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Design and optimization of complementary frequency selective surface using equivalent circuit model for wideband EMI shielding

机译:宽带EMI屏蔽等效电路模型的互补频率选择表面的设计与优化

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摘要

The electromagnetic interference (EMI) caused by microwave sources leads to the malfunction and faulty readings of many real-time systems. Hence it is essential to provide EMI shielding for sensitive electronic devices and chambers. An array of periodic elements offers advantages such as transparency and opacity at selected frequencies with a lower weight. In this regard, two closely coupled periodic complementary conducting elements; popularly known as complementary frequency selective surfaces (CFSS) has been analysed for wideband EMI shielding application. A simple equivalent circuit (EC) in conjunction with the transmission line (TL) model is used to analyse the response of the presented element. Further, an extensive parametric study of CFSS aimed at their EC model optimization is presented. The CFSS exhibits a highly stable response with two controllable passbands for normal and oblique incidences. The validity of the proposed method is verified with the full-wave simulations and measured results of the fabricated prototype in a free space measurement setup.
机译:微波源引起的电磁干扰(EMI)导致许多实时系统的故障和故障读数。因此,必须为敏感的电子设备和腔室提供EMI屏蔽。周期元素阵列提供了具有较轻的选择频率的透明度和不透明度的优点。在这方面,两个紧密耦合的周期性互补导电元件;对于宽带EMI屏蔽应用,已经被普遍称为互补频率选择性表面(CFSS)。与传输线(TL)模型一起使用简单的等效电路(EC)来分析所提出的元件的响应。此外,介绍了针对其EC模型优化的CFS的广泛参数研究。 CFSSSS具有高度稳定的响应,具有两个可控通带,用于正常和倾斜的发病率。所提出的方法的有效性通过全波模拟和自由空间测量设置中的制造原型的测量结果验证。

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