Performance analysis in a two-phase interleaved DC-DC boost converter with coupled inductors

S. Balci, K. Sabanci
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引用次数: 1

Abstract

In this study, the inductor current ripple and output voltage ripple of a two-phase DC-DC boost converter, circuit performance is investigated according to the direct/inverse coupling effect of the coupled inductors. The coupled inductors are modeled with both power electronics circuit and electromagnetic modeling and by using finite element analysis software (FEA). However, the high frequency inductor designs generally use air-gapped composite ceramic ferrite cores and are designed with powder core (Kool Mu) core structures that eliminate air gap requirements. Thus, the fringe flux, which occurs in the air gaps in ferrite cores and reduces the useful flux, and the bad effects such as overheating and electromagnetic noises (EMI/EMC) in the air gaps in high frequency switching are also reduced. Especially in interleaved power converter designs, the performances of coupled inductors affect the output parameters of the power electronics circuit. Considering energy efficiency and more compact circuit topologies, the modeling and simulation approach of high-frequency inductors using finite element analysis software, which is emphasized in this study, popularly and scientifically guides power electronics circuit designers.
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带耦合电感的两相交错DC-DC升压变换器性能分析
本文研究了一种两相DC-DC升压变换器的电感电流纹波和输出电压纹波,根据耦合电感的正/逆耦合效应研究了电路的性能。结合电力电子电路和电磁建模,利用有限元分析软件对耦合电感进行了建模。然而,高频电感设计通常使用气隙复合陶瓷铁氧体铁芯,并采用粉末铁芯(Kool Mu)铁芯结构设计,消除了气隙要求。从而减少铁氧体铁芯气隙中产生的条纹磁通,降低了铁氧体铁芯的有用磁通,也减少了高频开关气隙中的过热和电磁噪声(EMI/EMC)等不良影响。特别是在交错功率变换器设计中,耦合电感的性能直接影响到电力电子电路的输出参数。考虑到能源效率和更紧凑的电路拓扑结构,本研究强调的高频电感器有限元分析软件建模和仿真方法可以科学地指导电力电子电路设计人员。
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