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鉄損の直流磁界バイアス特性を考慮した降圧チョッパ回路用インダクタの低損失設計

鉄損の直流磁界バイアス特性を考慮した降圧チョッパ回路用インダクタの低損失設計

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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

発行日: 2017/05/01

タイトル(英語): Study on Low-loss Design of Inductor Used for Buck-chopper Circuit Based on Iron Loss Characteristic Considering Pre-magnetization

著者名: 三輪 明寛(首都大学東京 電気電子工学専攻 パワーエレクトロニクス研究室),清水 敏久(首都大学東京 電気電子工学専攻 パワーエレクトロニクス研究室),高野 耕至(岩通計測(株)),石井 仁(岩通計測(株))

著者名(英語): Yoshihiro Miwa (Tokyo Metropolitan University, Electrical enginnering, PE Lab.), Toshihisa Shimizu (Tokyo Metropolitan University, Electrical enginnering, PE Lab.), Koushi Takano (Iwatsu Test Instruments Corpolation), Hitoshi Ishii (Iwatsu Test Instruments Corpolation)

キーワード: 鉄損,インダクタ,降圧チョッパ回路,ロスマップ  iron loss,inductor,buck-chopper circuit,loss-map

要約(英語): In order to increase the power density of power converters, reduction of both the loss and the volume of the inductor is essential. However, it is difficult to calculate the iron loss of the inductor with the Steimetz equation or the improved generalized Steinmetz equation (iGSE) because those calculation methods do not consider the loss dependency of pre-magnetization. Hence, we have to repeat the re-design process in order to reduce the inductor loss or the inductor volume. In this paper, the authors propose an accurate loss calculation method for the inductor used in the buck-chopper circuit that is based on the iron loss characteristic considering pre-magnetization. In addition, the overall loss of the inductor is compared among three typical magnetic materials, such as iron powder, sendust, and ferrite, which have different iron loss characteristics for pre-magnetization. As a result, the sendust-based inductor achieves both the same loss reduction and a smaller volume compared with the ferrite-based inductor. From these studies, it is concluded that the proposed loss calculation method, which takes into account the loss dependency of pre-magnetization, is useful for optimum design of the inductors.

本誌: 電気学会論文誌D(産業応用部門誌) Vol.137 No.5 (2017)

本誌掲載ページ: 385-394 p

原稿種別: 論文/日本語

電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejias/137/5/137_385/_article/-char/ja/

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