09-20110509_EDEX

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Transcript 09-20110509_EDEX

EDEX Platform
Energy Data Exchange Platform
Erik Wolfs
Who am I
Erik Wolfs
Working as IT project leader for ELIA – Belgium TSO
Convenor CWE MC IT group
Convenor ENTSO-e MADES Workgroup
[email protected]
Agenda - EDEX
• Purpose
• Components
• Future development
• Questions
Purpose - EDEX:
SMART GRIDS MODEL
Level 1: Smart pan-European
Functional level
SMART GRIDS
Cluster 1: Pan-European Grid architecture
Novel approaches to develop a pan-European Grid
Functional projects
T1. A toolbox for new network architecture
assessment
T2. Tools to analyze the pan-European network
expansion options
T14.Innovative approaches to improve the public
acceptance of overhead lines
Cluster 2: Power technologies
Affordable technologies to make the transmission
system more clever and flexible
T3. Demonstrations of power technologies for
more network flexibility
T4. Demonstrations of power technologies for
new architectures
T5. Demonstrations of renewable integration
Cluster 3: Network management and control
Critical building blocks to operate the interconnected
transmission system in real-time and reliably
T6. Tools for pan-European network
observability
T7. Tools for coordinated operations with
stability margin evaluation
T8. Improved training tools for improved
coordination
T9. Tools for pan-European network reliability
assessment
Cluster 4: Market rules
Market simulation techniques to develop a single
European electricity market
T10. Tools for pan-European balancing markets
T11. Advanced tools for congestion management
T12. Tools for renewable market integration of
active demand
T13. Tools to study market integration of active
demand
Purpose - EDEX:
• Forecast calculations become more and more important for
modern TSO’s
• Actual used methods are no more adequate for guaranteeing
the security on future Electrical Grids
• More dynamic and flexible studies needed
• More (continuous) intraday dynamic
needed between D-1 and Real-time
calculations
• More correct and continuously updated data needed
during the complete forecasting cycle
• Access to the correct data becomes critical
• More and more platforms appear (TSC CTSS, 20’s, CWE CS,
Entso-e PowerSystem DB…….)
Purpose - EDEX:
Standardization
• EDEX wants to provide interface specifications basic
functionality and best practices to the Energy world to :
• Create a standardized platform to
messages and process them :
• CIM Messages
• Market Messages
• Any binary Message
transmit ENTSO-e
EDEX:
Components
• ECP : Energy Communication Platform
MADES compliant External communication platform
• EPP : Energy Process Platform
Central Process handler and integrator
• Client Toolbox
Decentralised process handler and local integrator
Components - communication MADES
MADES (Market Data Exchange Standard)
What for?
• Harmonization of a communication software for the
European electricity (or energy) market, including the
following services:
- guarantee of delivery
- electronic signature
- uniform method for data encryption
• Defines the platform used for external communication
Components - communication MADES
Components - communication MADES
Components - communication MADES
Components - communication MADES
Components - ECP
• ECP, (Energy Communication Platform),
• Reference package for MADES standard
• ECP was developed by CWE TSO’s
• Transfer of the ownership of ECP to Entso-e on-going
• Licenses for all TSO’s available
• Already used by 13 TSO’s
Components - ECP
Components – EPP Message Processing
• EPP, (Energy Process Platform),
• Based on Open Source Components (JBoss)
• EPP was developed by CWE TSO’s for the MC CS
• Availability of licenses for all TSO’s on-going
• Uses a canonical model
• ESB, Process Orchestrator, Message Validators
• ECP integrated for external communication
• Standardized interfaces for functional modules and
data containers
Components – EPP Message Processing
Components – EPP Message Processing
Components – EPP Message Processing
Next Step – Client Toolbox
Next Step – Client Toolbox
Next Step : Client Toolbox
• Message Validation (CIM, Market….)
• Standardised Interfaces
• Distributed calculations – so less need for model
transfers
• Can run as standalone system
• Intelligent data gathering provided as a Service
• Data Security and confidentiality :
• On the Communication via ECP
• Owner of data decides who has access
• Local Data Storage for models with subscription
service
And now:
 Schedule
 Questions ?