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Filtering characteristics of FSS for realizing perfect magnetic conductor without frequency dependence

机译:FSS的滤波特性可实现不依赖频率的完美磁导体

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This paper focuses on an AMC (Artificial Magnetic Conductor) composed of a FSS (Frequency Selective Surface) and the ground plane, and describes the ideal filtering characteristics for realizing PMC (Perfect Magnetic Conductor) which is independent of frequency. The ideal filtering characteristics is derived from the condition for realizing the PMC in all the frequency using the relational expression between the filtering characteristics of a FSS and the PMC characteristics of the AMC. As the result, it is clarified that the ideal filter is a band pass filter. It is also shown that the optimum distance h between a FSS and the ground plane is a quarter wavelengths at the band pass frequency. On the other hand, it is found that the phase rotation direction is opposite compared with the conventional band pass frequency. It is found that the ideal filtering characteristics can be realized by using negative index material.
机译:本文重点介绍由FSS(频率选择表面)和地平面组成的AMC(人工磁导体),并描述了实现与频率无关的理想PMC(完美磁导体)的理想滤波特性。理想的滤波特性是通过使用FSS的滤波特性与AMC的PMC特性之间的关系表达式从实现所有频率的PMC的条件中得出的。结果,澄清了理想滤波器是带通滤波器。还表明,FSS与接地平面之间的最佳距离h是带通频率下的四分之一波长。另一方面,发现与传统的带通频率相比,相位旋转方向相反。发现使用负折射率材料可以实现理想的滤波特性。

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