Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs

Lennart Petersen, Fitim Kryezi, Florin Iov, Łukasz Hubert Kocewiak

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Resumé

This paper addresses a detailed design and tuning of a wind power plant slope voltage control with reactive power contribution of wind turbines and STATCOMs. First, smallsignal models of a single wind turbine and the whole wind power plant are developed, being appropriate for voltage control assessment. An exemplary wind power plant located in the United Kingdom and the corresponding grid code requirements are used as a base case. The final design and tuning process of the voltage controller results in a guidance, proposed for this particular control architecture. It provides qualitative outcomes regarding the impact of system delays, grid conditions and various operating conditions of the wind power plant, with and without incorporation of STATCOMs.
OriginalsprogEngelsk
TitelProceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants
RedaktørerUta Betancourt, Thomas Ackermann
Antal sider6
Udgivelses stedBrussels
ForlagEnergynautics
Publikationsdato21 okt. 2015
Sider1-6
ISBN (Trykt)978-3-9816549-1-2
StatusUdgivet - 21 okt. 2015
Begivenhed14th Wind Integration Workshop: International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants - Brussels, Belgien
Varighed: 20 okt. 201522 okt. 2015

Konference

Konference14th Wind Integration Workshop: International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants
LandBelgien
ByBrussels
Periode20/10/201522/10/2015

Fingerprint

Wind turbines
Wind power
Power plants
Voltage control
Tuning
Reactive power
Controllers
Static synchronous compensators
Electric potential

Emneord

  • Wind turbine
  • Offshore wind power plant
  • Power system
  • Voltage control
  • State-space model
  • Grid codes

Citer dette

Petersen, L., Kryezi, F., Iov, F., & Kocewiak, Ł. H. (2015). Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs. I U. Betancourt, & T. Ackermann (red.), Proceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants (s. 1-6). Brussels: Energynautics.
Petersen, Lennart ; Kryezi, Fitim ; Iov, Florin ; Kocewiak, Łukasz Hubert. / Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs. Proceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants. red. / Uta Betancourt ; Thomas Ackermann. Brussels : Energynautics, 2015. s. 1-6
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title = "Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs",
abstract = "This paper addresses a detailed design and tuning of a wind power plant slope voltage control with reactive power contribution of wind turbines and STATCOMS. First, small-signal models of a single wind turbine and the whole wind power plant are developed, being appropriate for voltage control assessment. An exemplary wind power plant located in the United Kingdom and the corresponding grid code requirements are used as a base case. The final design and tuning process of the voltage controller results in a guidance, proposed for this particular control architecture. It provides qualitative outcomes regarding the impact of system delays, grid conditions and various operating conditions of the wind power plant, with and without incorporation of STATCOMS.",
keywords = "Wind turbine, Offshore wind power plant, Power system, Voltage control, State-space model, Grid codes, Wind turbine, Offshore wind power plant, Power system, Voltage control, State-space model, Grid codes",
author = "Lennart Petersen and Fitim Kryezi and Florin Iov and Kocewiak, {Łukasz Hubert}",
note = "This paper was presented at the 14th Wind Integration Workshop and published in the workshop's proceedings",
year = "2015",
month = "10",
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isbn = "978-3-9816549-1-2",
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Petersen, L, Kryezi, F, Iov, F & Kocewiak, ŁH 2015, Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs. i U Betancourt & T Ackermann (red), Proceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants. Energynautics, Brussels, s. 1-6, 14th Wind Integration Workshop: International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants, Brussels, Belgien, 20/10/2015.

Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs. / Petersen, Lennart; Kryezi, Fitim ; Iov, Florin; Kocewiak, Łukasz Hubert.

Proceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants. red. / Uta Betancourt; Thomas Ackermann. Brussels : Energynautics, 2015. s. 1-6.

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

TY - GEN

T1 - Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs

AU - Petersen, Lennart

AU - Kryezi, Fitim

AU - Iov, Florin

AU - Kocewiak, Łukasz Hubert

N1 - This paper was presented at the 14th Wind Integration Workshop and published in the workshop's proceedings

PY - 2015/10/21

Y1 - 2015/10/21

N2 - This paper addresses a detailed design and tuning of a wind power plant slope voltage control with reactive power contribution of wind turbines and STATCOMS. First, small-signal models of a single wind turbine and the whole wind power plant are developed, being appropriate for voltage control assessment. An exemplary wind power plant located in the United Kingdom and the corresponding grid code requirements are used as a base case. The final design and tuning process of the voltage controller results in a guidance, proposed for this particular control architecture. It provides qualitative outcomes regarding the impact of system delays, grid conditions and various operating conditions of the wind power plant, with and without incorporation of STATCOMS.

AB - This paper addresses a detailed design and tuning of a wind power plant slope voltage control with reactive power contribution of wind turbines and STATCOMS. First, small-signal models of a single wind turbine and the whole wind power plant are developed, being appropriate for voltage control assessment. An exemplary wind power plant located in the United Kingdom and the corresponding grid code requirements are used as a base case. The final design and tuning process of the voltage controller results in a guidance, proposed for this particular control architecture. It provides qualitative outcomes regarding the impact of system delays, grid conditions and various operating conditions of the wind power plant, with and without incorporation of STATCOMS.

KW - Wind turbine

KW - Offshore wind power plant

KW - Power system

KW - Voltage control

KW - State-space model

KW - Grid codes

KW - Wind turbine

KW - Offshore wind power plant

KW - Power system

KW - Voltage control

KW - State-space model

KW - Grid codes

M3 - Article in proceeding

SN - 978-3-9816549-1-2

SP - 1

EP - 6

BT - Proceedings of the 14th Wind Integration Workshop

A2 - Betancourt, Uta

A2 - Ackermann, Thomas

PB - Energynautics

CY - Brussels

ER -

Petersen L, Kryezi F, Iov F, Kocewiak ŁH. Wind Power Plant Control Optimisation with Incorporation of Wind Turbines and STATCOMs. I Betancourt U, Ackermann T, red., Proceedings of the 14th Wind Integration Workshop : International Workshop on Large-Scale Integration of Wind Power into Power Systems as well as on Transmission Networks for Offshore Wind Power Plants. Brussels: Energynautics. 2015. s. 1-6