actual use of dse in a real french mv network · future distribution networks • new constraints...

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Actual use of DSE in a real French MV network Leticia De Alvaro EDF R&D 1

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Page 1: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Actual use of DSE in a real French

MV network

Leticia De Alvaro

EDF R&D

1

Page 2: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Plan

• New automation functions and DSE needs

• Development of algorithms

• Implementation challenges

• Field experiment

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Page 3: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Future distribution networks

• New constraints appear on MV and LV networks

– DG connected to distribution networks � impact on

voltage profiles, losses, power quality

– Assets ageing

– New types of loads

• New DMS functionalities to be developed

– To optimize future network reinforcement/development

– Voltage control function, Network Reconfiguration Functions, Power

Flows and losses Optimization, etc…

3

Page 4: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Future distribution networks

• New constraints appear on MV and LV networks

– DG connected to distribution networks � impact on

voltage profiles, losses, power quality

– Assets ageing

– New types of loads

• New DMS functionalities to be developed

– To optimize future network reinforcement/development

– Voltage control function, Network Reconfiguration Functions,

Power Flows and losses Optimization, etc…

4

More observability is required

Page 5: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

MV

Load LV LV LV LV

LV LV LV LV

LV LV

LVHV

HVHV/MVSubst.

RTU SCADA

Control center

HV/MV substation

Distribution network

Sensors

Sensors

Observability requirements

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Vmax

Vmin

Voltage

Length

V

Vprod

Page 6: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Observability requirements

6

Vmax

Vmin

Voltage

Length

V

Vprod

MV

Load LV LV LV LV

LV LV LV LV

LV LV

LVHV

HVHV/MVSubst.

RTU SCADA

Control center

HV/MV substation

Distribution network

Sensors

Sensors

Page 7: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Observability requirements

7

Vmax

Vmin

Voltage

Length

V

Vprod

MV

Load LV LV LV LV

LV LV LV LV

LV LV

LVHV

HVHV/MVSubst.

DSENetwork data base

RTU SCADA

Control center

HV/MV substation

Distribution network

Sensors

Sensors

Page 8: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Development of DSE algorithms

• Research topics:

– DSE algorithms

– Scalability of DSE algorithms

– Impact of sensors on DSE results

• Research Projects:

– Internal EDF R&D

– European HiPerDNO project

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Page 9: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Development of DSE algorithms

• DSE issues:

– Instrumentation issues

– Algorithmic issues

• Long radial feeders with heterogeneous lines and cables

• Large number of nodes

• Active and reactive power cannot be decoupled

• DSE algorithms:

– Constrained and un-constrained WLS DSE using Newton optimization,

– Specific robust DSE based on M-estimator,

– DSE based on trust region optimization,

– Meta-heuristic approach,

– …

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Page 10: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

• Criteria choice

– Robustness• Detect, identification and elimination of errors regarding

measurements, network model or parameters

– Accuracy of results

– Calculation time

– Impact of number and type of sensors on DSE results

• Voltage sensors, power sensors, …

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Development of DSE algorithms

Page 11: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

• Research phase with

Matlab tool

– Run different case

studies

– Fine tuning of the

algorithm + sensors

requirements

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Development of DSE algorithms

Choice of DSE to be implemented

Page 12: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Off-line experiment

• Carried out in 2011

• No real time calculation

• 2 MV feeders

– Sensors installed in several

MV/LV substations

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Sub1

Sub2

Sub 3 Sub 4 Rules related to placement of

sensors validated

Page 13: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Implementation challenges

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Algorithms

Communications

Sensors

Page 14: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Implementation challenges

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•Accurate MV sensors�Voltages �Power

•Compact design•Security requirements•Equipment's availability

Algorithms

Communications

Sensors

Page 15: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

•Accurate MV sensors�Voltages �Power

•Compact design•Security requirements•Equipment's availability

Implementation challenges

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•Measurement synchronization•Permanent connecting link

Algorithms

Communications

Sensors

Page 16: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

•Measurement synchronization•Permanent connecting link

Implementation challenges

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•Accurate MV sensors�Voltages �Power

•Size requirements•Physical requirements

•Matlab � C++•Integration in real time control tool•Real time issues integration

•Unavailable measurements,•Network configuration•…

Algorithms

Communications

Sensors

Page 17: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Field experiment

• demonstrator

– Study and test new solutions

and products designed to

adapt the electric grid to wind

production

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Page 18: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

Field experiment

• Voltage regulation function

– 1 HV/MV transformer 20 MW

– 6 feeders

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DG

Voltage control

functionDSE

Network

data base

SCADA

HV/MV substation

Page 19: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

To summarize

• DSE algorithms to enable new voltage control

function

• Different implementation challenges

addressed

• Field experimentation ongoing

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Page 20: Actual use of DSE in a real French MV network · Future distribution networks • New constraints appear on MV and LV networks – DG connected to distribution networks impact on

THANK YOU FOR YOUR ATTENTION

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