Analysis and design of two-phase zero-voltage switching bidirectional dc-dc converter using coupled inductor

Junyoung Chae, Honnyong Cha, Heung-Geun Kim
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引用次数: 6

Abstract

Recently, multi-phase bidirectional dc-dc converters are widely used in the field of power electronics such as renewable energy systems, hybrid electric vehicles and fuel cell electric vehicles because they have many advantages over singlephase counterparts. The advantages are reduced output current ripple and conduction loss in both switching devices and passive elements. Although output current ripple is reduced significantly due to interleaving effect but the inductor current ripple is not reduced. One of the solutions to this problem is to use coupled inductor. Bidirectional dc-dc converter is able to achieve high efficiency by using negative inductor current for zero-voltage switching. In this paper, two-phase bidirectional dc-dc converter is analyzed and designed for zero-voltage switching by using negative inductor current, which results in less switching loss. Also, a coupled inductor is analyzed and designed for the proposed two-phase soft switching bidirectional dc-dc converter.
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采用耦合电感的两相零电压开关双向dc-dc变换器的分析与设计
近年来,多相双向dc-dc变换器由于具有单相变换器所没有的诸多优点,在可再生能源系统、混合动力汽车和燃料电池汽车等电力电子领域得到了广泛的应用。其优点是减小了开关器件和无源元件的输出电流纹波和传导损耗。由于交错效应,输出电流纹波明显减小,但电感电流纹波没有减小。解决这一问题的方法之一是采用耦合电感。双向dc-dc变换器利用负电感电流进行零电压开关,从而实现了高效率。本文分析并设计了利用负电感电流进行零电压开关的两相双向dc-dc变换器,减小了开关损耗。同时,对所提出的两相软开关双向dc-dc变换器的耦合电感进行了分析和设计。
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