Development of Distribution Network Equipment to Support the Solution of Problem of Connecting Distributed Generators (ANSWER) and Verification Experiment of Active Coordinated Operation of Distributed Generator and Distribution Network

  • Sakai Shigekazu
    Graduate School of Electrical and Electronics Engineering, University of Fukui
  • Hayashi Yasuhiro
    School of Advanced Science and Engineering, Dept. of Electrical Eng. and Bioscience, Waseda University
  • Kawasaki Shoji
    Graduate School of Electrical and Electronics Engineering, University of Fukui
  • Matsuki Junya
    Graduate School of Electrical and Electronics Engineering, University of Fukui
  • Baba Junpei
    School of Engineering, The University of Tokyo
  • Yokoyama Akihiko
    School of Engineering, The University of Tokyo
  • Hojo Masahide
    Dept. of Electrical and Electronic Engineering, The University of Tokushima
  • Wakao Shinji
    School of Advanced Science and Engineering, Dept. of Electrical Eng. and Bioscience, Waseda University
  • Mori Kenjiro
    Distribution Engineering Group, Distribution Department, Tokyo Electric Power Company
  • Fuwa Yoshiaki
    Distribution Engineering Group, Distribution Department, Tokyo Electric Power Company

Bibliographic Information

Other Title
  • 分散型電源連系課題解決支援実験システム(ANSWER)の構築と分散型電源と配電ネットワークとの協調運用形態の実験検証
  • ブンサンガタ デンゲンレンケイ カダイ カイケツ シエン ジッケン システム ANSWER ノ コウチク ト ブンサンガタ デンゲン ト ハイデン ネットワーク ト ノ キョウチョウ ウンヨウ ケイタイ ノ ジッケン ケンショウ

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Description

Recently, total number of distributed generators (DGs) such as photovoltaic generation system and wind power generation system connected to an actual distribution network increases drastically. The distribution network connected with many distributed generators must be operated keeping reliability of power supply, and power quality. In order to accomplish active distribution network operation to take advantage of many connections of DGs, a new coordinated operation of distribution system with many connections of DGs is necessary. So far, the authors have proposed a coordinated operation of distribution network system connected with many DGs by using sectionalizing switches control method, sending voltage control method, computation method of acceptable maximum output of DG and determination method of optimal smoothing time constant of wind power generation system with storage battery. In this paper, the authors develop an experiment of scaled-down three-phase distribution system with distributed generators in order to check the validity of the proposed approach.

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