A leakage-inductance-based ZVS two-inductor boost converter with integrated magnetics

Quan Li;P. Wolfs
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引用次数: 25

Abstract

A two-inductor boost converter topology has conduction loss and transformer utilization advantages in converting low-voltage higher current inputs to high output voltages. In this letter, a new zero-voltage switching (ZVS) two-inductor boost converter with integrated magnetics is proposed. In the new topology, the two current source inductors, a resonant inductor and a two-winding transformer, are integrated into one single magnetic core with three windings. Two windings simultaneously perform the functions of the current source inductors and the transformer primary. The transformer leakage inductance forms the resonant inductance. This leads to a much more compact converter design with a significant reduction in the number of core and winding components. A theoretical analysis establishes the operating point of the ZVS converter. Both of the theoretical and experimental waveforms, including flux waveforms for the legs of the integrated core structure, are presented at the end of the letter.
一种基于漏电感的集成磁器件ZVS双电感升压变换器
双电感器升压转换器拓扑在将低电压高电流输入转换为高输出电压方面具有导通损耗和变压器利用的优点。在这封信中,提出了一种新的零电压开关(ZVS)双电感升压转换器与集成磁性。在新的拓扑结构中,两个电流源电感器,一个谐振电感器和一个双绕组变压器,集成到一个具有三个绕组的单个磁芯中。两个绕组同时执行电流源电感器和变压器初级的功能。变压器泄漏电感形成谐振电感。这导致了更紧凑的转换器设计,并显著减少了铁芯和绕组部件的数量。理论分析确定了ZVS变换器的工作点。理论和实验波形,包括集成堆芯结构腿的磁通波形,都在信的末尾给出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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