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Modeling and Analysis of Printed-Circuit Tensor Impedance Surfaces

机译:印刷电路张量阻抗表面的建模与分析

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Analysis of a printed-circuit tensor impedance surface (PCTIS) is presented. The surface consists of a periodic, subwavelength-patterned metallic cladding printed over a grounded dielectric substrate. First, the dispersion equation for an idealized tensor impedance boundary condition is derived by expressing the field in terms of TE and TM waves. A similar method is then used to find the dispersion equation of the PCTIS consisting of a tensor sheet impedance, which models the metallic cladding, over a grounded dielectric substrate. In addition, a method for extracting the tensor sheet impedance of a periodic, metallic cladding printed over a grounded dielectric substrate, is reported. It involves performing two normal-incidence scattering simulations using a full-wave electromagnetic solver. The method is strictly valid when the ground plane is sufficiently far from the metallic cladding to avoid evanescent-wave interactions. By combining the tensor sheet extraction method with the dispersion equation, the full dispersion characteristics of the PCTIS are analytically predicted in the homogenous limit. The results are verified through full-wave eigenmode simulations.
机译:提出了印刷电路张量阻抗表面(PCTIS)的分析。该表面由印刷在接地的电介质基板上的周期性,亚波长图案的金属覆层组成。首先,通过用TE和TM波表示磁场,推导出理想张量阻抗边界条件的色散方程。然后使用一种类似的方法来查找PCTIS的色散方程,该方程由张量片阻抗组成,该张量片阻抗模拟了接地介电基板上的金属包层。另外,报告了一种用于提取印刷在接地的电介质基板上的周期性金属包层的张量片阻抗的方法。它涉及使用全波电磁求解器执行两个法向入射散射模拟。当接地平面距离金属包层足够远以避免瞬逝波相互作用时,此方法严格有效。通过将张量表提取方法与色散方程相结合,可以在均匀极限内分析预测PCTIS的全部色散特性。通过全波本征模仿真验证了结果。

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