION RELEASE COMPLETE if V308 > 0, else go to idle mode.

T309 Upon reselection of a cell belonging to another radio access system from connected mode

Successful establishment of a connection in the new cell

Resume the connection to UTRAN

T310 Transmission of PUSCH CAPACITY REQUEST

Reception of PHYSICAL SHARED CHANNEL ALLOCATION

Transmit PUSCH CAPACITY REQUEST if V310 =< N310, else procedure stops.

T311 Reception of PHYSICAL SHARED CHANNEL ALLOCATION message with the CHOICE "PUSCH allocation" set to "PUSCH allocation pending".

Reception of PHYSICAL SHARED CHANNEL ALLOCATION message with CHOICE "PUSCH allocation" set to "PUSCH allocation assignment".

UE may initiate a PUSCH capacity request procedure.

T312 When the UE starts to establish dedicated CH

When the UE detects consecutive N312 "in sync" indication from L1.

The criteria for physical channel establishment failure is fulfilled

T313 When the UE detects consecutive N313 "out of sync" indication from L1.

When the UE detects consecutive N315 "in sync" indication from L1.

The criteria for Radio Link failure is fulfilled

T314 When the criteria for radio link failure are fulfilled.The timer is started only if radio bearer(s) which are

When the RRC Connection Re-establishment procedure has been completed.

See subclause 8.1.5.6

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Timer Start Stop At expiryassociated with T314 exist.

T315 When the criteria for radio link failure are fulfilled.The timer is started only if radio bearer(s) which are associated with T315 exist.

When the RRC Connection Re-establishment procedure has been completed.

See subclause 8.1.5.7

13.2 用于UE的计数器Counter Reset Incremented When reaching max value

V300 When initiating the procedure RRC connection establishment

Upon expiry of T300. When V300 > N300, the UE enters idle mode.

V302 When initiating the procedure Cell update

Upon expiry of T302 When V302 > N302 the UE enters idle mode.

V303 When initiating the procedure URA update

Upon expiry of T303 When V302 > N303 the UE enters idle mode.

V304 When sending the first UE CAPABILITY INFORMATION message.

Upon expiry of T304 When V304 > N304 the UE initiates the RRC connection re-establishment procedure

Counter Reset Decremented When reaching zeroV308 When sending the

first RRC CONNECTION RELEASE COMPLETE message in a RRC connection release procedure.

Upon expiry of T308 When V308 > N308 the UE stops re-transmitting the RRC CONNECTION RELEASE COMPLETE message.

Counter Reset Incremented When reaching max valueV310 When sending the

first PUSCH CAPACITY REQUEST message in a PUSCH capacity request procedure

Upon expiry of T310 When V310 > N310 the UE stops re-transmitting the PUSCH CAPACITY REQUEST message.

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13.3 UE常量和参数Constant Usage

N300 Maximum number of retransmissions of the RRC CONNECTION REQUEST message

N301 Maximum number of retransmissions of the RRC CONNECTION REESTABLISHMENT REQUEST message

N302 Maximum number of retransmissions of the CELL UPDATE messageN303 Maximum number of retransmissions of the URA UPDATE messageN304 Maximum number of retransmissions of the UE CAPABILITY INFORMATION

messageN308 Maximum number of retransmissions of the RRC CONNECTION RELEASE

COMPLETE messageN310 Maximum number of retransmission of the PUSCH CAPACITY REQUEST messageN312 Maximum number of successive "in sync" received from L1. N313 Maximum number of successive "out of sync" received from L1.N315 Maximum number of successive "in sync" received from L1 during T313 is activated.

13.4 UE变量13.4.1 CIPHERING_STATUS

  该变量包含了关于UE当前加密状态的信息。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

Status MP Enumerated(Not started, Started)

13.4.2 COMPRESSED_MODE_ERROR

  该变量包含的信息是关于从 UTRAN接收的压缩模式配置是否已引起一个造成运行错误的非法重叠。

Information Element/Group name

Need Multi Type and reference

Semantics description

COMPRESSED_MODE_ERROR

MP Boolean

13.4.3 DEFAULT_TFC_SUBSET

  该变量包含当一个临时 TFC限制释放时要回到的 TFC子集。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

TFC subset MP Transport Format Combination Subset10.3.5.22

13.4.4 DOFF

  该变量包含UE的缺省偏移值。详见 TS 25.402。

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Information Element/Group name

Need Multi Type and reference

Semantics description

Default DPCH Offset Value (DOFF)

OP Default DPCH Offset Value,10.3.6.15

13.4.5 ESTABLISHED_RABS

  该变量用于在UE中存贮关于建立的无线接入承载的信息。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

RAB information OP 1 to <maxRABsetup>

For each RAB established

>RAB info MP RAB info 10.3.4.8

>RB information MP 1 to <maxRBper RAB>

For each RB belonging to the RAB

>>RB identity MP RB identity 10.3.4.16

>>Subflow MP Integer(0..<maxSubflowcount>)

Reference to the RAB subflow implemented by this RB

13.4.6 INTEGRITY_PROTECTION_INFO

  该变量包含UE中有关完整性保护当前状态的信息。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

Status MP Enumerated(Not started, Started)

Signalling radio bearer specific integrity protection information

MP 1 to <maxSRBsetup>

Status information for RB#0-4 in that order

> Uplink RRC HFN MP Bitstring (28)

> Downlink RRC HFN MP Bitstring (28)

> Uplink RRC Message sequence number

MP Integer (0..15)

> Downlink RRC Message sequence number

MP Integer (0..15)

13.4.7 MEASUREMENT_IDENTITY

  该变量存贮了UE中配置的测试。对每个配置的测试,下面的信息应存贮。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

MEASUREMENT CONTROL MP MEASUREMENT CONTROL 10.2.15

Information as contained in this message.

13.4.8 ORDERED_ASU

注:仅用于 FDD

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该变量存贮关于一个命令的,但尚未执行的激活集更新。 Information Element/Group

nameNeed Multi Type and

referenceSemantics description

ACTIVE SET UPDATE MP ACTIVE SET UPDATE 10.2.1

Information as contained in this message.

13.4.9 ORDERED_CONFIG

  该变量存贮的信息关于一个命令的,但尚未执行的无线承载和/或传输信道和或物理信道的建立/释放/重配置。

Information Element/Group name

Need Multi Type and reference

Semantics description

CHOICE message MP Information as contained in one of the following messages

>RADIO BEARER SETUP RADIO BEARER SETUP 10.2.31

>RADIO BEARER RECONFIGURATION

RADIO BEARER RECONFIGURATION 10.2.25

>RADIO BEARER RELEASE RADIO BEARER RELEASE 10.2.28

>TRANSPORT CHANNEL RECONFIGURATION

TRANSPORT CHANNEL RECONFIGURATION 10.2.51

>PHYSICAL CHANNEL RECONFIGURATION

PHYSICAL CHANNEL RECONFIGURATION 10.2.20

13.4.10 PROTOCOL_ERROR_INDICATOR

  该变量指出是否存在一个应向UTRAN报告的协议错误。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

Protocol error indicator MP Protocol error indicator 10.3.3.27

13.4.11 PROTOCOL_ERROR_INFORMATION

  该变量包含向UTRAN报告的一个消息不能完全理解的诊断信息。 Information Element/Group

nameNeed Multi Type and

referenceSemantics description

Protocol error information MP Protocol error information 10.3.8.10

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13.4.12 PROTOCOL_ERROR_REJECT

  该变量指出是否发生一个引起正在运行的过程失败的严重协议错误。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

Protocol error reject MP Boolean TRUE: a severe protocol error has occurred

13.4.13 RB_UPLINK_CIPHERING_ACTIVATION_TIME_INFO

  该变量包含向UTRAN发送的信息,关于在使用 RLC-AM或 RLC-UM的上行链路无线承载中何时一个新的加密配置应被激活。

Information Element/Group name

Need Multi Type and reference

Semantics description

RB uplink ciphering activation time info

MP RB activation time info 10.3.4.13

13.4.14 SELECTED_PLMN

  该变量包含所选的 PLMN的类型和标识。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

PLMN Type MP PLMN Type 10.3.1.12

CHOICE identity type MP>PLMN identity PLMN

identity 10.3.1.11

>SID SID 10.3.9.11

CHOICE identity type Condition under which the given identity type is chosen

PLMN identity PLMN Type is "GSM-MAP"SID PLMN Type is "ANSI-41"

13.4.15 TGPS_IDENTITY

  该变量包含一个压缩模式传输间隙模式序列的配置参数。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

TGPS_IDENTITY MP DPCH compressed mode info10.3.6.32

Information as contained in the IE group "Transmission gap pattern sequence configuration parameters".

13.4.16 UE_CAPABILITY_TRANSFERRED

  该变量存贮的信息是关于向UTRAN传送了哪个UE能力。

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Information Element/Group name

Need Multi Type and reference

Semantics description

UE radio access capability OP UE radio access capability 10.3.3.40

UE system specific capability OP Inter-system message 10.3.8.6

Includes inter-system classmark

13.4.17 VALUE_TAG

  该变量包含的信息是关于值标记的,对于最近接收到的一个给定类型的系统信息块和所有使用值标记的系统信息块。

Information Element/Group name

Need Multi Type and reference

Semantics description

MIB value tag MP MIB value tag 10.3.8.7

Value tag for the master information block

SIB 1 value tag CV-GSM PLMN value tag 10.3.8.8

Value tag for the system information block type 1

SIB 2 value tag MP PLMN value tag 10.3.8.8

Value tag for the system information block type 2

SIB 3 value tag MP Cell value tag 10.3.8.4

Value tag for the system information block type 3

SIB 4 value tag MP Cell value tag 10.3.8.4

Value tag for the system information block type 4

SIB 5 value tag MP Cell value tag 10.3.8.4

Value tag for the system information block type 5

SIB 6 value tag MP Cell value tag 10.3.8.4

Value tag for the system information block type 6

CHOICE mode>FDD>>SIB 8 value tag MP Cell value tag

10.3.8.4Value tag for the system information block type 8

>TDD (no data)SIB 11 value tag MP Cell value tag

10.3.8.4Value tag for the system information block type 11

SIB 12 value tag MP Cell value tag 10.3.8.4

Value tag for the system information block type 12

SIB 13 value tag CV-ANSI Cell value tag 10.3.8.4

Value tag for the system information block type 13

SIB 13.1 value tag CV-ANSI Cell value tag 10.3.8.4

Value tag for the system information block type 13.1

SIB 13.2 value tag CV-ANSI Cell value tag 10.3.8.4

Value tag for the system information block type 13.2

SIB 13.3 value tag CV-ANSI Cell value tag 10.3.8.4

Value tag for the system information block type 13.3

SIB 13.4 value tag CV-ANSI Cell value tag 10.3.8.4

Value tag for the system information block type 13.4

CHOICE mode> TDD>>SIB 14 value tag MP Cell value tag

10.3.8.4Value tag for the system information block type 14

> FDD (no data)SIB 15 value tag MP Cell value tag

10.3.8.4Value tag for the system information block type 15

SIB 16 value tag MP PLMN value tag 10.3.8.8

Value tag for the system information block type 16

Condition ExplanationGSM This information is only stored when the PLMN Type

in the variable SELECTED_PLMN is "GSM-MAP".ANSI This information is only stored when the PLMN Type

in the variable SELECTED_PLMN is "ANSI-41".

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14 特定功能14.1 频率内测量

14.1.1 频率内测量的量 下行链路 Ec/I0(chip能量/总的接收的信道功率密度) 下行链路路径损耗 下行链路解扩后的接收信号码功率(RSCP) 在时隙上的 ISCP

14.1.2 FDD的频率内报告事件在MEASUREMENT CONTROL消息的测量报告准则域中 UTRAN通知 UE哪些事件将触发一

个测量报告。下面列出的频率内报告事件的例子在频率内切换评估中有用。应当注意的的是通常UE不需要报告所有事件。UTRAN将下列事件作为一个工具箱,从中选择所需的事件实现切换评估功能或其他无线网络功能。例中的事件都根据上述测量量进行测量。测量对象是监视的主公共导频信道(CPICH),报

告事件在图中用垂直箭头标识。注:下面的事件编号为 1A,1B,1C……, 所有的频率内测量报告事件标为 1X,频率间报告事件

标为 2X,其它测量类型依次类推。14.1.2.1报告事件 1A:一个基本 CPICH进入报告范围当UTRAN在一个测量控制消息中要求事件 1A时,UE应在一个基本 CPICH进入报告范围时

发送一个测量报告。公式如下:对路径损耗:

对其他测量量:

MNew 是进入报告范围的小区的测量结果。Mi 是在激活集内的小区的测量结果。NA 是在当前激活集的小区数目。MBest 是在激活集中最强小区的测量结果。

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W 是从UTRAN发送到UE的参数。R 是报告范围。

H1a 是事件 1A的回差参数。在事件 1A的小区中加入窗(addition window)是用报告范围参数 R和可选的回差参数 H1a 来配置的。其中 R对许多报告事件是公共的,而H1a 可用来区分加入窗(addition window)和与其他

测量事件相关的报告窗。事件 1A的发生视报告去活门限参数(report deactivation threshold)而定。该参数指出了对于

发送事件 1A 触发的测量报告在激活集中允许的小区的最大数目。事件 1A可用一个加入定时器(addition timer)进行加强。加入定时器用触发时间(time-to-

trigger)参数来配置。若使用该定时器,在 UE发送测量报告之前,小区在报告范围之内必须持续给定的时间段。事件 1A可用于触发一个测量报告,包含UE所检测到的未列出的小区。

14.1.2.2报告事件 1B:一个基本 CPICH 离开报告范围当 UTRAN在测量控制消息中要求事件 1B,UE在一个基本 CPICH 离开报告范围时应发送一

个测量报告。公式如下:对路径损耗:

对其他测量量:

MOld 是离开测量范围的小区的测量结果。Mi 是激活集小区的测量结果。NA 是当前激活集内的小区数目。MBest 是激活集中最强小区的测量结果。W 是从UTRAN发送到UE的一个参数。R 是报告范围。H1b是事件 1B的回差参数。

事件 1B中小区的撤消窗(drop window)是用报告范围参数 R和可选的回差参数 H1b 来配置的。其中 R对许多报告事件是公共的,而 H1b 可用来区分撤消窗(drop window)和与其他测量事件相关的报告窗。 事件 1B可用一撤消定定时器(drop timer)来增强。该定时器用一个触发时间(time-to-trigger)参数来配置。若使用该定时器,在 UE在发送测量报告之前,被削弱的小区在低于报告范围必须持续给定的时间段。

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14.1.2.3报告事件 1C:一个非激活的基本 CPICH 优于一个激活的基本 CPICH

图 52:一个不在激活集中的基本 CPICH 优于一个处于激活集中的基本 CPICH

在上例中,假设属于基本 CPICH1,2和 3的小区应在激活集中,但发送基本 CPICH4的小区不在激活集中。 如果不在激活集中的基本 CPICH变得优于一个在激活集中的基本 CPICH,UTRAN要求事件1C,这一事件将触发一个由UE发送的报告。 这一事件可能用来替换激活集中的小区。当激活集中小区数大于或等于一个替换激活门限参数( replacement activation threshold),事件将被激活。该参数是由 UTRAN在 MEASUREMENT CONTROL消息中发送给 UE的。它指出了对发送的事件 1C 触发的测量报告所需要的在激活集中小区的最小数目。14.1.2.4报告事件 1D:最佳小区的改变

图 53:一个基本 CPICH 优于先前的最佳基本 CPICH

如果任何报告范围内的基本 CPICH变得优于先前的最佳基本 CPICH,并且 UTRAN要求事件1D,该事件将触发一个由UE发送的报告。相应报告中(至少)包含了新的最佳基本 CPICH。

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14.1.2.5报告事件 1E:一个基本 CPICH 优于一个绝对门限

图 54:当一个基本 CPICH 优于一个绝对门限时的事件触发报告若UTRAN在测量控制消息中要求该事件,当一个基本 CPICH的测量质量优于一个绝对门限

时,UE应发送一个报告。相应的报告(至少)包含涉及的基本 CPICH。事件 1E可用于触发一个测量报告,包含UE检测到的未列出的小区。

14.1.2.6报告事件 1F:一个基本 CPICH 劣于一个绝对门限

图 55:当一个基本 CPICH 劣于一个绝对门限时的事件触发报告若 UTRAN在测量控制消息中要求该事件,当一个基本 CPICH的测量质量劣于一个绝对门限

时,UE应发送一个报告。相应的报告应(至少)包含涉及的基本 CPICH。

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14.1.3 TDD的频率内报告事件

14.1.3.1 报告事件 1G:最佳小区的改变

图 56:一个基本 CPICH 优于先前的最佳基本 CPICH

若任何基本 CPICH变得优于先前的最佳基本 CPICH,并且 UTRAN要求事件 1G,该事件应触发一个从UE发送的报告。相应的报告应(至少)包含新的最佳基本 CPICH。14.1.3.2 报告事件 1H:时隙 ISCP低于一个特定门限(TDD)

图 57:一个时隙的 ISCP 值低于一个绝对门限当 UTRAN在一个测量控制消息中要求该事件时,UE应在时隙 ISCP值低于一个绝对门限时

发出一个报告。

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14.1.3.3 报告事件 1I:时隙 ISCP高于一个特定门限(TDD)

图 58:一个时隙的 ISCP 值高于一个绝对门限当 UTRAN在一个测量控制消息中要求该事件时,UE应在时隙 ISCP值超过一个绝对门限时

发出一个报告。

14.1.4事件触发的周期性频率内测量报告

14.1.4.1小区增加失败(仅适用于 FDD)

图 59:事件 1A 触发的周期性报告当一个小区进入报告范围并触发事件 1A,UE应向UTRAN发送MEASUREMENT REPORT,

一般将导致激活集的更新。但在一些情况下, UTRAN可能不能增加一个强小区到激活集,典型情况的例如由于容量不足。若报告的小区没有被增加到激活集中,UE应在首次报告后进入周期性测量报告,继续报告。

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在周期性报告期间,UE应以预定的时间间隔向 UTRAN发送MEASUREMENT REPORT消息。报告应包括当前激活集中小区的报告信息和报告范围内的被监视小区的报告信息。 当报告范围内不再有被监视小区或 UTRAN将小区加入激活集中使激活集达到最大小区数目(由参数 reporting deactivation threshold定义),该参数是触发事件 1A时所需考虑的,事件触发的周期性测量报告将终止。

报告周期由UTRAN指定。如果为零,事件触发的周期性测量报告将不应用。注:该图应被更改,以反映在 CPICH上做的测量,而不是在 PCCPCH上。

14.1.4.2小区替换失败(仅适用于 FDD)

图 60:事件 1C 触发的周期性报告当一个小区进入替换范围并触发事件 1C,UE应向 UTRAN发送MEASUREMENT REPORT

消息,一般将导致最弱激活小区的替换。若 UTRAN由于某种原因(如容量不够)而不能替换小区时,接收随后的报告同样是有益的。若 UE发送测量报告后,UTRAN不能更新激活小区,UE应进入周期性测量报告。在周期性

报告期间,UE应以预定的时间间隔向 UTRAN发送MEASUREMENT REPORT消息。报告应包括当前激活集中小区的报告信息和替换范围内的被监视小区的报告信息。 当替换范围内不再有被监视小区或 UTRAN已将小区从激活集中去除,并使得激活集中不再有超过触发事件 1C的最小小区数目(由参数 replacement activation threshold定义)时,事件触发的周期性测量报告将终止。

报告周期由UTRAN指定。如果为零,事件触发的周期性测量报告将不应用。注:该图应被更改,以反映在 CPICH上做的测量,而不是在 PCCPCH上。

14.1.5 改变频率内测量报告行为的可用机制

14.1.5.1回差(Hysteresis) 为限制事件触发报告的数量,将一个回差参数与上述报告事件相联。回差值在MEASUREMENT CONTROL消息的报告准则字段给出。 下图的例子中,回差确保事件 1D(FDD)或 1G(TDD)(基本 CPICH(FDD)/CCPCH(TDD

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)2成为最佳小区)直到其差别等于回差值才被报告。在例中,由于基本 CPICH(FDD) /CCPCH( TDD) 1 并未足够好于基本 CPICH( FDD) /CCPCH( TDD) 2,后来基本CPICH(FDD)/CCPCH(TDD)1成为最佳,也不被报告,

图 61:回差限制测量报告的数量

14.1.5.2 触发时间(Time-to-trigger)为限制测量信令负荷,将触发时间参数与每个报告事件相联。触发时间的值在

MEASUREMENT CONTROL消息的报告准则字段给出。触发时间的作用是当事件的条件存在一定的触发时间之后才触发报告。在下面的 FDD的例子

中,触发时间的使用意味着事件(基本 CPICH 3进入报告范围)处在报告范围内的时间达到触发时间参数给定的时间以后才被报告。

图 62:触发时间限制测量报告的数量在下图 TDD的例子中,触发时间的使用意味着事件(时隙 ISCP在某一门限上)处在门限值

以上的时间达到触发时间参数给出的时间以后才被报告。

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图 63:触发时间限制测量报告的数量注意触发时间可与回差组合使用,例如在评估触发时间定时器是否开始计时之前,回差值被

加到测量量中。14.1.5.3 小区个体偏移对每个被监视的小区,都用带内信令分配一个偏移。偏移可正可负。在 UE 评估是否一个事

件已经发生之前,应将偏移加入到测量量中。UE从MEASUREMENT CONTROL消息的测量对象字段中得到基本 CPICH(FDD)/CCPCH(TDD)的小区个体偏移。 在下图 FDD的例子中,偏移加入到基本 CPICH 3中,点线将用于评估是否有事件发生。因此这意味着当基本 CPICH加上相应的偏移后(即点线)离开或进入报告范围时,以及当变得比基本CPICH 1 好时(若 UTRAN要求了这些事件),将触发从 UE到UTRAN的测量报告。偏移机制为网络提供了一个有效的工具以改变对一个单独基本 CPICH的报告。 通过应用一个正的偏移,见下图,UE发送测量报告就如同基本 CPICH比实际上要好 x dB。这是非常有用的,例如当运营者知道某一特定小区是需要特别仔细监视的,尽管在某时刻其并不是太好。在下例中,运营者根据经验知道在这一区域基本 CPICH 3将很快转好(例如因为街道角落),因此它应被加强报告。依靠所实施的切换评估算法,将导致有基本 CPICH 3的小区更早包括到激活集中,相对于没有正偏移的情况。

图 64:UE 在事件评估前将一个正偏移加入到基本 CPICH 3 中

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对 TDD 的例子,如下图,一个偏移加到基本 CCPCH 2,点线被用来评估是否基本 CCPCH 2 变得好于基本 CCPCH 1(由UTRAN 命令)。

图 65: 一个正偏移加入到基本 CPICH 2 中相应地, 运营者可对基本 CCPCH 使用一个负的偏移。此时基本 CCPCH 的报告被限制,相应

的小区可能(至少是临时)从激活集中去除或者是作为切换的目标小区。小区个体偏移可视为移动小区边界的工具。需要注意的是必须先偏移然后再触发事件。即为

了补偿应用于网络并且用于实际切换估计的偏移,UE应在加上偏移之后评估是否需要发送一个测量报告。14.1.5.4 禁止一个基本 CPICH 影响报告范围(仅适用于 FDD)

图 66:禁止基本 CPICH 3 影响报告范围 报告范围影响事件 1A和 1B的报告。报告范围为激活集中全部基本 CPICH的一个功能(见14.1.2.1和 14.1.2.2)。若参数W为 0,报告范围的定义与最佳基本 CPICH相关。但在某些情况下,禁止一个特定的基本 CPICH 影响报告范围是有好处的。如上例,网络请求 UE不让基本 CPICH 3影响报告范围。该机制是非常有效的,例如运营者根据经验知道基本 CPICH 3在某一特定区域很不稳定,不应因此影响其他基本 CPICH的报告。

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14.1.6 报告量在事件触发的测量报告中,与事件相关的必要信息应报告。例如,对于事件“一个基本

CPICH(FDD) /CCPCH (TDD) 进 入 报 告 范 围 ” , 相 应 的 报 告 应 标 识 进 入 范 围 的 基本 CPICH(FDD)/CCPCH(TDD)。

但除了必要信息外,UTRAN应能有选择地在报告中要求额外的测量信息以支持 UTRAN中的无线网络功能。不仅如此,还应允许 UTRAN在必要情况下将 UE作为一个通用工具对无线网络进行优化。

下列测量量可附加在测量报告中:注:下面所列的测量量是通用的,也可应用于除了频率内测量类型外的其它测量类型。所列

并不完全。 下行链路传输信道块错误率 下行链路传输信道比特错误率 下行链路基本 CPICH(FDD)/CCPCH(TDD)上 Ec/I0(如用于在新的无线链路上的初始下行链路功率设置) 从目标小区接收的基本 CPICH(FDD)/CCPCH(TDD)帧定时和最早接收到的现有的 DPCH

路径的时间差[注:此测量在 25.211中标识(在第 7节中用 Tm表示)] UE发射功率 UE位置(FFS) 下行链路 RAKE合并后业务信道上的 SIR(RSCP/ISCP)(FFS)

14.2.频率间测量 事件 2a,2b,2c,2d及 2e中使用的频率质量估计由下式定义:

公式中的变量定义如下:Qfrequency j 是频率为 j的激活集的估计质量Mfrequency j 是用其他单位表示的频率为 j的激活集的估计质量Mi j 为频率 j的激活集中小区 i的测量结果NA j为频率 j的激活集内小区的数量MBest j为频率 j的激活集中最强的小区的测量结果Wj是从UTRAN发送给UE 的用于频率 j的参数H 是回差参数

14.2.1 频率间报告事件 在MEASUREMENT CONTROL消息的测量报告准则字段,UTRAN通知 UE哪些事件将触发UE发送一个MEASUREMENT REPORT消息。下面给出的频率间报告事件事例有助于频率间切换的评估。应注意通常 UE不需要报告所有的这些事件。UTRAN将下列事件作为一个工具箱,并从中选择所需的报告事件实现切换评估功能或其他无线网络功能。 例中的事件都是根据 14.x.x节给出的测量量之一进行测量的。测量对象是被监视的主公共导频

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信道(CPICH)(FDD)和被监视的主公共控制信道(PCCPCH)(TDD)。"non-used frequency" 是要求UE进行测量但未被激活集使用的频率。"used frequency" 是要求UE进行测量且通常正用于连接的频率。14.2.1.1 事件 2a:最佳频率的更新 若任何未使用频率(non-used frequency)的质量估计优于当前使用频率(used frequency)的质量估计,且UTRAN要求事件 2a,那么当回差及触发时间条件满足时,该事件将触发UE发送报告。相应的报告中(至少)包含触发该报告的未使用频率最佳的基本 CPICH(FDD)或基本CCPCH(TDD)。14.2.1.2 事件 2b:当前使用频率的估计质量低于某一门限并且一个未使用频率的估计质量大于某一门限若 UTRAN在MEASUREMENT CONTROL消息中要求事件 2b,当当前使用频率的估计质量

低于信息元素 "Threshold used frequency"中的值并且一个未使用频率的估计质量大于信息元素"Threshold non-used frequency"中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中至少包含触发该报告的未使用频率的最佳的基本 CPICH( FDD)或基本CCPCH(TDD)。14.2.1.3 事件 2c:一个未使用频率的估计质量大于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 2c,且当一个未使用频率的估计质量大于信息元素"Threshold non-used frequency" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中至少包含未使用频率的最佳的基本 CPICH( FDD)或基本CCPCH(TDD)。14.2.1.4 事件 2d:当前使用频率的估计质量低于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 2d,且当当前使用频率的评估质量低于信息元素"Threshold used frequency"中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中至少包含使用频率的最佳的基本 CPICH(FDD)或基本 CCPCH(TDD)。14.2.1.5 事件 2e:一个未使用频率的估计质量低于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 2e,且当一个未使用频率的评估质量低于信息元素"Threshold non-used frequency" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中至少包含未使用频率的最佳的基本 CPICH( FDD)或基本CCPCH(TDD)。

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14.2.1.6 事件 2f:当前使用频率的估计质量高于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 2f,且当当前使用频率的评估质量高于信息元素"Threshold used frequency" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中至少包含使用频率的最佳的基本 CPICH(FDD)或基本 CCPCH(TDD)。

14.3.系统间测量(inter-system measurement) UTRAN事件 3a中激活集估计质量由下式定义:

公式中的变量定义如下:QUTRAN 为当前UTRAN使用频率下的激活集的估计质量MUTRAN 为用其他单位表示的当前UTRAN使用频率下的激活集的估计质量Mi 为激活集中小区 i的测量质量NA 为激活集中小区数目MBest 为激活集中最强小区的测量结果W 是从UTRAN传给UE的参数

14.3.1 系统间报告事件 UTRAN在MEASUREMENT CONTROL消息的测量报告准则字段通知 UE哪些事件将触发 UE发送MEASUREMENT REPORT消息。下面给出的系统间报告事件事例有助于系统间切换的评估。应注意通常 UE不需要报告所有的这些事件。UTRAN将下列事件作为一个工具箱从中选择所需的事件实现切换评估功能或其他无线网络功能。 例中的事件都是根据 14.x.x节给出的测量量之一进行测量的。测量对象是 UTRAN系统被监视的主公共导频信道(CPICH)(FDD)和被监视的主公共控制信道(PCCPCH)(TDD),以及其它系统的特定对象。"used UTRAN frequency" 是要求UE进行测量且当前连接UTRAN所使用的频率。"other system" 如GSM。14.3.1.1 事件 3a:当前使用的 UTRAN频率的估计质量低于某一门限并且其他系统的估计质量高于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 3a,且当当前使用频率的估计质量低于信息元素"Threshold own system" 中的值,同时回差和触发时间条件满足,且一个其他系统的估计质量高于信息元素"Threshold other system" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中包含其他系统特定信息和使用频率的最佳的基本 CPICH(FDD)或基本CCPCH(TDD)。

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14.3.1.2 事件 3b:其他系统的估计质量低于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 3b,且当其他系统的评估质量低于信息元素"Threshold other system" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中包含其他系统特定信息和未使用频率的最佳的基本 CPICH( FDD)或基本CCPCH(TDD)。14.3.1.3 事件 3c:其他系统的估计质量高于某一门限 当 UTRAN在MEASUREMENT CONTROL消息中要求事件 3c,且当其他系统的估计质量高于信息元素"Threshold other system" 中的值,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中包含其他系统特定信息和未使用频率的最佳的基本 CPICH( FDD)或基本CCPCH(TDD)。14.3.1.4 事件 3d:在其他系统内最佳小区更换 若其他系统内小区的任何质量估计高于其他系统内当前最佳小区的质量估计,且 UTRAN要求事件 3d,同时回差及触发时间条件满足时,UE将发送报告。相应的报告中应(至少)包含其他系统的最佳小区的信息。

14.4.业务量测量(traffic volume measurement)

14.4.1 业务量测量量UE的业务量测量量只有一个,即用字节数表示的 RLC 缓冲负荷(RLC buffer payload)。为

支持大的可变比特率及 RLC 缓冲容量,使用一个非线性量化尺度(scale)(注:细节有待研究)。期望的业务包括新的和重传的 RLC负荷单元,因此这些在负荷测量中都应包括。应当注意的是业务量测量只用于确认和非确认模式。

根据在测量控制消息中表明的信息,UE应支持一个特定的 RB,复用到相同传输信道的 RB,以及总的UE 缓冲负荷(和使用 RACH的UE的一个传输信道相同)的测量。

14.4.2 业务量报告事件 业务量以两种方式报告:周期性和事件触发。对周期性报告,UE仅测量在测量控制消息中指出的传输信道的字节数(即复用到那个传输信道的 RB的 RLC 缓冲区),并以一定的时间间隔报告业务量。时间触发则是在达到某一门限时执行。 测量控制消息指出了报告中应包含的报告量。例如可能是当发送负荷到达网络时,将包含哪些RB或 RLC 缓冲区。

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14.4.2.1报告事件 4A:RLC 缓冲负荷超过一绝对门限

图 67:当 RLC 缓冲负荷超过一绝对门限时事件触发报告若被监视的负荷超过一绝对门限,该事件将触发一个报告。相应的报告至少包含了触发该报

告的的是哪个传输信道。14.4.2.1报告事件 4B:RLC 缓冲负荷小于一绝对门限

图 68: 当 RLC 缓冲负荷小于一绝对门限时事件触发报告若被监视的负荷小于一绝对门限,该事件将触发一个报告。相应的报告至少包含触发该报告

的是哪个传输信道。14.4.3 业务量报告机制 业务量测量的触发可与触发时间( time-to-trigger)和触发后延迟时间(pending time after trigger)相关联。触发时间用于获得一个时间域回差,例如在触发时间期间条件必须满足才发送报告。触发后延迟时间用于限制当一个业务量测量报告发送后的连续报告。细节如下。

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14.4.3.1 触发后延迟时间(pending time after trigger) 当一个测量报告被触发时,该定时器在 UE中启动。UE在这一时间段内将不能发送任何有相同测量 ID的新的测量报告,即使触发条件被再次满足。UE将等待直至定时器挂起。若定时器超时,负荷仍高于门限,UE将发送一个新的测量报告。否则它将等待一个新的触发。

图 69 触发后等待时间限制连续测量报告的数量上图表示了通过增加触发后等待时间,第二个触发事件不产生一个测量报告。

14.4.4 用户数据传输的中断 UTRAN会指示处于 CELL_FACH状态下的UE在触发一个测量报告后中断 RACH上用户数据的传输。在恢复传输用户数据之前:

UE应收到 UTRAN发送的关于分配一个专用物理信道的消息,并进入 CELL_DCH状态,或

UE应收到一个单独分配的测量控制消息,指示用户数据传输的中断不适用。信令承载上信令消息的传输不能被中断。

14.5.UE内部测量

14.5.1. UE内部测量量 对UE内部测量来说,存在以下测量量:

UE发送(Tx)功率,对 TDD基于一个时隙测量 UE接收信号强度功率(received signal strength power, RSSI) UE Rx-Tx时间差

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14.5.2. UE内部测量报告事件在测量控制消息的测量报告准则字段中,UTRAN通知UE哪些事件会触发一个测量报告。触

发报告的 UE内部测量报告事件如下所列。在下文的图中,报告事件用垂直的箭头标出。所有事件都能与触发时间相结合。在这种情况下,测量报告仅在当事件条件在触发时间参数给定的时间段内满足时才发送。注:报告时间编号为 6A、6B、6C……其中“6”代表事件属于UE内部测量类型。

14.5.2.1报告事件 6A:UE发送功率超过绝对门限 当 UTRAN在测量控制消息中要求该事件,且 UE的发送功率(对 TDD在一个时隙内)超过一个预定门限时,UE发送一个测量报告。相应的报告中指示了超过的门限。14.5.2.2报告事件 6B:UE发送功率低于绝对门限 当 UTRAN在测量控制消息中要求该事件,且 UE的发送功率(对 TDD在一个时隙内)低于一个预定门限时,UE发送一个测量报告。相应的报告中指示了UE发送功率低于的门限。

图 70:UE 发送功率超过或低于绝对门限时事件触发测量报告

14.5.2.3报告事件 6C:UE发送功率到达最小值 当UTRAN在测量控制消息中要求该事件,且 UE的发送功率到达其最小值(对 TDD为在一个时隙上的最小值)时,UE发送一个测量报告。

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图 71:当 UE 发送功率到达最小值时事件触发测量报告

14.5.2.4 报告事件 6D:UE发送功率达到最大值(The UE Tx power reaches its

maximum value) 当UTRAN在测量控制消息中要求该事件,且 UE的发送功率达到其最大值(对 TDD为在一个时隙上的最大值)时,UE发送一个测量报告。

图 72:当 UE 发送功率到达最大值时事件触发测量报告

14.5.2.5报告事件 6E:UE RSSI到达UE的动态接收范围 当 UTRAN在测量控制消息中要求该事件,且 UE RSSI到达 UE的动态接收范围时发送一个测量报告。14.5.2.6报告事件 6F:包含在激活集内 RL的UE Rx-Tx时间差超过一个绝对门限

当 UTRAN在测量控制消息中要求该事件,且 UE Rx-Tx时间差大于由信息元素“UE Rx-Tx time diference threshold”定义的门限时,UE发送一个测量报告消息。

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14.5.2.7报告事件 6G:包含在激活集内 RL的 UE Rx-Tx时间差低于一个绝对门限

当 UTRAN在测量控制消息中要求该事件,且 UE Rx-Tx时间差小于由信息元素“UE Rx-Tx time diference threshold”定义的门限时,UE发送一个测量报告消息。

14.6.上行链路DCH的动态资源分配控制(仅适用于 FDD)网络使用该过程动态地控制上行链路DCH的资源分配。当分配了一个有DRAC 静态信息的上行链路 DCH时,应在 UE中激活该过程。这些上行链路

DCH能通过 RB建立过程、RB重配置过程、RB释放过程或传输信道重配置过程来建立,并通过设置DRAC 静态信息元素指示DCH 受 DRAC过程控制。

UE应周期性监听激活集中每个小区的 SIB10。当建立一个 DCH及在激活集中加入一个小区时,向 UE提供 SIB10的调度信息和 SIB10上的 SCCPCH信息。当不同小区的几个 SIB10消息同时被调度时,UE应只监听激活集中最佳 CPICH测量的小区中广播的 SIB10。

当收到一个包含 SIB10的 SYSTEM INFORMATION消息时,UE应:1、根据来自激活集中每个小区最新接收到的值,确定并存贮最苛刻的 DRAC参数(即:选择其DRAC类标识对应的 ptr* MaximumBitRate的最小乘积)

2、根据选择的最大比特率值,决定允许的 TFCS子集,并存贮以备后用。允许的 TFCS子集满足由DRAC控制的DCH 总比特率小于信息元素“Maximum Bit Rate”,如:

在收到第一个 SIB10后,UE将开始下面过程:1. 在下一个 TTI开始时,UE随机地选择 p ɛ [0,1]。2. 若 p < ptr,UE将在 Tvalidity帧期间内,在 DRAC控制的 DCH信道上使用最近存贮的 TFCS

允许的子集进行发送,然后返回步骤 1。否则,在 Tretry帧期间,UE将停止在这些 DCH的发送,然后返回步骤 1。

有效发送时间(Tvalidity)和重传前时间间隔(Tretry)在此过程控制的 DCH的建立时指示给UE,并可通过 RB或传输信道的重配置进行修改。UE应总是使用最近接收的DRAC 静态参数。能够同时接收一个 SCCPCH和一个DPCH的UE可支持DRAC过程。

14.7.下行链路外环功率控制(Downlink outer loop power

control)

14.7.1 概述该功能在 UE中实现,用来设置用于下行链路功率控制的每个 CCTrCH上的 SIR目标值。为

了达到与UTRAN设定的质量目标同样的测量质量,应根据 UE内的一个自治功能调整 SIR的值。质量目标由 UTRAN通过信令设置每个传输信道的 BLER值。对于 CPCH,质量目标是由UTRAN通过信令设置DL DPCCH的 BER。

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当使用传输信道 BLER时,UE应运行一个质量目标控制环路,以使每个分配有 BLER目标的传输信道质量需求得到满足。

当使用 DL DPCCH BER时,UE应运行一个质量目标控制环路,以使每个分配有 DL DPCCH BER目标的 CPCH传输信道的质量需求得到满足。当物理信道建立或重配置时,UE应设置 SIR目标。在功率控制会聚到当前值之前,UE不应

增加 SIR目标值。UE可能通过比较平均测量 SIR与 SIR目标值来估计功率控制是否会聚到当前值。若 UE从 UTRAN收到下行链路外环控制消息,指示 SIR目标值不能在当前值上增加,UE应

记录当前值作为功率控制的最大允许值,直至 UE从UTRAN收到一个新的下行链路外环控制消息,指示该限制被取消。14.7.2 压缩模式中的下行链路功率控制与正常模式相比,在压缩模式下,压缩帧和压缩帧后的一帧(恢复帧)间目标 SIR需要改变。

因此,UTRAN向UE发送 4个值:DeltaSIR1, DeltaSIRafter1, DeltaSIR2和DeltaSIRafter2。对每个帧,在压缩模式期间,目标 SIR偏移与正常帧相比:

SIR = max (SIR1_compression, … , SIRn_compression) + SIR_coding其中,n为 CCTrCH中全部传输信道 TTI 长度的数目,Fi 是第 i 个 TTI 中帧数的长度,SIR_coding 满足:

- SIR_coding = DeltaSIR1 在发送间隙模式对应第一个发送间隙的压缩帧- SIR_coding = DeltaSIRafter1 在发送间隙模式对应第一个发送间隙的恢复帧- SIR_coding = DeltaSIR2 在发送间隙模式对应第二个发送间隙的压缩帧- SIR_coding = DeltaSIRafter2 在发送间隙模式对应第二个发送间隙的恢复帧- SIR_coding = 0 其它SIRi_compression定义如下:- 若帧的压缩是通过扩频因子减半(信息元素"Compressed mode method"为"SF/2"):

- SIRi_compression= 3 dB 对每个压缩帧,- SIRi_compression= 0 其它

- 若帧的压缩是通过打孔方式(信息元素"Compressed mode method"为"puncturing"):- SIRi_compression= 10 log (15*Fi / (15*Fi - TGLi)) 若在长度为 Fi 帧的当前 TTI中存在发送间隙,其中 TGL是长度为 Fi 帧的当前 TTI中以时隙数表示的间隙长度时(无论是从一个间隙还是一组间隙)

- SIRi_compression= 0 其它- 若帧的压缩是通过高层调度的(信息元素 "Compressed mode method"为 "upper layer

scheduling"):- SIRi_compression= 0 对全部帧

特殊情况下,当一个发送间隙覆盖两个帧时(双帧方式),第二个压缩帧(以及发送间隙的第二部分)应作为恢复帧(SIR_coding = DeltaSIRafter1或SIR_coding = DeltaSIRafter2)。因此,在这种情况,紧跟这两个连续压缩帧的第一帧不作为一个恢复帧(SIR_coding=0)。应尽可能避免对同一帧使用几个压缩模式。特别地,对同一帧使用几个同时出现的打孔模式,UE应认为出现一个协议错误。对此类错误

的处理详见其它描述。当多个压缩模式应用于同一帧,或当一个帧是一种模式的压缩帧同时又是相同或不同模式的

恢复帧时,应加上全部偏移并对该帧使用目标 SIR偏移的总和。

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14.8.传输格式组合计算(Calculated Transport Format

Combination) 传输格式组合计算(CTFC)是用于传输格式组合的有效信令(efficient signalling)的工具。 设 I为传输格式组合中所含传输信道数。每个传输信道 TrCHi, i = 1, 2, …, I,有 Li 个传输格式。即TFIi 可取 Li 个值, 。定义 ,这里 i = 1, 2, …, I,且 L0 = 1.

设 TFC(TFI1, TFI2, …, TFII)为传输格式组合,其中 TrCH1 有传输格式 TFI1, TrCH2 有传输格式 TFI2,等等。相应的 CTFC(TFI1, TFI2, …, TFII)用下式计算:

对下行链路公共信道,"TrCHi"以升序编号,从 1开始,其顺序按 SYSTEM INFORMATION消息列出的顺序。在其他情况下,对每个分隔的 TFCI字段,"TrCHi"以升序编号,从 1开始,按映射到 TFCI字

段的信道的传输信道标识升序排列。

14.9.在未使用频率上激活集的UE自主更新(仅适用于 FDD) 在MEASUREMENT CONTROL消息的测量报告准则字段,UTRAN通知UE哪些事件将触发测量报告。对于频率间测量,可能指定频率内测量报告事件以支持对未使用频率相关的激活集的维护,"virtual active set"。“未用频率”是要求 UE测量但未被激活集使用的频率。“已用频率”是要求UE测量且为当前连接使用的频率。 自主更新(autonomous update)由"UE autonomous update mode"控制,该信息元素可取以下值:

- On:根据下面描述的规则进行"virtual active set"自主更新并且报告触发更新的事件;- On with no reporting:根据下面描述的规则进行"virtual active set"自主更新;- Off:仅报告事件并不更新"virtual active set",除非信息元素"inter-frequency set update"要求。

若信息元素"UE autonomous update mode"为"On"或"On with no reporting",UE应评估以下频率内事件,并根据以下规则更新与频率测量相关的"virtual active set":

- 事件 1a应使UE将进入报告范围的基本 CPICH加入到"virtual active set";- 事件 1b应使UE从"virtual active set"去除离开报告范围的基本 CPICH;- 事件 1c应使UE将"virtual active set"中的一个激活的基本 CPICH替换为一个变得比它更好的非激活的基本 CPICH。

14.10 在网络节点间RRC信息的提供和接收

在某些情况,如执行到 UTRAN 的切换或执行 SRNC 重定位,可能需要在其他 RAT 和UTRAN之间或 UTRAN内的 UTRAN结点之间传递 RRC信息。下面详细规定了每个方向上所需传递的 RRC信息。

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14.10.1 RRC信息,到目标RNC

到目标 RNC的 RRC信息可能由源 RNC或其他 RAT发出。在切换到 UTRAN的情况,这些信息来源于其他 RAT;在 SRNC重定位的情况,RRC信息来自源 RNC。有关 SRNC的信息,传递的RRC信息说明了 RRC及其所控制的低层的配置信息,包括无线承载和传输信道配置。目标 RNC使用这些信息初始化 RRC和低层协议,以便UE的 SRNC透明重定位。

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Information Element/Group Name

Need Multi Type and reference Semantics description

Non RRC IEsCHOICE case MP>Handover to UTRAN>>UE radio access capability OP UE radio access

capability 10.3.3.40>>UE security information OP UE security information

14.13.2.2>>Pre-defined configuration status information

OP Pre-defined configuration status information 14.13.2.3

>SRNC relocation>>State of RRC MP Enumerated

(CELL_DCH, CELL_FACH,CELL_PCH, URA_PCH)

>>State of RRC procedure MP Enumerated (await no RRC message, await RRC Connection Re-establishment Complete, await RB Setup Complete, await RB Reconfiguration Complete, await RB Release Complete, await Transport CH Reconfiguration Complete, await Physical CH Reconfiguration Complete, await Active Set Update Complete, await Handover Complete, send Cell Update Confirm, send URA Update Confirm,send RRC Connection Re-establishment, others)

Ciphering related information>>Ciphering status MP Enumerated(Not

started, Started)>>Calculation time for ciphering related information

CV Ciphering

Time when the ciphering information of the message were calculated, relative to a cell of the target RNC

>>>Cell Identity MP Cell Identity 10.3.2.2 Identity of one of the cells under the target RNC and included in the active set of the current call

>>>SFN MP Integer(0..4095)>>Ciphering info per radio bearer OP 1 to

<maxRB>

>>>RB identity MP RB identity10.3.4.16

>>>Downlink START MP START10.3.3.36

>>>Uplink START MP START10.3.3.36

Integrity protection related information

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Information Element/Group Name

Need Multi Type and reference Semantics description

>>Integrity protection status MP Enumerated(Not started, Started)

>>Signalling radio bearer specific integrity protection information

CV IP 4 to <maxSRBsetup>

RB identity CV SRB5Plus

RB identity10.3.4.16

For RB#0-4 the RB identity is not required

>>> Uplink RRC HFN MP Bitstring (28)>>> Downlink RRC HFN MP Bitstring (28)>>> Uplink RRC Message sequence number

MP Integer (0..15)

>>> Downlink RRC Message sequence number

MP Integer (0..15)

>>Implementation specific parameters

OP Bitstring (1..512)

RRC IEsUE Information elements

>>U-RNTI MP U-RNTI10.3.3.45

>>C-RNTI OP C-RNTI10.3.3.8

>>UE radio access Capability MP UE radio access capability10.3.3.40

Other Information elements>>Inter System message (inter system classmark)

OP Inter-system message10.8.6

UTRAN Mobility Information elements

>>URA Identifier OP URA identity10.3.2.6

CN Information Elements>>CN common GSM-MAP NAS system information

MP NAS system information (GSM-MAP)10.3.1.9

>>CN domain related information OP 1 to <MaxCNdomains>

CN related information to be provided for each CN domain

>>>CN domain identity MP>>>CN domain specific GSM-MAP NAS system info

MP NAS system information (GSM-MAP)10.3.1.9

Measurement Related Information elements

>>For each ongoing measurement reporting

OP 1 to <MaxNoOfMeas>

>>>Measurement Identity Number MP Measurement identity number10.3.7.73

>>>Measurement Command MP Measurement command10.3.7.71

>>>Measurement Type CV Setup Measurement type10.3.7.75

>>>Measurement Reporting Mode OP Measurement reporting mode10.3.7.74

>>>Additional Measurements list OP Additional measurements list10.3.7.1

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Information Element/Group Name

Need Multi Type and reference Semantics description

>>>CHOICE Measurement OP>>>>Intra-frequency>>>>>Intra-frequency cell info OP Intra-frequency cell info

list10.3.7.33

>>>>>Intra-frequency measurementquantity

OP Intra-frequency measurement quantity10.3.7.38

>>>>>Intra-frequency reporting quantity

OP Intra-frequency reporting quantity10.3.7.41

>>>>>Reporting cell status OP Reporting cell status10.3.7.86

>>>>>Measurement validity OP Measurement validity10.3.7.76

>>>>>CHOICE report criteria OP>>>>>>Intra-frequencymeasurement reporting criteria

Intra-frequency measurement reporting criteria10.3.7.39

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULL>>>>Inter-frequency>>>>>Inter-frequency cell info OP Inter-frequency cell info

list10.3.7.13

>>>>>Inter-frequency measurementquantity

OP Inter-frequency measurement quantity10.3.7.18

>>>>>Inter-frequency reporting quantity

OP Inter-frequency reporting quantity10.3.7.21

>>>>>Reporting cell status OP Reporting cell status10.3.7.86

>>>>>Measurement validity OP Measurement validity10.3.7.76

>>>>>CHOICE report criteria OP>>>>>>Inter-frequencymeasurement reporting criteria

Inter-frequency measurement reporting criteria10.3.7.19

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULL>>>>Inter-system>>>>>Inter-system cell info OP Inter-system cell info

list10.3.7.23

>>>>>Inter-system measurementquantity

OP Inter-system measurement quantity10.3.7.29

>>>>>Inter-system reporting quantity

OP Inter-system reporting quantity10.3.7.32

>>>>>Reporting cell status OP Reporting cell status10.3.7.86

>>>>>Measurement validity OP Measurement validity10.3.7.76

>>>>>CHOICE report criteria OP>>>>>>Inter-system measurement reporting criteria

Inter-system measurement reporting criteria

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Information Element/Group Name

Need Multi Type and reference Semantics description

10.3.7.30

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Information Element/Group Name

Need Multi Type and reference Semantics description

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULL>>>>Traffic Volume>>>>>Traffic volume measurementObject

OP Traffic volume measurement object10.3.7.95

>>>>>Traffic volume measurementquantity

OP Traffic volume measurement quantity10.3.7.96

>>>>>Traffic volume reporting quantity

OP Traffic volume reporting quantity10.3.7.99

>>>>>CHOICE report criteria OP>>>>>>Traffic volume measurement reporting criteria

Traffic volume measurement reporting criteria10.3.7.97

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULL>>>>Quality>>>>>Quality measurementObject

OP Quality measurement object

>>>>>CHOICE report criteria OP>>>>>>Quality measurement reporting criteria

Quality measurement reporting criteria10.3.7.83

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULL>>>>UE internal>>>>>UE internal measurementquantity

OP UE internal measurement quantity10.3.7.104

>>>>>UE internal reporting quantity

OP UE internal reporting quantity10.3.7.107

>>>>>CHOICE report criteria OP>>>>>>UE internal measurement reporting criteria

UE internal measurement reporting criteria10.3.7.105

>>>>>>Periodical reporting Periodical reporting criteria10.3.7.78

>>>>>>No reporting NULLRadio Bearer Information

Elements>>Pre-defined configuration status information

OP Pre-defined configuration status information 14.13.2.3

>>Signalling RB information list MP 1 to <maxSRBsetup>

For each signalling radio bearer

>>>Signalling RB information MP Signalling RB information to setup 10.3.4.24

>>RAB information list OP 1 to <maxRABsetup>

Information for each RAB

>>>RAB information MP RAB information to

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Information Element/Group Name

Need Multi Type and reference Semantics description

setup10.3.4.10

Transport Channel Information Elements

Uplink transport channels>>UL Transport channel information common for all transport channels

OP UL Transport channel information common for all transport channels10.3.5.24

>>UL transport channel information list

OP 1 to <MaxTrCH>

>>>UL transport channel information

MP Added or reconfigured UL TrCH information10.3.5.2

>>CHOICE mode OP>>>FDD>>>>CPCH set ID OP CPCH set ID

10.3.5.5>>>>Transport channel information for DRAC list

OP 1 to <MaxTrCH>

>>>>>DRAC static information MP DRAC static information10.3.5.7

>>>TDD (no data)Downlink transport channels

>>DL Transport channel information common for all transport channels

OP DL Transport channel information common for all transport channels10.3.5.6

>>DL transport channel information list

OP 1 to <MaxTrCH>

>>>DL transport channel information

MP Added or reconfigured DL TrCH information10.3.5.1

>>Measurement report OP MEASUREMENT REPORT10.2.17

>spare (no data)Criticality: reject

Multi Bound ExplanationMaxNoOfMeas Maximum number of active measurements, upper

limit 16

Condition ExplanationSetup The IE is mandatory when the IE Measurement

command has the value "Setup", otherwise the IE is not needed.

Ciphering The IE is mandatory when the IE Ciphering Status has the value "started" and the ciphering counters need not be reinitialised, otherwise the IE is not needed.

IP The IE is mandatory when the IE Integrity protection status has the value "started" and the ciphering counters need not be reinitialised, otherwise the IE is not needed.

SRB5Plus The IE is mandatory when more than 5 signalling radio bearers are included

PDCP The IE is mandatory when the PDCP Info IE is present, otherwise the IE is not needed.

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14.10.2 RRC信息,目标RNC到源RNC

RNC重定位存在两种可能情况:1. UE已经处于目标 RNC的控制之下;2. SRNC重定位同时进行硬切换(UE 仍在 SRNC的控制下),但 UE正向目标 RNC控制的区

域运动(基于测量信息)。在第一种情况下,重配置对UE透明且没有"reverse"方向的容器。SRNC只需分配'serving'功能

给目标 RNC后,它就成为 SRNC。在第二种情况下,重定位由 SRNC发起,它同时向目标 RNC提供 RRC初始化信息。基于此

信息,目标 RNC准备硬切换消息(“物理信道重配置”、“无线承载建立”、“无线承载重配置”、“无线承载释放”或“传输信道重配置”)。除此之外,可能是来自其它系统(如 GSM)的"Handover To Utran Command"命令。这些消息其中之一是使用一个透明的从目标 RNC到源系统方向的 RANAP容器向 SRNC发送。此消息标识为XXX。于是,源 RNC传送切换消息到UE,UE执行切换。如果成功,UE使用新的配置向目标 RNC发送一个XXX COMPLETE消息。如果失败,UE使用旧的配置向源 RNC和保持不变(需要用 SRNC重定位过程证实和检测)

的 RRC上下文发送一个XXX FAILURE消息。Information Element/Group

nameNeed Multi Type and reference Semantics

descriptionCHOICE RRC message MP> RADIO BEARER SETUP RADIO BEARER

SETUP10.2.31

> RADIO BEARER RECONFIGURATION

RADIO BEARER RECONFIGURATION10.2.25

>RADIO BEARER RELEASE RADIO BEARER RELEASE10.2.28

> TRANSPORT CHANNEL RECONFIGURATION

TRANSPORT CHANNEL RECONFIGURATION10.2.51

> PHYSICAL CHANNEL RECONFIGURATION

PHYSICAL CHANNEL RECONFIGURATION10.2.20

14.10.3 RRC信息,目标RNC到源系统目标 RNC到源系统的 RRC信息用于向其他 RAT传递信息,例如在切换到 UTRAN时的情况。

此时,有关"Handover To UTRAN Command"的 RRC信息由目标 RNC编译,但通过另外的 RAT向UE传递,见 8.3.6。

Information Element/Group name

Need Multi Type and reference Semantics description

CHOICE case MP>handover to UTRAN HANDOVER TO

UTRAN COMMAND10.2.10

>spare (no data)Criticality: reject

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14.11 通用信道分配模式(VCAM)映射规则(仅适用 FDD)当通用信道分配方法(VCAM)用于 CPCH 过程时,下面的映射规则将用于指定一个

PCPCH。如果 PCPCH的数量小于或等于 16,在 CA索引和 PCPCH索引之间存在一一映射。为了所需

要的基于广播系统信息的扩频因子,发送合适的 AP符号(和/或 AP子信道)数,且将分配的PCPCH索引(具有所需的扩频因子)对应于接收的 CA索引。如果 PCPCH的数量大于 16,AP符号(和/或 AP子信道)数和 CA符号数的一个组合用于指

定一个 PCPCH:在 VCAM 映射规则下,AP 符号(和 /或 AP 子信道)数和 CA 符号数的组合指定一个

PCPCH。在 CPCH集合中,一个 UE可请求并使用 K个可用的 PCPCH信道 k=0,1,…, K-1,以及 R个可用的最小扩频因子 Ar, r=0,1,…,R-1。对于 Ar,最大可用的 PCPCH数和最大可用的 AP符号(和/或AP子信道)数分别表示为 P0r 和 Sr,r=0,1,…,R-1。当 P0r 小于 16时,设 Pr 为 16,否则,将 Pr 设为 P0r 。Tr 代表用于指定 PCPCH的 Ar的 CA符号数,Tr的缺省值是 16。

Sr 总是满足 对于每一个 Ar,可用的 AP符号(和/或 AP子信道)列表的编号是从符号下标 0到 Sr –1,从

最低的AP符号数(和/或AP子信道)开始,按符号数的升序排列。对于给定的 AP符号(和/或 AP子信道)数和 CA符号数,表示被分配的 PCPCH的 k值由下

式获得:其中,i (i=0,1,…,Sr-1)是用于 Ar的 AP符号(和/或 AP子信道)索引,j (j=0,1,…,min(Pr,Tr)-1)

是用于 Ar的 CA符号数,n是一个非负整数且满足: .

有关上面映射的例子见本文最后。14.12 LCS测量

14.13 在UE和其它系统间传送的RRC信息本节指明了在其它系统和 UE间交换的 RRC信息。此信息是通过另一个与用于那些系统的规

范一致的无线接入技术(RAT)发送的。此节指明可用于不同信息流的UTRAN RRC信息。14.13.1 RRC 信息, 另一个RAT到UE

14.13.1.1 预定义的配置信息其它的系统可向 UE提供一个或多个预定义的 UTRAN配置,该配置由无线承载,传输信道和

物理信道参数组成。UE应存储这些信息,并且在 HANDOVER TO UTRAN COMMAND 消息请求时,用于到UTRAN的切换。预定义的配置信息应该包含下面的 RRC信息。

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Information Element/Group name

Need Multi Type and reference

Semantics description

RB information elementsPredefined radio configurations 1 to

<maxPredefConfigCount>

>Predefined configuration identity

MP Predefined configuration identity10.3.4.5

>Predefined configuration value tag

OP Predefined configuration value tag10.3.4.6

UE information elementsRe-establishment timer MP Re-

establishment timer10.3.3.30

RB information elements>Predefined RB configuration MP Predefined

RB configuration10.3.4.7

TrCH Information Elements>Predefined TrCH configuration MP Predefined

TrCH configuration10.3.5.9

PhyCH Information Elements>Predefined PhCH configuration MP Predefined

PhyCH configuration10.3.6.48

多重限制 解释MaxPredefConfigCount 预定义配置的最大值

14.13.2 RRC 信息,UE到另一个RAT

14.13.2.1 UE无线能力信息一旦接收到来自其它系统的 UE信息请求,UE应指示要求的无线能力。UE无线能力信息包

括下面的 RRC信息。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

UE information elementsUE radio access capability OP UE radio

access capability10.3.3.40

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14.13.2.2 UE安全信息一旦接收到来自其它系统的 UE信息请求,UE应指示要求的安全信息。UE安全信息包括下

面的 RRC信息。Information Element/Group

nameNeed Multi Type and

referenceSemantics description

UE information elementsSTART list MP 1 to

<MaxCNdomains>

START [TS 33.102] values for all CN domains

>CN domain identity MP CN domain identity 10.3.1.1

>START MP START 10.3.3.13

START values to be used in this CN domain.

14.13.2.3 预定义的配置状态信息其它的系统可向 UE提供一个或多个预定义的 UTRAN配置,该配置由无线承载,传输信道和

物理信道参数组成。如果被请求,UE应指出所存储的配置信息。预定义的配置信息应该包括下面的 RRC信息。

Information Element/Group name

Need Multi Type and reference

Semantics description

RB information elementsPredefined configurations 1 to

<maxPredefConfigCount>

The list is in order of preconfiguration identity

>Predefined configuration value tag

OP Predefined configuration value tag10.3.4.6

The UE shall include the value tag if it has stored the concerned configuration

多重限制 解释MaxPredefConfigCount 预定义配置的最大值

15 RRC和上层间的原语Void.

16 未知的,不可预见的和错误协议数据的处理

16.1 概述该部分详细说明了接收实体对未知的、不可预见的、错误的协议数据的处理。这些过程称

为"error handling procedures",,但除了为出错状态提供恢复机制外,还为将来协议的扩展定义了一个兼容机制。

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出错处理过程适用全部 RRC消息。对不同逻辑信道上接收消息的特殊处理有专门的定义。当 UE收到一个 RRC消息时,UE应设置变量 PROTOCOL_ERROR_REJECT为 FALSE,并按

下述定义执行检查。前面定义的 RRC过程仅适用于通过下述错误检查之后的消息,对恢复错误而进行专门处理的

过程除外。16.2 违背 ASN.1或编码错误若UE在DCCH上收到一个消息,其编码消息不能成为一个有效的抽象语法值,UE应:- 设置变量 PROTOCOL_ERROR_REJECT 为 TRUE;- 在上行链路DCCH上发送一个 RRC STATUS消息。信息元素"Protocol error information"应包含"Protocol error cause"并设置为"ASN.1 violation or encoding error";

- 当 RLC确认 RRC STATUS消息的发送时,UE应继续正常操作,如同没有收到无效的消息一样。

若UE在 BCCH、PCCH或 CCCH上收到一个消息,其编码消息不能成为一个有效的抽象语法值,UE应忽略该消息。16.3 未知或不可预见的消息类型若UE在DCCH上收到一个 RRC消息,其消息类型是为将来扩展保留的,UE应:- 设置变量 PROTOCOL_ERROR_REJECT 为 TRUE;- 在上行链路DCCH上发送一个 RRC STATUS消息。信息元素"Protocol error information"应包含"Protocol error cause"并设置为"ASN.1 violation or encoding error";

- 当 RLC确认 RRC STATUS消息的发送时,UE应继续正常操作,如同没有收到无效的消息一样。

若UE在 BCCH、PCCH或 CCCH上收到一个消息,其编码消息不能成为一个有效的抽象语法值,UE应忽略该消息。16.4 未知或不可预见的信息元素值,强制性信息元素若 UE在 DCCH收到一个 RRC消息或在 CCCH上向 UE发送消息,其中一个强制性信息元素

有一个为将来扩展而保留的值,包含选择,UE应:- 若该信息元素的紧急程度为"Ignore"并定义了该信息元素的缺省值,使用消息元素的缺省值处理消息其余部分;

- 若该信息元素的紧急程度为"Reject"或没有定义该信息元素的缺省值:- 设置变量 PROTOCOL_ERROR_REJECT 为 TRUE;- 设 置 变 量 PROTOCOL_ERROR_INFORMATION 中 的 信 息 元 素 "Protocol error

cause"为"Information element value not comprehended";- 执行过程特定的出错处理。

若UE在 BCCH或 PCCH上收到一个 RRC消息,其中一个强制性信息元素有一个为将来扩展而保留的值,包含选择,UE应:

- 若该信息元素的紧急程度为"Ignore"并定义了该信息元素的缺省值,使用缺省值处理消息其余部分;

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- 若该信息元素的紧急程度为"Reject"或没有定义该信息元素的缺省值,忽略该消息。16.5 条件信息元素错误若UE在DCCH、BCCH、PCCH、CCCH上收到一个 RRC消息,其中不存在条件信息元素特

定的条件但信息元素存在,UE应:- 忽略该信息元素;- 处理消息其余部分,如同不存在该信息元素一样。若 UE在 DCCH上收到一个 RRC消息,或在 CCCH上向 UE发送消息,其中条件信息元素特

定的条件存在但信息元素不存在,UE应:- 设置变量 PROTOCOL_ERROR_REJECT为 TRUE;- 设置变量 PROTOCOL_ERROR_INFORMATION中信息元素"Protocol error

cause"为"Conditional information element error";- 执行过程特定的出错处理。若UE在 BCCH或 PCCH上收到一个 RRC消息,其中条件信息元素特定的条件存在但信息元

素不存在,UE应忽略该消息。16.6 未知或不可预见的信息元素值,条件信息元素若UE在DCCH或 CCCH上收到一个 RRC消息,其中条件信息元素特定的条件存在,信息元

素有一个为将来扩展而保留的值,包含选择,UE应:- 若信息元素的紧急程度为"Ignore"并且定义了信息元素的缺省值,使用缺省值对消息其余部分进行处理。

- 若信息元素的紧急程度为"Reject"或没有定义信息元素的缺省值:- 设置变量 PROTOCOL_ERROR_REJECT为 TRUE;- 设置变量 PROTOCOL_ERROR_INFORMATION 中信息元素"Protocol error

cause"为"Information element value not comprehended";- 执行过程特定的出错处理。

若UE在 BCCH或 PCCH上收到一个 RRC消息,其中条件信息元素特定的条件存在,信息元素有一个为将来扩展而保留的值,包含选择,UE应:

- 若信息元素的紧急程度为"Ignore"并且定义了信息元素的缺省值,使用缺省值对消息其余部分进行处理;

- 若信息元素的紧急程度为"Reject"或没有定义信息元素的缺省值,忽略该消息。16.7 未知或不可预见的信息元素值,可选信息元素若 UE在 DCCH上收到一个 RRC消息,或在 CCCH上向 UE发送消息,其中可选信息元素有

一个为将来扩展而保留的值,包含选择,且信息元素的紧急程度为"Ignore",UE应:- 忽略该信息元素的值。 - 处理消息其余部分,如同该信息元素不存在一样。若 UE在 DCCH上收到一个 RRC消息,或在 CCCH上向 UE发送消息,其中可选信息元素有

一个为将来扩展而保留的值,包含选择,且信息元素的紧急程度为"reject",UE应:- 设置变量 PROTOCOL_ERROR_REJECT 为 TRUE;

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- 设置变量 PROTOCOL_ERROR_INFORMATION 中信息元素"Protocol error cause"为"Information element value not comprehended";

- 执行过程特定的出错处理。若UE在 BCCH或 PCCH上收到一个 RRC消息,其中可选信息元素值有一个为将来扩展而保

留的值,包含选择,UE应:- 忽略该信息元素的值;- 处理消息其余部分,如同该信息元素不存在一样。

16.8 非期望的消息扩展若 UE在 DCCH上收到一个 RRC消息,或在 CCCH上向 UE发送消息,其中至少包含一个信

息元素其扩展内容没有定义,因而是非期望的,UE应检查该扩展的紧急程度:- 若紧急程度为"Ignore",UE应忽略扩展内容及扩展后消息内容,但对消息其余部分按正常扩展处理。

- 若紧急程度为"Reject",或没有定义,UE应:- 设置变量 PROTOCOL_ERROR_REJECT 为 TRUE;- 设置变量 PROTOCOL_ERROR_INFORMATION 中信息元素 "Protocol error cause" 为"Message extension not comprehended";

- 执行过程特定的出错处理。若UE在 BCCH或 PCCH上收到一个 RRC消息,其中至少包含一个信息元素其扩展内容没有

定义,因而是非期望的,UE应检查该扩展的紧急程度:- 若紧急程度为"Ignore",UE应忽略扩展内容及扩展后消息内容,但对消息其余部分按正常扩展处理;

- 若紧急程度为"Reject",或 criticality没有定义,忽略该消息。

17 SDL本章使用 SDL语言描述协议的功能。

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18 附录: 实施举例18.1 VCAM映射规则的例子

Table 18.1.1: Example of Mapping Rule for PCPCH 16

PCPCH (k)

SF = 128 SF = 256

0 AP0(AP0), CA0

AP2(AP1), CA7

AP1(AP2), CA14

AP0(AP3), CA0

AP1(AP4), CA5

AP2 (AP5), CA10

AP3(AP6), CA15

1 AP1(AP1), CA0

AP0(AP2), CA7

AP2(AP0), CA14

AP1(AP4), CA0

AP2(AP5), CA5

AP3(AP6), CA10

2 AP2(AP2), CA0

AP1(AP0), CA7

AP0(AP1), CA14

AP2(AP5), CA0

AP3(AP6), CA5

AP0(AP3), CA11

3 AP0(AP0), CA1

AP2(AP1), CA8

AP1(AP2), CA15

AP3(AP6), CA0

AP0(AP3), CA6

AP1(AP4), CA11

4 AP1(AP1), CA1

AP0(AP2), CA8

AP2(AP0), CA15

AP0(AP3), CA1

AP1 (AP4), CA6

AP2(AP5), CA11

5 AP2(AP2), CA1

AP1(AP0), CA8

AP0(AP1), CA15

AP1(AP4), CA1

AP2(AP5), CA6

AP3(AP6), CA11

6 AP0(AP0), CA2

AP2(AP1), CA9

AP2(AP5), CA1

AP3(AP6), CA6

AP0(AP3), CA12

7 AP1(AP1), CA2

AP0(AP2), CA9

AP3(AP6), CA1

AP0(AP3), CA7

AP1(AP4), CA12

8 AP2(AP2), CA2

AP1(AP0), CA9

AP0(AP3), CA2

AP1(AP4), CA7

AP2(AP5), CA12

9 AP0(AP0), CA3

AP2(AP1), CA10

AP1(AP4), CA2

AP2(AP5), CA7

AP3(AP6), CA12

10 AP1(AP1), CA3

AP0(AP2), CA10

AP2(AP5), CA2

AP3(AP6), CA7

AP0(AP3), CA13

11 AP2(AP2), CA3

AP1(AP0), CA10

AP3(AP6), CA2

AP0(AP3), CA8

AP1(AP4), CA13

12 AP0(AP0), CA4

AP2(AP1), CA11

AP0(AP3), CA3

AP1(AP4), CA8

AP2(AP5), CA13

13 AP1(AP1), CA4

AP0(AP2), CA11

AP1(AP4), CA3

AP2(AP5), CA8

AP3(AP6), CA13

14 AP2(AP2), CA4

AP1(AP0), CA11

AP2(AP5), CA3

AP3(AP6), CA8

AP0(AP3), CA14

15 AP0(AP0), CA5

AP2(AP1), CA12

AP3(AP6), CA3

AP0(AP3), CA9

AP1(AP4), CA14

16 AP1(AP1), CA5

AP0(AP2), CA12

AP0(AP3), CA4

AP1(AP4), CA9

AP2(AP5), CA14

17 AP2(AP2), CA5

AP1(AP0), CA12

AP1(AP4), CA4

AP2(AP5), CA9

AP3(AP6), CA14

18 AP0(AP0), CA6

AP2(AP1), CA13

AP2(AP5), CA4

AP3(AP6), CA9

AP0(AP3), CA15

19 AP1(AP1), CA6

AP0(AP2), CA13

AP3(AP6), CA4

AP0(AP3), CA10

AP1(AP4), CA15

20 AP2(AP2), CA6

AP1(AP0), CA13

AP0(AP3), CA5

AP1(AP4), CA10

AP2(AP5), CA15

NOTE:

- SF (A0) = 128, Number of AP (S0) = 3: Re-numbered AP0 = AP0, AP1 = AP1, AP2 = AP2

- SF (A1) = 256, Number of AP (S1) = 4: Re-numbered AP3 = AP0, AP4 = AP1, AP5 = AP2, AP6 = AP3

- P0=P1=21

- T0=T1=16.

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- In this example, M0=7, M1=21

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附件 A (informative):USIM参数

A.1简介本附件包含了对USIM中所应存贮的网络参数的建议。A.2加密信息

Information Element/Group name

Need Multi Type and reference

Semantics description

Cipher key for each CN domain MP <1 to maxCNDomains>

Cipher key is described in 33.102.

> Old CK MP Bitstring (128)

> New CK MP Bitstring (128)

Integrity key for each CN domain

MP <1 to maxCNDomains>

Integrity key is described in 33.102.

> Old IK MP Bitstring (128)

> New IK MP Bitstring (128)

START value for each CN domain

MP <1 to maxCNDomains>

START value is described in 33.102.

> Old START MP Bitstring (20)

> New START MP Bitstring (20)

KSI, Key set identifier for each CN domain

MP <1 to maxCNDomains>

Key set identifier is described in 33.102.

> Old KSI MP Bitstring (3)

> New KSI MP Bitstring (3)

A.3频率信息相邻小区列表

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Information Element/Group name

Need Multi Type and reference

Semantics description

FDD cell list OP <1 to maxFDDFreqList>

>UARFCN uplink (Nu) OP Integer(0..16383)

[25.101] If IE not present, default duplex distance of 190 MHz shall be used.

>UARFCN downlink (Nd) MP Integer(0 .. 16383)

[25.101]

> Primary scrambling code OP <1 to maxFDDFreqCellList>

Primary CPICH info10.3.6.59

TDD cell list OP <1 to maxTDDFreqList>

>UARFCN (Nt) MP Integer(0 .. 16383)

[25.102]

> Cell parameters ID OP <1 to maxTDDFreqCellList>

Integer (0..127)

The Cell parameters ID is described in 25.223.

GSM Neighbour cell list OP>GSM neighbour cell info MP <1 to

maxGSMCellList>

>> BSIC MP>> BCCH ARFCN MP

A.4多样性的值和类型约束的值

Constant Explanation ValueCiphering informationMaxCNDomains Maximum number of CN domains 4Frequency informationmaxFDDFreqList Maximum number of FDD carrier frequencies to be stored in

USIM4

maxTDDFreqList Maximum number of TDD carrier frequencies to be stored in USIM

4

maxFDDFreqCellList Maximum number of neighbouring FDD cells on one carrier to be stored in USIM

32

maxTDDFreqCellList Maximum number of neighbouring TDD cells on one carrier to be stored in USIM

32

maxGSMCellList Maximum number of GSM cells to be stored in USIM 32