开关电源铁氧体铁芯电感器件宽带PEEC模型研究

Hao Feng, Yujin Liu, Junping He
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引用次数: 0

摘要

电感器在电力电子中是至关重要的,由于芯材的频率依赖性和高频寄生耦合,电感器的实际行为可能与其标称行为有很大不同。电感器宽带部分元件等效电路(PEEC)建模的主要困难是磁性材料的存在。本文通过用一个根据边界条件确定的虚拟的自由空间磁流分布来代替被磁化物体来解决这一电磁难题。基于所提出的PEEC方法,建立了开关电源中环形电感器和印制电路板EI核心平面电感器的宽带模型,以预测其频率相关阻抗。用有限元仿真和实测结果验证了该方法的有效性。这三种模型对200MHz以上频率的阻抗表现出良好的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Broadband PEEC Model Study on Ferrite-core Inductive Devices of Switched Mode Power Supply
Inductors are crucial in power electronics and the real behavior of an inductor can differ significantly from its nominal behavior due to the frequency-dependency of core materials and parasitic couplings at high frequencies. The main difficulty of the broadband partial element equivalent circuit (PEEC) modeling for an inductor is the presence of magnetic materials. In this paper, this electromagnetic difficulty is solved by replacing the magnetized object with a fictitious magnetic current distribution in free space, which is determined according to the boundary conditions. Based on the PEEC method proposed, broadband models of a toroidal inductor and a printed circuit board (PCB) EI core plane inductor in switched mode power supply are established to predict their frequency-dependent impedance. This approach is verified with the results gotten using the finite-element method simulations and measurements. The three models show good agreement for impedance above 200MHz frequency.
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