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An efficient technique for analyzing multiple frequency-selective-surface screens with dissimilar periods

机译:分析周期不同的多个频率选择性表面屏幕的有效技术

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摘要

This Letter presents an efficient technique for analyzing multiple frequency-selective surfaces (FSSs) with noncommensurate periodicities based on the discrete plane-wave spectrum (DPWS) expansion method. In this method, the tangential electric fields at the interfaces of the screens are first expanded in a set of transverse electric and transverse magnetic waves, and the responses of the individual FSS screens are derived for each of these waves. The transmission and reflection characteristics of the composite structure are then computed in an iterative manner, circumventing the need for matrix inversions, which can be extremely expensive in terms of CPU time and memory for noncommensurate FSSs. Representative numerical examples are presented to illustrate the computational advantage gained by using the proposed approach as opposed to the conventional generalized scattering matrix technique.
机译:这封信提出了一种有效的技术,用于基于离散平面波谱(DPWS)扩展方法来分析具有不相称周期性的多个频率选择表面(FSS)。在这种方法中,首先在一组横向电磁波和横向电磁波中扩展屏幕界面处的切向电场,然后针对每个这些波得出单独的FSS屏幕的响应。然后,以迭代方式计算复合结构的透射和反射特性,从而避免了对矩阵求逆的需求,矩阵反求在CPU时间和非同等FSS的内存方面可能非常昂贵。提出了具有代表性的数值示例,以说明与常规的广义散射矩阵技术相比,使用所提出的方法所获得的计算优势。

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