平面磁集成结构中等效并联电容的最小化

A. Racasan, C. Munteanu, V. Topa, C. Pacurar, C. Hebedean
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引用次数: 9

摘要

磁平面技术由于其在高频下的高效率和机械稳健性而成为当前设计电磁干扰滤波器的一种有吸引力的解决方案。另一方面,整体结构尺寸减小的大趋势必然导致其结构寄生效应的增加。因此,最小化寄生电容和电感是提高磁性集成结构性能的一个重要问题。为此,本文提出了一种基于优化设计的等效并联电容(EPC)最小化方法。本文描述了作者开发的优化算法,旨在确定结构导体路线的最佳位置,使结构绕组间电容最小化。本文第一部分介绍了本文的理论背景,第二部分给出了优化算法的验证和数值算例,并给出了最后的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimization of the equivalent parallel capacitance in planar magnetic integrated structures
The magnetic planar technology is nowadays an attractive solution for designing the Electromagnetic Interference (EMI) filters due to its efficiency at high frequencies and its mechanical robustness. On the other hand, the general trend of reducing the dimensions of the integrated structures one inherently leads to the increase of their structural parasitic effects. Therefore, the minimization of the parasitic capacitances and inductances represents an important issue for increasing the performances of a magnetic integrated structure. In this light, the paper proposes a method for the minimization of the equivalent parallel capacitance (EPC) of these structures based on optimal design. The paper describes the optimization algorithm developed by the authors designed to determine the optimal placement of the structure's conductor routes that minimize the structural inter-winding capacitance. In the first part of the paper the theoretical background is presented while in the second part the optimization algorithm validation and numerical examples are outlined, followed by the final conclusions.
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