Harmonics Compensation in Three-Phase Four-Wire Distribution Feeders With a Four-Leg Structured Active Power-Line Conditioner
Harmonics Compensation in Three-Phase Four-Wire Distribution Feeders With a Four-Leg Structured Active Power-Line Conditioner
カテゴリ: 論文誌(論文単位)
グループ名: 【D】産業応用部門(英文)
発行日: 2020/09/01
タイトル(英語): Harmonics Compensation in Three-Phase Four-Wire Distribution Feeders With a Four-Leg Structured Active Power-Line Conditioner
著者名: Yuya Kihara (Yamaguchi University), Seita Hikosaka (Yamaguchi University), Hiroaki Yamada (Yamaguchi University), Toshihiko Tanaka (Yamaguchi University), Fuka Ikeda (National Institute of Technology, Ube College), Masayuki Okamoto (National Institute of
著者名(英語): Yuya Kihara (Yamaguchi University), Seita Hikosaka (Yamaguchi University), Hiroaki Yamada (Yamaguchi University), Toshihiko Tanaka (Yamaguchi University), Fuka Ikeda (National Institute of Technology, Ube College), Masayuki Okamoto (National Institute of Technology, Ube College), Seong Ryong Lee (Kunsan National University)
キーワード: three-phase four-wire distribution feeders,four-leg structured active power-line conditioner,harmonics compensation,constant dc-capacitor voltage-control
要約(英語): This article deals with harmonics compensation with a four-leg structured active power-line conditioner (APLC) in three-phase four-wire distribution feeders (TPFWDFs). The instantaneous power flowing into the APLC shows that the constant DC-capacitor voltage-control (CDCVC) of the four-leg structured APLC obtains balanced and sinusoidal source currents with a unity power factor (PF) at the point of common coupling (PCC). A reduced-scale experimental model is constructed and tested. Experimental results demonstrate that balanced and sinusoidal source currents with a unity PF at the PCC are achieved with the CDCVC-based method of the four-leg structured APLC, compensating harmonic, unbalanced-active, and reactive currents in TPFWDFs.
本誌: IEEJ Journal of Industry Applications Vol.9 No.5 (2020)
本誌掲載ページ: 605-606 p
原稿種別: 研究開発レター/英語
電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejjia/9/5/9_605/_article/-char/ja/
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