首页> 外文期刊>Journal of Infrared, Millimeter, and Terahertz Waves >Analysis of Frequency Selective Surfaces with Metallic and Dielectric Losses at Millimeter Wave Range
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Analysis of Frequency Selective Surfaces with Metallic and Dielectric Losses at Millimeter Wave Range

机译:毫米波范围内具有金属和介电损耗的频率选择表面的分析

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摘要

In this paper, a theoretical analysis of scattering from a doubly frequency selective surfaces (FSS) with dielectric and metallic losses in the millimeter wave range is presented. The theoretical analysis involves the solution of the electric field integral equation relating the induced current in the FSS in the presence of anisotropic dielectric layers. The method of moment is employed to obtain numerical results. The frequency selective surface structure considered is composed by conducting patch elements sandwiched between two anisotropic dielectric layers. Three different anisotropic materials are considered: Epsilam-10, Alumina, and Sapphire. The sapphire presents low losses when compared with the other two dielectric materials. The most common metals, as copper and aluminum, are considered in this analysis. None significant metallic losses were observed for any considered metal. Numerical results are presented for the scattering characteristics and for dielectric and metallic losses parameters.
机译:在本文中,从介电和金属损耗在毫米波范围内的双频选择表面(FSS)散射进行了理论分析。理论分析涉及存在各向异性介电层的情况下与FSS中感应电流相关的电场积分方程的求解。采用矩量法获得数值结果。所考虑的频率选择表面结构是由传导夹在两个各向异性介电层之间的贴片元件组成的。考虑了三种不同的各向异性材料:Epsilam-10,氧化铝和蓝宝石。与其他两种介电材料相比,蓝宝石的损耗低。在此分析中考虑了最常见的金属,如铜和铝。对于任何考虑的金属均未观察到明显的金属损失。给出了散射特性以及介电和金属损耗参数的数值结果。

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