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Electromagnetic Shielding Analysis of Multiple Slits on a Metal Plate Coated With a Ferrite Sheet

机译:涂有铁氧体薄板的金属板上的多个缝隙的电磁屏蔽分析

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This paper presents a rigorous analysis of electromagnetic (EM) field penetration into multiple slits on a metal plate loaded with a ferrite sheet having frequency-dependent complex permeability. The Fourier transform is used to represent the EM fields in the spectral domain, and the mode-matching technique is enforced to obtain a solution in rapidly converging series form, leading to numerically efficient results. Electric and magnetic shielding characteristics in near-field region are investigated over wideband frequency range in terms of the presence or absence of a ferrite sheet with frequency-dependent magnetic permeability. It is observed that the shielding characteristics of electric and magnetic fields are different from each other at the low-frequency range in the near-field region. The number of slits and the ferrite sheet have significant influence on the magnetic shielding performance. In addition, the effect of nonperiodic multiple slits on the shielding effectiveness is examined. The proposed method is verified by comparing the results with those of a commercial EM solver, and good agreement is achieved using the feature selective validation.
机译:本文对电磁场(EM)穿透到载有铁氧体片的金属板上的多个狭缝进行了严格的分析,该铁氧体片的频率取决于复磁导率。傅立叶变换用于表示谱域中的EM场,并且强制实施模式匹配技术以快速收敛的级数形式获得解,从而获得数值上有效的结果。根据是否存在具有随频率变化的导磁率的铁氧体片,研究了在宽带频率范围内近场区域的电屏蔽和磁屏蔽特性。可以看出,在近场区域的低频范围内,电场和磁场的屏蔽特性互不相同。缝隙的数量和铁氧体片对磁屏蔽性能有重要影响。另外,检查了非周期性的多个缝隙对屏蔽效果的影响。通过将结果与商用EM求解器的结果进行比较来验证所提出的方法,并使用特征选择验证实现了良好的一致性。

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