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Intra-arm Balancing Control for Modular Multilevel Converter with Cell Loading Operated under High Power Imbalances

Intra-arm Balancing Control for Modular Multilevel Converter with Cell Loading Operated under High Power Imbalances

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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: 2024/05/01

タイトル(英語): Intra-arm Balancing Control for Modular Multilevel Converter with Cell Loading Operated under High Power Imbalances

著者名: Takumi Yasuda (Nagaoka University of Technology), Jun-ichi Itoh (Nagaoka University of Technology), Giuseppe Guidi (SINTEF Energy Research), Salvatore D'Arco (SINTEF Energy Research)

著者名(英語): Takumi Yasuda (Nagaoka University of Technology), Jun-ichi Itoh (Nagaoka University of Technology), Giuseppe Guidi (SINTEF Energy Research), Salvatore D'Arco (SINTEF Energy Research)

キーワード: capacitor voltage balancing,intra-arm balancing current,modular multilevel converter (MMC),multiport converter,phase-shifted PWM (PS-PWM)

要約(英語): Multiport converters with a large number of ports have been explored for integrated generation units or batteries. An attractive candidate multiport converter has been developed based on the modular multilevel converter (MMC) with cell loading. Accordingly, this study proposes a control strategy for a multiport converter based on the MMC operated under high power imbalances among cells. Owing to this power imbalance, the multiport converter requires an additional circulating current (intra-arm balancing current) to provide balanced three-phase grid currents and balanced capacitor voltages in all cells. In a previous study, the minimum required intra-arm balancing current was calculated offline and applied according to the loading condition. This method may require a high-capacity memory for the controller. In contract, this study proposes an active control method for minimizing the intra-arm balancing current online. Experimental results reveal that the multiport converter achieves balanced three-phase currents with a total harmonic distortion of 3.13% and balanced capacitor voltages with an error of 0.1% under maximum power imbalance among cells.

本誌: IEEJ Journal of Industry Applications Vol.13 No.3 (2024)

本誌掲載ページ: 317-326 p

原稿種別: 論文/英語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejjia/13/3/13_23009512/_article/-char/ja/

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