ABAC Workshop - Vorstellung der IEC Expertenteams und ...
Transcript of ABAC Workshop - Vorstellung der IEC Expertenteams und ...
ABAC Workshop -
Vorstellung der IEC Expertenteams und aktuelle
Projekte (IEC/TC57)
Sebastian Kosslers
DKE
Frankfurt, 10.09.2020
Energiesysteme der Zukunft: Trends in Standards und
Normung
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EV2Grid
Smart Home
Smart
Energy
Industry 4.0
Microgrid
PVs
Integration of
Renewables
Quelle : VDE-Studie „Der zellulare Ansatz"
Standardization Trends:
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→System Design - Standardisierung führt zu
nachhaltigen Lösungen
Modelling, Analysis and
Planning
Cybersecurity
Modelling IEC 61850
Registry
Parameter
Data modelling independent from software
Energy Management Systems
End-to-End-Security
Forecast
development and evaluation of
forecast systems
evaluation of DER (e.g. flexibility
benchmarking)
Life-Cycle-Management
Open Architectures
Integration Electromobility
Smart Energy Grid (Power2X)
Datenmodelle als Schlüssel
Interoperabilität + Integration
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Weit mehr als “Netzleittechnik” – Die Arbeiten der IEC/TC 57
Security in Power System Automation
Modellierung einzelner Geräte und
deren Konfiguration
Modelierung von Diensten/Services
Konventionen für die Benennung von
Objekten und Daten
Modellierung des Energieversorgung
als System
Beispiele:
Data models for Distributed Energy
Ressources (DER), Electric Vehicles
Services wie Berichte, Prüfungen,
Wartung
Smart Grid Architecture Model (SGAM)
Trends in der Standardisierung: IEC 61850 Serie (TC 57 WG10)
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Steckbrief WG10 “Power system IED
communication and associated data models”
288 Mitglieder
Mit 10 Projekte von 48 TC57-Projekten
insgesamt eine der aktivsten IECTC 57 WGs
To develop communication standards for substations - Functional architecture and general
requirements
Trends in der Standardisierung: IEC 61850 Serie (TC 57 WG10)
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mapping to web protocols – requirement
analysis and technology assessment
system management for
IEC 61850
configuration description language for
extensions for human-machine-interfaces
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WG 10 Projekte (1/2)
IEC 61850-4/AMD1 ED2 Amendment 1 - Communication networks and systems for power utility
automation - Part 4: System and project management
57/2256/FDIS
IEC 61850-5/AMD1 ED2 Amendment 1 - Communication networks and systems for power utility
automation - Part 5: Communication requirements for functions and
device models
57/2215/CDV
IEC 61850-6-2 ED1 Communication networks and systems for power utility automation - Part
6-2: Configuration description language for extensions for human
machine interfaces
57/2226/CD
IEC TR 61850-7-5 ED1 Communication networks and systems for power utility automation –
Part 7-5: IEC 61850 modelling concepts
57/2253/DTR
IEC TS 61850-80-5 ED1 Communication networks and systems for power utility automation - Part
80-5: Guideline for mapping information between IEC 61850 and IEC
61158-6 (Modbus)
57/2250/CD
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WG 10 Projekte (2/2)
IEC TR 61850-90-11
ED1
Communication networks and systems for power utility automation –
Part 90-11: Methodologies for modelling of logics for IEC 61850 based
applications
57/2129A/DTR
IEC TR 61850-90-14
ED1
Communication networks and systems for power utility automation –
Part 90-14: Using IEC 61850 for FACTS (Flexible AC Transmission
Systems), HVDC (High Voltage Direct Current) Transmission and Power
Conversion data modelling
57/2232/DTR
IEC TS 61850-90-16
ED1
Communication networks and systems for power utility automation - Part
90-16: System management for IEC 61850
57/1775/NP
IEC TR 61850-90-19
ED1
Communication networks and systems for power utility automation - Part
90-19: Using Role Based Access Control (RBAC) and IEC 61850
PWI 61850-90-20 ED1 Communication networks and systems for power utility automation - Part
90-20: Guideline to redundancy systems
Trends in der Standardisierung: IEC 61850 Serie (TC 57 WG13)
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Steckbrief WG13 “Software interfaces for operation and planning of the electric grid”
125 Mitglieder
10 Projekte von 48 TC57-Projekten
Define standards for software interfaces among systems supporting business functions
directly involved with operation and planning of the overall interconnected electric grid.
Develop the power system network models used by these business functions to analyse the
behaviour of the grid. These business functions cover the entire interconnected grid at all
voltage levels, and they often involve interactions between systems at various different
participants in the grid (e.g. RTO/RSC, TSO, DSO, microgrid, generator, consumer). Data
exchanges include SCADA data, network studies and calculations for real-time operation,
day-ahead studies, and secure constrained economic dispatch.
ABAC
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WG 13 Projekte (1/2)
IEC 61968-13 ED2 Application integration at electric utilities - System interfaces for
distribution management - Part 13: Common distribution power system
model profiles
57/2119/CDV
IEC 61970-303 ED1 Energy Management System Application Program Interface (EMS-API) -
Part 303: Common information model (CIM), Network Model
Management
57/1958/NP
IEC 61970-401 ED1 Energy management system application program interface (EMS-API) -
Part 401: Profile framework
57/2183/CD
IEC 61970-452 ED4 Energy management system application program interface (EMS-API) -
Part 452: CIM static transmission network model profiles
57/2086/RR
IEC 61970-457 ED1 Energy Management System Application Program Interface (EMS-API)
– Part 457: Dynamics profile
57/2229/CDV
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WG 13 Projekte (2/2)
IEC 61970-459 ED1 Energy Management System Application Program Interface (EMS-API) -
Part 459: Framework for managing shared network model information
57/1959/NP
IEC 61970-460 ED1 Energy Management System Application Program Interface (EMS-API) –
Part 460: Profiles for projects that describe changes to IEC 61970
network models
57/1953/NP
IEC 61970-501 ED2 Energy management system application program interface (EMS-API) -
Part 501: Common Information Model Resource Description Framework
(CIM RDF) schema
57/1965A/RR
IEC 61970-600-1 ED1 Energy management system application program interface (EMS-API) -
Part 600-1: Common Grid Model Exchange Specification (CGMES) -
Structure and rules
57/2169/CDV
IEC 61970-600-2 ED1 Energy management system application program interface (EMS-API) -
Part 600-2: Common Grid Model Exchange Specification (CGMES) -
Exchange profiles specification
57/2170/CDV
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Security in Power System Automation –
IEC/TC 57 WG 15 Data and commmunication security
Source: ftp://ftp.cencenelec.eu/EN/EuropeanStandardization/HotTopics/SmartGrids/SGCG_SGIS_Report.pdf
Vertraulichkeit, Datenintegrität, Authentifizierung, Unleugbarkeit
IEC 62351-x Power Systems Management and Associated
Information Exchange – Data and Communication Security
-definiert Sicherheitsmaßnahmen zum Schutz der Kommunikation in Stromnetzen
-gilt für die Umspannwerk-Automatisierung mit den Protokollen IEC 61850 und IEC
60870-x sowie in angrenzenden Kommunikationsprotokollen zur Unterstützung der
Energieautomation, wie z.B. ICCP (TASE.2) für die Kommunikation zwischen
Leitstellen
-Weiterentwicklung der Standards für die End-to-End-Security
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Security in Power System Automation –
IEC/TC 57 WG 15 Data and commmunication security
Source: ftp://ftp.cencenelec.eu/EN/EuropeanStandardization/HotTopics/SmartGrids/SGCG_SGIS_Report.pdf
IEC 62351 Security for Power Systems im Bezug zu den
Kommunikation Standards:
IEC 61970 / 61968 Common Information Model (CIM)
IEC 62325 Market Communication using CIM
IEC 61850 Substation, Distribution, DER Automation
IEC 60870 Telecontrol Protocols (serial/TCP)
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Security in Power System Automation –
IEC/TC 57 WG 15 Data and commmunication security
Source: ftp://ftp.cencenelec.eu/EN/EuropeanStandardization/HotTopics/SmartGrids/SGCG_SGIS_Report.pdf
IEC 62351 Security for Power Systems im Bezug zu den
Kommunikation Standards:
IEC 61970 / 61968 Common Information Model (CIM)
IEC 62325 Market Communication using CIM
IEC 61850 Substation, Distribution, DER Automation
IEC 60870 Telecontrol Protocols (serial/TCP)
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Paradigmenwechsel in der Normung
→ Aktuelle Trends und Entwicklungen werden zuerst in den Expertenteams
der der Normung sichtbar.
Heute:
• Übergreifende Systemnormung
• Normung VOR der
Produktentwicklung sichert die
Stellung im Markt
• Normen und Standards werden
sofort international eingebracht
Gestern:
• Normung in Sparten
• Etablierte Produkte werden
genormt
• Normen und Standards sind
national, Internationalisierung
kommt später
"Third-class businesses make products;
Second-class businesses develop
technologies;
First-class businesses set standards."
(Chinese proverb)
Ihr Ansprechpartner:
Sebastian Kosslers
Standardization Manager Energy
Head of VDE Competence Center
Smart Grid
Phone: +49 69 6308 322
Twitter: @DKE_Aktuell , @kosslers
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