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A rigorous cell-network model for computing the transmission scattering properties of finite frequency selective surfaces

机译:严格的单元网络模型,用于计算有限频率选择表面的透射和散射特性

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The problem of time harmonic electromagnetic scattering from, and transmission through, finite frequency selective surfaces (FSSs) has been formulated by an extension of the equivalence principle. The basic equivalence situation for three regions (the FSS plus two exterior regions) is extended in the FSS region to a cell level. The FSS is assumed to be constructed of a two-dimensional array of contiguous cells, each of which is identical. A network representation is constructed, via the method of moments, for each region in terms of admittance matrices. Complete characterization of the FSS region involves only the admittance matrix of a single cell, which, in general, is much smaller than the FSS. The cell admittance is calculated by the finite element method using tetrahedral edge elements. The exterior and cavity admittance matrices are dense and use integral equation formulations. This approach results in a significant reduction in the computer time required to accurately characterize the FSS region, which can also consist of inhomogeneous and anisotropic materials.
机译:通过扩展等效原理已经提出了从有限频率选择表面(FSS)传播和通过其传播的时间谐波电磁散射问题。三个区域(FSS加上两个外部区域)的基本等效情况在FSS区域中扩展到了单元级别。假设FSS由连续单元的二维阵列构成,每个单元都是相同的。通过矩量法,根据导纳矩阵为每个区域构造一个网络表示。 FSS区域的完整表征仅涉及单个单元的导纳矩阵,该矩阵通常比FSS小得多。通过使用四面体边缘元素的有限元方法来计算细胞导纳。外部和腔的导纳矩阵很稠密,并使用积分方程公式表示。这种方法可显着减少精确表征FSS区域所需的计算机时间,该区域也可以由不均匀和各向异性的材料组成。

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