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Aucun titre de diapositive

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CORYS TESS in a few words. 25 years experience in simulation and training ... Transformer or line energizing or off-loading from remote ... – PowerPoint PPT presentation

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Title: Aucun titre de diapositive


1
CRIS 2004 Testing Training Simulator
2
CORYS TESS in a few words
  • 25 years experience in simulation and training
  • 1975 creation of a training center at CEA
    Grenoble
  • 1989 creation of CORYS as a CEA spin-off
  • 1997 takeover by TRACTEBEL Engineering and
    TECHNICATOME
  • Main markets covered
  • Energy
  • Transport
  • Environment, Industry
  • Two industrial Shareholders

3
TransportTraining engineering simulators
  • Full scope simulator for the Rotterdam metro

4
EnergyTraining engineering simulators
  • More than 100 simulators in operation in more
    than 20 countries
  • Full range of training simulators
  • Basic principles
  • Functional and multifunctional
  • Full scope full scale
  • In all energy related processes
  • Nuclear (PWR, VVER, RBMK, Candu)
  • Conventional (fossil, gas, combined cycle)
  • Electrical dispatching

5
EnergyTraining engineering simulators
  • Full scope full scale training simulators
  • For Eastern Europe Nuclear units (Slovakia,
    Armenia, Russia)

6
EnergyTraining engineering simulators
  • Full scope full scale training simulators
  • For Conventional units (PPC, Greece)

7
EnergyTraining engineering simulators
  • Dispatching simulators
  • China, Slovakia, Belgium
  • EUROSTAG technology adapted to real time

8
TENGIZ Chevroil expansion project
  • 2.6 B project to increase oil production by
    10-million ton/year
  • Requirement to extend oil field electrical
    transmission and distribution system (11010 kV)
  • Design and delivery of Power management system

High fidelity Engineering simulator required
Minimised outage during commissioning
Minimal test but guaranteedsystem reliability
9
Power Management System benefits improvement in
the electrical network management
  • Data Acquisition and control
  • Determination of quality and integrity of data
    acquired
  • Generation of alarms for abnormal data conditions
  • Validation of data for reasonability and
    communication failures
  • Energy transfer management
  • Load-shedding
  • Load-sharing
  • Voltage profile
  • Management of controllers and protection
    devices
  • Remote re-configuration of the network (jumpers,
    cuts and grounds)
  • Update controllers logic and protection curves
    settings
  • Transformer or line energizing or off-loading
    from remote
  • Reaction to malfunction and network maintenance
  • Reliability and speed of circuit-tracing analysis
    enable fast service recovery
  • Fault and load profile analysis to set up
    predictive maintenance

10
TENGIZ PMS architecture
11
Simulator added-value
Expansion project lifetime cycle
PMS factory acceptance test ? PMS control logic
fine tuning ? PMS Specification compliance proof
? Reduced PMS testing time in real environment
Design stage ?load-shedding and load-sharing
algorithms validation? PMS I/O communication
extensive testing
System Engineering application
Operator Trainingapplication
12
Simulation system architecture
Electrical grid simulator
SEPAM device emulator
3000 I/O ModBus
ModBus PC Card
I/O CAN Module
600 I/O Hard wired
I/O PC
13
Simulator model validation PMS control strategy
ETAP load flow and transient calculations in
various configurations
Comparison of simulator model result with ETAP
calculation
Real time testing
Simulator
  • Disturbance
  • Generator loss
  • Transformer loss
  • Load variation
  • Configuration modification, incl. islanding
  • Grid connection tripping
  • Local power factor compensation
  • HV and MV CB control
  • Tap changer position
  • Signal
  • communication

Power Management System
Load-shedding and load-sharing algorithms set-up
Algorithm control logic implementation inside PMS
14
System engineering simulators Our Strenghts
  • High fidelity modeling to simulate any kind of
    scenario
  • system breaking and islanding
  • black start and restorationwith phenomena such
    as loss of synchronism
  • voltage collapse
  • frequency drops
  • inter area oscillations
  • Use of ALICES simulator development workshop
  • Quality and productivity on model design, with no
    IT knowledge required
  • Dynamic optimization of numerical models
  • Modern and open object oriented design
  • Run on any type of platform, including Windows PC
    desktop
  • Availability of CAN network technology for I/O
    communication
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