Wind energy and power system interconnection, control, and operation for high penetration of wind power

High penetration of wind energy requires innovations in different areas of power engineering. Methods for improving wind energy and power system interconnection, control, and operation are proposed in this dissertation. A feed-forward transient compensation control scheme is proposed to enhance the...

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Main Author: Liang, Jiaqi
Published: Georgia Institute of Technology 2013
Subjects:
Online Access:http://hdl.handle.net/1853/47570
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spelling ndltd-GATECH-oai-smartech.gatech.edu-1853-475702013-08-27T03:09:45ZWind energy and power system interconnection, control, and operation for high penetration of wind powerLiang, JiaqiWind power marketAdaptive critic designsDynamic stochastic optimal power flowLow voltage ride throughDoubly fed induction generatorWind energyWind powerWind energy conversion systemsInduction generatorsHigh penetration of wind energy requires innovations in different areas of power engineering. Methods for improving wind energy and power system interconnection, control, and operation are proposed in this dissertation. A feed-forward transient compensation control scheme is proposed to enhance the low-voltage ride-through capability of wind turbines equipped with doubly fed induction generators. Stator-voltage transient compensation terms are introduced to suppress rotor-current overshoots and torque ripples during grid faults. A dynamic stochastic optimal power flow control scheme is proposed to optimally reroute real-time active and reactive power flow in the presence of high variability and uncertainty. The performance of the proposed power flow control scheme is demonstrated in test power systems with large wind plants. A combined energy-and-reserve wind market scheme is proposed to reduce wind production uncertainty. Variable wind reserve products are created to absorb part of the wind production variation. These fast wind reserve products can then be used to regulate system frequency and improve system security.Georgia Institute of Technology2013-06-15T02:42:20Z2013-06-15T02:42:20Z2012-03-08Dissertationhttp://hdl.handle.net/1853/47570
collection NDLTD
sources NDLTD
topic Wind power market
Adaptive critic designs
Dynamic stochastic optimal power flow
Low voltage ride through
Doubly fed induction generator
Wind energy
Wind power
Wind energy conversion systems
Induction generators
spellingShingle Wind power market
Adaptive critic designs
Dynamic stochastic optimal power flow
Low voltage ride through
Doubly fed induction generator
Wind energy
Wind power
Wind energy conversion systems
Induction generators
Liang, Jiaqi
Wind energy and power system interconnection, control, and operation for high penetration of wind power
description High penetration of wind energy requires innovations in different areas of power engineering. Methods for improving wind energy and power system interconnection, control, and operation are proposed in this dissertation. A feed-forward transient compensation control scheme is proposed to enhance the low-voltage ride-through capability of wind turbines equipped with doubly fed induction generators. Stator-voltage transient compensation terms are introduced to suppress rotor-current overshoots and torque ripples during grid faults. A dynamic stochastic optimal power flow control scheme is proposed to optimally reroute real-time active and reactive power flow in the presence of high variability and uncertainty. The performance of the proposed power flow control scheme is demonstrated in test power systems with large wind plants. A combined energy-and-reserve wind market scheme is proposed to reduce wind production uncertainty. Variable wind reserve products are created to absorb part of the wind production variation. These fast wind reserve products can then be used to regulate system frequency and improve system security.
author Liang, Jiaqi
author_facet Liang, Jiaqi
author_sort Liang, Jiaqi
title Wind energy and power system interconnection, control, and operation for high penetration of wind power
title_short Wind energy and power system interconnection, control, and operation for high penetration of wind power
title_full Wind energy and power system interconnection, control, and operation for high penetration of wind power
title_fullStr Wind energy and power system interconnection, control, and operation for high penetration of wind power
title_full_unstemmed Wind energy and power system interconnection, control, and operation for high penetration of wind power
title_sort wind energy and power system interconnection, control, and operation for high penetration of wind power
publisher Georgia Institute of Technology
publishDate 2013
url http://hdl.handle.net/1853/47570
work_keys_str_mv AT liangjiaqi windenergyandpowersysteminterconnectioncontrolandoperationforhighpenetrationofwindpower
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