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首页> 外文期刊>IEEE journal on electromagnetic compatibility practice and applications >Analysis and Design of Stopband FSS Unit Cell on Textile Substrates
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Analysis and Design of Stopband FSS Unit Cell on Textile Substrates

机译:分析和设计的阻带FSS单元细胞纺织品基质

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摘要

A single layer Frequency Selective Surface (FSS) unit cell on a textile substrate with a stopband frequency characteristic is presented in this study. A rectangular unit cell with a slot is designed by using CST and fabricated on jeans and Tyvek substrate. In order to obtain consistency with the measurements, the waveguide method is used in the analysis of the unit cell in simulations. The resonance frequency achieved through simulation for jeans is 9.52 GHz with 56 dB insertion loss, and for Tyvek, it is 9.13 GHz with 55 dB insertion loss, respectively. Three different conductive materials: copper tape, copper thread, and conductive textile are used to fabricate the design, and their performance is compared with simulations. The experimental results confirm that all fabricated designs provide Shielding Effectiveness (SE) of more than 10 dB from 8 GHz to 10 GHz. The frequency behavior of the designs fabricated with copper tape resembles more to the simulated design as compared to other conductors. It provides SE more than 60 dB at 9.52 GHz for jeans and more than 100 dB at 9.13 GHz for Tyvek substrate, respectively.
机译:一层频率选择表面(FSS)单位细胞纺织衬底与阻带频率特性提出了研究。利用CST和捏造的牛仔裤和设计特卫强衬底。与波导测量方法用于单位细胞的分析模拟。通过仿真对牛仔裤与56个9.52 GHzdB插入损耗,特卫强,9.13 GHz分别与55分贝插入损耗。不同的导电材料:铜带,铜线程,导电纺织品用于制造设计,及其性能与模拟。确认所有的设计结果提供屏蔽效能(SE)的多10 dB 8 GHz 10 GHz。行为的设计用铜制作的带类似的模拟设计相比其他导体。比在9.52 GHz的牛仔裤和超过60分贝100分贝9.13 GHz的特卫强衬底,分别。

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