Experimental Multi-objective Evaluation of Radial and Loop Distribution Network Configuration Using Distribution Network Equipment
スポンサーリンク
概要
- 論文の詳細を見る
In this paper, the authors propose an experimental multi-objective evaluation method based on use of distribution network equipment to evaluate distribution network configuration candidates with distributed generators such as photovoltaic generation system and wind power generation system by hourly changing states of sectionalizing switches satisfied with constraints of voltage and line current limit. In the proposed experimental multi-objective evaluation method, the optimal network configuration is determined by using multi-objective evaluation based on total distribution loss rate, maximum voltage total harmonic distortion, and maximum voltage imbalance rate in order to reduce distribution loss and keep power quality. The proposed method is applied to radial and loop distribution network configuration by using an experiment of scaled-down three-phase distribution network with one bank distribution transformer, 5 distribution lines, 5 sectionalizing switches, 12 single-phase loads and 5 DGs.
- JOHN WILEY & SONS INCの論文
- 2008-09-01
著者
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Kawasaki Shoji
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Mori Kenjiro
Distribution Engineering Group Distribution Department Power Network Division Tokyo Electric Power C
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Hayashi Yasuhiro
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Fuwa Yoshiaki
Distribution Engineering Group Distribution Department Power Network Division Tokyo Electric Power C
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SAKAI Shigekazu
Graduate School of Electrical and Electronics Engineering, University of Fukui
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MATSUKI Junya
Graduate School of Electrical and Electronics Engineering, University of Fukui
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Matsuki Junya
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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Sakai Shigekazu
Graduate School Of Electrical And Electronics Engineering University Of Fukui
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MATSUKI Jyunya
Graduate School of Electrical and Electronics Engineering, University of Fukui
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