Huawei BSC6000 Procedures

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    Internal

    GSM BSS Training Team

    Dec. 31 2006

    ENE040613040002 HUAWEI BSC6000Data Configuration

    ISSUE 1.0

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    The course introduce data

    configurations basic conception, data

    configuration operation, configuration

    procedure and some attention

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    The course introduce data

    configurations basic conception, data

    configuration operation, configuration

    procedure and some attention

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    Reference

    HUAWEI BSC6000 Base Station

    Controller LMT User Guide

    HUAWEI BSC6000 Base Station

    Controller Data Configuration Reference

    HUAWEI BSC6000 Base Station

    Controller Data Configuration Manual

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    At the end of the course, the students can:

    Get a grasp of the structure of the BSC6000

    Local maintenance terminal

    Get a good grasp of Data configuration

    principle and procedure

    Get a grasp of Data maintenance in

    common use

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    Chapter 1 Data configuration general

    introduction

    Chapter 2 Data configuration principle

    Chapter 3 Data configuration procedure

    Chapter 4 Data maintenance operation

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    Data Configuration Methods

    The data configuration function of the BSC6000 consists of the

    configuration, browsing, storage, backup, and restoration of data on the

    BSC6000 and the BTSs under it.

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    Data Configuration Methods

    Offline data configuration.

    Online data configuration.

    Note: The only difference between the two configuration modes is the

    process that the configuration data takes effect

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    Data Classification

    The BSC6000 data is classified into two categories :

    LMT configuration data

    GBAM configuration data

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    Operation Authority

    Level Authority

    Guests Guests can only view the data.

    Users In addition to the authority of guests, users can also performsystem maintenance, such as equipment maintenance, alarm

    management, and performance management.

    Operators In addition to the authority of users, operators can also performdata configuration on the equipment.

    Administrators Administrators have the root authority. In addition to theauthority of operators, administrators can also perform user

    management.

    Custom The custom authority is defined by administrators.

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    Hardware configuration principle

    GEIU/GOIU interface provide E1 or STM-1 port, considering tidy to face

    customer, GEIU /GOIU board is configured in back of cabinet

    Abis interface support 4:1,3:1,2:1 and 1:1 multiplex mode

    GEIUB board support 256 lapd links at most

    Ater interface board quantity correspond A interface board quantity is 1:4

    One GDPUC board can handle 968 voice channel, GDPUC board take N+1configuration mode, all TC resource is shared in resource pool mode

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    Hardware configuration principle

    In fact, all the boards can be configured in all slots except GTNU and

    GSCU, but considering engineering, LMT give us a standardization

    configuration:

    GSCU fixed to occupy slot 6 and 7 in GMPS/GEPS/GTCS frame

    GTNU fixed to occupy slot 4 and 5 in GMPS/GEPS/GTCS frame

    GGCU fixed to occupy slot 12 and 13 in GMPS frame

    GXPUM fixed to occupy slot 0 and 1 in GMPS/GEPS frame

    GXPUC fixed to occupy slot 8 and 9 in GMPS/GEPS frame

    GDPUC fixed to occupy slot 03,813 in GTCS frame

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    Hardware configuration principle

    GEIU boards must be configured in active/standby mode:

    GEIUB/GOIUB can be configured in slot 1827 of GMPS/GEPS

    frame

    GEIUP/GOIUP can be configured in slot 1415 of GMPS/GEPS

    frame

    GEIUT/GOIUT can be configured in slot 1617 of GMPS/GEPS

    frame, slot 1617 of GTCS frame

    GEIUA/GOIUA can be configured in slot 1827 of GTCS frame

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    Login LMT

    Choose Start > Programs > HUAWEI Local Maintenance Terminal >

    BSC6000V900R001Cxx > BSC6000 Local Maintenance Terminal to

    start the BSC6000 Local Maintenance Terminal :

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    Login LMT

    Type the BSC name, BSC IP address, and remarks

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    Login LMT

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    LMT introduction

    lists the functions of the tab pages on the device panel

    Tab Page Main Function

    BSC Device Panel Browses the BSC configuration information.

    Double-clicking a device on the tab page enables you toview the device property through the displayed dialog box.

    Right-clicking a device enables you to configure andmaintain the device through the displayed shortcut menu.

    Site Device Panel Browses the BTS configuration information.

    Double-clicking a device on the tab page enables you toview the device property through the displayed dialog box.

    Right-clicking a device enables you to configure andmaintain the device through the displayed shortcut menu.

    Cell Properties Browses the cell properties.

    External CellProperties

    Browses the external cell properties.

    BSC Information Browses the BSC overall information.

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    LMT introduction

    The Object Management Tree shows the information about dataconfiguration and object status in a graphic way

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    Chapter 1 Data configuration general

    introduction

    Chapter 2 Data configuration principle

    Chapter 3 Data configuration procedure

    Chapter 4 Data maintenance operation

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    Chapter 3 Data configuration procedure

    3.1 BSC Data configuration

    3.2 Site Data configuration

    3.3 Cell Data configuration

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    BSC Data configuration

    BSC Data configuration including:

    Configuring BSC properties

    Configuring BSC devices

    Configuring BSC links

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    Configuring BSC properties

    After the BSC properties are configured, they take effect in the entire

    BSC. Do not modify these properties unless necessary.

    Purpose To configure the BSC information, such as basic data,

    flow control data, timer, software parameters, userresource binding, and Signaling Connection Control Part(SCCP)

    Mandatory orOptional

    Mandatory

    Prerequisites The system initialization is successful.

    Remarks

    The BSC information is configured on the basis of thenetwork planning.

    After the BSC information is configured, do not modify itunless necessary.

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    Configuring BSC properties

    After the BSC properties are configured, they take effect in the entire

    BSC. Do not modify these properties unless necessary.

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    Configuring BSC information

    Including Basic Data, flow control data, BSC timer and so on

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    Configuring The system clock

    The BSC6000 provides two types of clock source.

    Building Integrated Timing Supply (BITS) clock

    Line clock

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    Configuring Line clock

    Configuring Line clock.

    For a remote subrack, the line clock extracted form the A interface

    serves as the reference clock.

    For a local subrack, the line clock extracted form the A interface

    serves as the reference clock or system clock

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    Configuring the 8K Reference Clock

    Configuring the 8k reference clock.

    A reference clock must be configured after the GSCU in a subrack is

    configured

    The configuration of the 8K reference clock is based on the network

    planning

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    Configuring BSC devices

    The BSC device configuration refers to

    the addition, deletion, property

    configuration, and property check of the

    BSC6000 cabinet, subrack, board, fan

    box, and power distribution box

    Configure a signaling point

    Add a subrack

    Add a cabinet

    Configure the subrack-OSP mapping

    Configure fan box properties

    Add a power box

    Add a board

    Configure board properties

    Configure power box properties

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    Adding a Cabinet and Subrack

    The BSC6000 has local cabinets and remote cabinets

    The cabinet where the power distribution box is located has at least one

    subrack configured

    The subrack that controls the power distribution box is already configured

    Each cabinet is configured with a power distribution box

    Each subrack has one sp

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    Adding a board

    The principles of board configuration are as follows

    The GGCU, GTNU, and GSCU can be deleted only when their

    subracks are deleted

    The boards in the GMPS, GEPS, and GTCS are configured in

    sequence

    The GMPS or GEPS requires at least two GXPUMs, two GEIUBs or

    two GOIUBs, and two GEIUTs or two /GOIUTs

    The GTCS must be configured with at least two GDPUCs, two GEIUTs

    or two GOIUTs, and two GEIUAs or two GOIUAs

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    Adding a board

    The descriptions of the BSC6000 boards are as follows

    Each GXPUM and GXPUC has four CPUs, ranging from 0 to 3. Each

    of the other boards has only one CPU

    Each GDPUC has 22 DSPs, ranging from 0 to 21.

    Each GEIUB, GEIUP, GEIUP, or GEIUA has 32 ports, ranging from 0

    to 31

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    Configuring BSC links

    Configuring SS7 Signaling Points

    BSC6000 can be configured with a maximum of four Originating

    Signaling Points (OSPs) and one Destination Signaling Point (DSP).

    The DSP must be configured before the OSP is configured

    The names and codes of signaling points must be unique

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    Configuring a Subrack Communication Link

    To configure a communication link between two subracks

    The communication link is configured between the GMPS and the

    GEPS, or between GTCSs, or between GEPSs.

    A maximum of two communication links can be configured between

    two subracks

    The highway of a subrack can be used only once

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    Configuring an Ater Connection Path

    Configuring SS7 Signaling Points

    The subrack where the Ater connection path is to be established

    exists.

    The configuration of the Ater connection path can be started only on

    the GEIUT of the GMPS or GEPS

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    Configuring an Ater OML

    To configure an Ater Operation and Maintenance Link (OML)

    The Ater connection path is already configured

    The entire BSC requires an active and a standby Ater OMLs. These

    two Ater OMLs are configured in the GMPS

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    Adding an Ater Signaling Link

    To add an Ater signaling link

    Each signaling point can be configured with a maximum of sixteen 64

    kbit/s Ater signaling links.

    Each GEIUT can be configured with a maximum of eight 2 Mbit/s Ater

    signaling links. The total bandwidth cannot exceed 4 Mbit/s

    The rate of the Ater signaling must be the same as that of the SS7

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    Configuring an E1 on the A Interface

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    Configuring an SS7 Signaling Link

    To configure an SS7 signaling link

    Each signaling point can be configured with a maximum of sixteen 64

    kbit/s SS7 signaling links

    Each GMPS or GEPS can be configured with a maximum of two 2

    Mbit/s SS7 signaling links

    The rate of the SS7 must be the same as that of the Ater signaling

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    Chapter 3 Data configuration procedure

    3.1 BSC Data configuration

    3.2 Site Data configuration

    3.3 Cell Data configuration

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    Configuring BTS Data

    The BTS data configuration has the following operations

    Adding a BTS

    Configuring the basic attributes of a BTS

    Adding or deleting BTS boards and modifying the attributes of BTS

    boards

    Adding or deleting slave chains of a BTS

    Moving a BTS

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    Adding a BTS

    The number of cells under a BTS cannot exceed 12. A cell supports a

    maximum of 24 TRXs

    The maximum number of TRXs that a BTS supports varies with the BTS

    type

    The number of BTS levels cannot exceed seven

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    Adding or Deleting a Secondary Chain

    Secondary chains cannot be added between the BTSs that areestablished on the GEIUB boards in different subracks

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    Adding or Deleting a BTS Board

    The BTS data configuration has the following operations

    The active TMU boards and the TRX boards cannot be added in this

    operation

    You cannot delete active TMU boards or TRX boards in this operation

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    Configuring BTS Board Attributes

    how to configure attributes of a BTS board

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    Moving a BTS

    how to configure attributes of a BTS board

    The BSC6000 supports a maximum of seven-level cascade

    connection of BTSs

    A BTS cannot be connected to the BTS of the lower level

    There are enough port timeslot resources to support the services in

    the object where the BTS is to be moved

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    Chapter 3 Data configuration procedure

    3.1 BSC Data configuration

    3.2 Site Data configuration

    3.3 Cell Data configuration

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    Configuring Cell Data

    Cell data configuration consists of the following major operations

    Add a cell

    Modify the attributes of cells, TRXs, and channels

    Modify cell adjacent relations

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    Adding a Cell

    To add a cell

    A BTS exists and it has idle timeslots on the Abis interface

    Each BTS is configured with a maximum of 12 cells

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    Configuring Adjacent Cells

    If the added cell has adjacent cells, modify the cell handoverparameters to configure the cell adjacent relationship after adding

    the cell

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    Configuring Cell Attributes

    To configure the basic attributes, TRX attributes, and advancedattributes for a cell

    Add a cell

    Modify the attributes of cells, TRXs, and channels

    Modify cell adjacent relations

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    Configuring the Basic Attributes

    set the related parameters in the basic attributes field shown

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    Configuring TRX Attributes

    Pay attention the power configuration

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    Configuring Advanced Attributes

    When configuring the advanced parameters, you can use thefollowing methods to quickly find the parameter to be set

    Double-click Parameterand the parameters will be listed in forward

    sequence, backward sequence, or normal sequence on the basis of

    the alphabet

    Press Ctrl+Fto search the parameter to be set

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    Adding TRXs

    Adding TRXs may cause the lack of timeslots and the need of addingsubracks and boards

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    Configuring Channel Attributes

    Channel 0 of at least one TRX in a cell is set to Primary BCCH,Combined BCCH, orBCCH+CBCH. This TRX is called primary BCCH

    TRX

    If the cell broadcast function is available, SDCCH8can be changed to

    SDCCH+CBCH

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    Adding a 2G External Cell

    Each BSC can be configured with a maximum of 3000 2G externalcells

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    Adding a 3G External Cell

    Each BSC can be configured with a maximum of 3000 3G externalcells

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    Chapter 1 Data configuration general

    introduction

    Chapter 2 Data configuration principle

    Chapter 3 Data configuration procedure

    Chapter 4 Data maintenance operation

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    Maintaining Data

    Data maintenance operations provide an auxiliary method for dataconfiguration

    Configuring data

    Obtaining GBAM data

    Verifying the obtained GBAM data

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    Backing Up Local Data

    To save the existing LMT data to the local PC

    Log in to the BSC6000 LMT in offline mode

    In the BSC6000 Local Maintenance Terminalwindow, choose

    Configuration > Backup > Back up Local Data

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    Backing Up GBAM Data

    To back up GBAM data to your local PC,

    Log in the BSC6000 LMT in online mode

    You must type a file name during the backup of GBAM data

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    Backing Up GBAM Data to the GBAM

    Backing Up GBAM Data to the GBAM

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    Obtaining Files from the GBAM

    In the Back up data of GBAM dialog box, select a file, and then selectObtain file from GBAM

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    Restoring GBAM Data

    After the restoration, you must restart the GBAM

    recommends that the GBAM data be backed up before the GBAM is

    restarted.

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    Checking Data Consistency

    To check whether the data of a board in the LMT and that in theGBAM is consistent

    Ensure that the extensions of the result files are .xml

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    Formatting Data Files

    To load the existing configuration data to boards

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    Exporting Network Optimization Parameters

    Export frequency data of cell

    Export 2G external cells

    Export 3G external cells

    Export adjacent cells

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    Thank You

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    Data Configuration Methods

    Loading

    Online Configuration

    Data File

    Database

    GBAM

    FTP Client

    LMT

    Data File

    FTP Server

    Data Backup Command

    File Uploading

    Data Configuration Command

    Configuration Response