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Voltage Control for Active Distribution Network Using Multi-Agent System

Voltage Control for Active Distribution Network Using Multi-Agent System

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カテゴリ: 研究会(論文単位)

論文No: PE19090

グループ名: 【B】電力・エネルギー部門 電力技術研究会

発行日: 2019/09/19

タイトル(英語): Voltage Control for Active Distribution Network Using Multi-Agent System

著者名: Bedawy Ahmed(Hiroshima University),Yorino Naoto(Hiroshima University),Zoka Yoshifumi(Hiroshima University),Sasaki Yutaka(Hiroshima University)

著者名(英語): Ahmed Bedawy(Hiroshima University),Naoto Yorino(Hiroshima University),Yoshifumi Zoka(Hiroshima University),Yutaka Sasaki(Hiroshima University)

キーワード: Distributed generation|Distribution network|Multi-agent system|Voltage control|Voltage violation|Distributed generation|Distribution network|Multi-agent system|Voltage control|Voltage violation

要約(日本語): Nowadays, different types of distributed generation (DG) with high penetrations are installed in the distribution network (DN). Therefore, the conventional strategies of voltage control face several difficulties to solve the voltage violations problems. The objective of this study is to propose an effective control strategy for the voltage regulators in the unbalanced DN based on a multi-agent system (MAS) approach. The proposed strategy considers the unbalanced features of the DN with DGs and different types and configurations of voltage regulators. The robustness and the flexibility of the MAS helps to achieve the objective of the proposed method even in case of system fault. Comprehensive case studies are carried out using the IEEE 123-node test feeder and the effectiveness of the proposed strategy on the mitigation of voltage violations is demonstrated.

要約(英語): Nowadays, different types of distributed generation (DG) with high penetrations are installed in the distribution network (DN). Therefore, the conventional strategies of voltage control face several difficulties to solve the voltage violations problems. The objective of this study is to propose an effective control strategy for the voltage regulators in the unbalanced DN based on a multi-agent system (MAS) approach. The proposed strategy considers the unbalanced features of the DN with DGs and different types and configurations of voltage regulators. The robustness and the flexibility of the MAS helps to achieve the objective of the proposed method even in case of system fault. Comprehensive case studies are carried out using the IEEE 123-node test feeder and the effectiveness of the proposed strategy on the mitigation of voltage violations is demonstrated.

原稿種別: 英語

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