The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment

In normal operation, doubly-fed induction generator (DFIG) can generate certain range of reactive power and the DFIG based wind farm can participate in reactive power control of grid as a reactive power supply. This paper proposes one multi-objective power dispatch optimization model which considers...

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Main Authors: Zengping Wang, Lefeng Zhang, Guohuang Li
Format: Article
Language:English
Published: Springer 2015-06-01
Series:International Journal of Computational Intelligence Systems
Subjects:
Online Access:https://www.atlantis-press.com/article/25868615.pdf
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author Zengping Wang
Lefeng Zhang
Guohuang Li
author_facet Zengping Wang
Lefeng Zhang
Guohuang Li
author_sort Zengping Wang
collection DOAJ
description In normal operation, doubly-fed induction generator (DFIG) can generate certain range of reactive power and the DFIG based wind farm can participate in reactive power control of grid as a reactive power supply. This paper proposes one multi-objective power dispatch optimization model which considers copper loss minimization of all DFIGs in wind farm and maximization reactive power margin of every DFIG. The active power and reactive power generated by wind farm can meet the power gird requirements of both active power and reactive power. This wind farm power dispatch model will cause more economic benefit and bring more reactive power margin to every DFIG. The advantages and validity of the proposed method have been verified in the case study.
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spelling doaj.art-403f58a213684cbfa24730cfce0aac632022-12-22T01:57:18ZengSpringerInternational Journal of Computational Intelligence Systems1875-68832015-06-018310.1080/18756891.2015.1036222The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power CurtailmentZengping WangLefeng ZhangGuohuang LiIn normal operation, doubly-fed induction generator (DFIG) can generate certain range of reactive power and the DFIG based wind farm can participate in reactive power control of grid as a reactive power supply. This paper proposes one multi-objective power dispatch optimization model which considers copper loss minimization of all DFIGs in wind farm and maximization reactive power margin of every DFIG. The active power and reactive power generated by wind farm can meet the power gird requirements of both active power and reactive power. This wind farm power dispatch model will cause more economic benefit and bring more reactive power margin to every DFIG. The advantages and validity of the proposed method have been verified in the case study.https://www.atlantis-press.com/article/25868615.pdfwind power curtailmentDFIGactive power allocationreactive power allocation
spellingShingle Zengping Wang
Lefeng Zhang
Guohuang Li
The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
International Journal of Computational Intelligence Systems
wind power curtailment
DFIG
active power allocation
reactive power allocation
title The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
title_full The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
title_fullStr The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
title_full_unstemmed The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
title_short The Active Power and Reactive Power Dispatch Plan of DFIG Based Wind Farm Considering Wind Power Curtailment
title_sort active power and reactive power dispatch plan of dfig based wind farm considering wind power curtailment
topic wind power curtailment
DFIG
active power allocation
reactive power allocation
url https://www.atlantis-press.com/article/25868615.pdf
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