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Fabrication and Evaluation of a Magnetically Coupled EMI Filter Designed With Topology Optimization

机译:用拓扑优化设计的磁耦合EMI滤波器的制造与评价

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摘要

In this article, topology optimization was used to design a magnetic core structure on a p-type filter circuit. The newly designedmagnetic core canceled the noise generated by conducted and induced currents, and as a result, showed dramatically improved electromagnetic interference (EMI) filter performance. Topology optimization was executed using three-dimensional electromagnetic field analysis to capture the magnetic coupling effect. The designed magnetic core was fabricated by machined milling and its performance was evaluated by measuring the noise reduction effect of a simple EMI filter equipped with the core. The EMI filter equipped with our optimized magnetic core showed about 30 dB higher performance than a filter with conventional ring-shaped cores.These results show that the performance of an EMI filter can be improved by optimizing the structure of its magnetic core.
机译:在本文中,拓扑优化用于在P型滤波器电路上设计磁芯结构。 新设计的磁芯取消了通过进行和诱导电流产生的噪声,结果显示,显着改善了电磁干扰(EMI)过滤器性能。 使用三维电磁场分析执行拓扑优化以捕获磁耦合效果。 通过机械研磨制造了设计的磁芯,通过测量配备有核心的简单EMI滤波器的降噪效果来评估其性能。 配备有优化磁芯的EMI滤波器比具有传统环形核的过滤器显示约30dB的性能。这些结果表明,通过优化其磁芯的结构,可以提高EMI滤波器的性能。

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