An Effective Coordination Strategy for Voltage Control in Active Distribution System
An Effective Coordination Strategy for Voltage Control in Active Distribution System
カテゴリ: 研究会(論文単位)
論文No: PE21059,PSE21072
グループ名: 【B】電力・エネルギー部門 電力技術/【B】電力・エネルギー部門 電力系統技術合同研究会
発行日: 2021/09/18
タイトル(英語): An Effective Coordination Strategy for Voltage Control in Active Distribution System
著者名: Yorino Naoto(Hiroshima University),Bedawy Ahmed(Hiroshima University),Taenaka Hiroyuki(Hiroshima University),Sasaki Yutaka(Hiroshima University),Zoka Yoshifumi(Hiroshima University)
著者名(英語): Naoto Yorino(Hiroshima University),Ahmed Bedawy(Hiroshima University),Hiroyuki Taenaka(Hiroshima University),Yutaka Sasaki(Hiroshima University),Yoshifumi Zoka(Hiroshima University)
キーワード: Distributed generation|Distributed system|Voltage control|Voltage violations|Distributed generation|Distributed system|Voltage control|Voltage violations
要約(日本語): Recently, regulating the voltage in active distribution systems becomes a significant concern for the system operator. Furthermore, the intermittent nature of renewable energy sources (RESs) causes excessive operations of conventional voltage control devi
要約(英語): Recently, regulating the voltage in active distribution systems becomes a significant concern for the system operator. Furthermore, the intermittent nature of renewable energy sources (RESs) causes excessive operations of conventional voltage control devices. This paper aims to develop an efficient cooperative voltage control approach that can coordinate the conventional voltage regulators and the reactive power of the photovoltaic (PV) inverters using a multi-agent system structure. The proposed approach aims to minimize voltage violations and decrease the stress on the voltage regulators, considering the advantage of the fast control response of PV inverters. The simulation of the IEEE 34-node test feeder demonstrates the effectiveness of the proposed control approach in minimizing the voltage violation while decreasing the number of tap operations.
本誌: 2021年9月21日-2021年9月22日電力技術/電力系統技術合同研究会-2
本誌掲載ページ: 31-36 p
原稿種別: 英語
PDFファイルサイズ: 1,755 Kバイト
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