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Development of An Energy Management Tool for Community Disaster Resilience

Development of An Energy Management Tool for Community Disaster Resilience

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カテゴリ: 研究会(論文単位)

論文No: PE21001

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: 2021/02/01

タイトル(英語): Development of An Energy Management Tool for Community Disaster Resilience

著者名: Mumbere Samuel Kihembo(Hiroshima University),Fukuhara Atsushi(Hiroshima University),Sasaki Yutaka(Hiroshima University),Zoka Yoshifumi(Hiroshima University),Yorino Naoto(Hiroshima University),Tanioka Yoshiki(Chudenko, Co.)

著者名(英語): Samuel Kihembo Mumbere(Hiroshima University),Atsushi Fukuhara(Hiroshima University),Yutaka Sasaki(Hiroshima University),Yoshifumi Zoka(Hiroshima University),Naoto Yorino(Hiroshima University),Yoshiki Tanioka(Chudenko, Co.)

要約(日本語): Microgrid integration into the design of grid networks is increasingly being considered as a viable solution for resilience to disasters. This paper aims to evaluate the performance of a proposed Switching Energy Management System (EMS) that controls power flow depending on the current Storage battery (BT) State of Charge (SOC) on a test microgrid network subjected to simulated disaster failure after implementing adaptive control measures to prolong service uptime. We consider a network of two interconnected microgrid installations, each containing multiple prosumers and loads simulated with MATLAB/Simulink.

要約(英語): Microgrid integration into the design of grid networks is increasingly being considered as a viable solution for resilience to disasters. This paper aims to evaluate the performance of a proposed Switching Energy Management System (EMS) that controls power flow depending on the current Storage battery (BT) State of Charge (SOC) on a test microgrid network subjected to simulated disaster failure after implementing adaptive control measures to prolong service uptime. We consider a network of two interconnected microgrid installations, each containing multiple prosumers and loads simulated with MATLAB/Simulink.

本誌: 2021年2月4日電力技術研究会

本誌掲載ページ: 1-6 p

原稿種別: 英語

PDFファイルサイズ: 1,576 Kバイト

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