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High-Power-Density Three-phase Interleaved Boost Converter with a Novel Coupled Inductor

High-Power-Density Three-phase Interleaved Boost Converter with a Novel Coupled Inductor

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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: 2015/01/01

タイトル(英語): High-Power-Density Three-phase Interleaved Boost Converter with a Novel Coupled Inductor

著者名: Jun Imaoka (Shimane University), Masayoshi Yamamoto (Shimane University), Takahiro Kawashima (Shimane Institute for Industrial Technology)

著者名(英語): Jun Imaoka (Shimane University), Masayoshi Yamamoto (Shimane University), Takahiro Kawashima (Shimane Institute for Industrial Technology)

キーワード: three-phase interleaved boost converter,coupled inductor,maximum output power,magnetic circuit model,high-power-density

要約(英語): Lightweight and compact high-power-density boost converters are required for many applications. This paper presents a three-phase interleaved boost converter with a novel coupled inductor that can achieve high-power-density. The novel coupled inductor is especially suitable for the three-phase interleaved boost converter, from the core structure standpoint. The electrical and magnetic characteristics of the three-phase interleaved boost converter are analyzed in detail to illustrate the effectiveness of the novel coupled inductor. Furthermore, maximum output power calculation methods for the novel coupled inductor and a non-coupled inductor are proposed to demonstrate the performance of high-power-density converters. On the basis of the calculation method, the maximum output power of the proposed coupled inductor is about 2.6 times greater than that of the non-coupled inductor under continuous current mode (CCM) conditions. The compact volume, low-weight characteristics, and the performance of the three-phase interleaved boost converter with the novel coupled inductor are discussed from both the theoretical and experimental standpoints.

本誌: IEEJ Journal of Industry Applications Vol.4 No.1 (2015) Special Issue on Motion Control and its Related Technologies

本誌掲載ページ: 20-30 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/4/1/4_20/_article/-char/ja/

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