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Novel control strategies and interfa...
~
Wang, Guosheng.
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Novel control strategies and interface converters for stand-alone wind energy conversion schemes.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Novel control strategies and interface converters for stand-alone wind energy conversion schemes./
Author:
Wang, Guosheng.
Description:
123 p.
Notes:
Source: Masters Abstracts International, Volume: 44-06, page: 2937.
Contained By:
Masters Abstracts International44-06.
Subject:
Energy. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=MR15140
ISBN:
9780494151402
Novel control strategies and interface converters for stand-alone wind energy conversion schemes.
Wang, Guosheng.
Novel control strategies and interface converters for stand-alone wind energy conversion schemes.
- 123 p.
Source: Masters Abstracts International, Volume: 44-06, page: 2937.
Thesis (M.Sc.E.)--University of New Brunswick (Canada), 2004.
Stand-alone wind energy conversion schemes are popular economic electric energy alternative sources for remote and isolated communities. The intermittent nature of wind turbines and existing dynamic volt-ampere characteristics for electric nonlinear loads make it difficult for a stand-alone wind energy scheme to be stabilized or deliver any firm electrical supply to consumers. A stand-alone wind energy conversion system usually supplies electric power/energy to a hybrid passive/active motorized load such as water pumps/ventilation/air-conditioning mechanical loads. For these loads, the generator voltage stability is the main concern for any regulation scheme.
ISBN: 9780494151402Subjects--Topical Terms:
876794
Energy.
Novel control strategies and interface converters for stand-alone wind energy conversion schemes.
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Novel control strategies and interface converters for stand-alone wind energy conversion schemes.
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123 p.
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Source: Masters Abstracts International, Volume: 44-06, page: 2937.
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Thesis (M.Sc.E.)--University of New Brunswick (Canada), 2004.
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Stand-alone wind energy conversion schemes are popular economic electric energy alternative sources for remote and isolated communities. The intermittent nature of wind turbines and existing dynamic volt-ampere characteristics for electric nonlinear loads make it difficult for a stand-alone wind energy scheme to be stabilized or deliver any firm electrical supply to consumers. A stand-alone wind energy conversion system usually supplies electric power/energy to a hybrid passive/active motorized load such as water pumps/ventilation/air-conditioning mechanical loads. For these loads, the generator voltage stability is the main concern for any regulation scheme.
520
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The thesis is a full-validation study for a large number of novel static capacitor compensators and dynamic modulated/switched power filters as well associated Flexible AC Transmission FACTS-control-technology developed by Dr. A. M. Sharaf over the last five years. These novel devices and associated multi-loop error driven dynamic controllers were modeled and fully validated in this research to ensure the generator bus voltage is stabilized under sudden wind excursion and load disturbance, while enhancing wind energy utilization under gusting wind conditions.
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School code: 0823.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=MR15140
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