Resilience Evaluation considering Power Interchange in Multiple Public Facilities in the Area

DOI Open Access
  • Sugawara Rikuto
    筑波大学大学院システム情報工学研究群 リスク・レジリエンス工学学位プログラム
  • Akimoto Yutaro
    筑波大学大学院システム情報工学研究群 リスク・レジリエンス工学学位プログラム
  • Okajima Keiichi
    筑波大学大学院システム情報工学研究群 リスク・レジリエンス工学学位プログラム

Bibliographic Information

Other Title
  • 地域内複数公共施設での電力融通を考慮したレジリエンス性評価

Abstract

Due to the problems of global warming and energy disruption in the event of a disaster, it is required to reduce the carbon content of energy systems and strengthen their resilience. Therefore, the attention is being paid to a system called "regional smart grid" in which power is interchanged between a plurality of facilities having distributed power sources according to the power demand. By exchanging power between facilities that have distributed power sources, the power generated in the area can be used without waste, and power can be supplied even in the event of a disaster. Thus, it is possible to improve the low carbon performance and resilience of the regional energy system. In this study, we have assumed multiple facilities where power interchange is possible, and tried to optimize the amount of PV / storage batteries installed and the amount of power interchange. Then, the difference in low carbon performance and resilience depending on the presence or absence of power interchange has been quantitatively evaluated.

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Details 詳細情報について

  • CRID
    1390576844714585856
  • DOI
    10.24778/jjser.44.2_87
  • ISSN
    24330531
  • Text Lang
    ja
  • Data Source
    • JaLC
    • KAKEN
  • Abstract License Flag
    Disallowed

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