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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Quasi-Direct Method for the Surface Impedance Design of Modulated Metasurface Antennas
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A Quasi-Direct Method for the Surface Impedance Design of Modulated Metasurface Antennas

机译:调制超表面天线的表面阻抗设计的准直接方法

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A new approach is presented for synthesizing modulated metasurface (MTS) antennas (MoMetAs) with arbitrary radiation patterns, assumed to be given in amplitude, phase, and polarization. The MTS is defined on a circular domain and is represented as a continuous sheet transition impedance boundary condition (IBC) on the top of a grounded substrate. The proposed method relies on an entire-domain discretization of the electric field integral equation (EFIE). Via the dyadic Green's function of the grounded substrate, the desired radiation pattern is translated into the visible part of the surface current spectrum, decomposed into entire-domain and orthogonal basis functions, while the invisible part of the spectrum stems from the solution of the unmodulated sheet problem. The EFIE is then inverted to obtain the sheet impedance, which is constrained to be anti-Hermitian, as required for implementation with lossless patches. The efficiency of the method relies on the precomputation of the reaction integrals between three functions: basis functions for currents and impedances and testing functions for fields. The formulation is presented first for the scalar (isotropic) MTS case and then generalized to the tensorial (anisotropic) MTSs. Several radiation patterns are presented and designed successfully. A full-wave method-of-moment code is used to validate the designed MTSs IBC.
机译:提出了一种用于合成具有任意辐射方向图的调制超颖表面(MTS)天线(MoMetAs)的新方法,假定这些辐射方向图的振幅,相位和极化方向均已给出。 MTS在圆形域上定义,并表示为接地基板顶部上的连续薄层转换阻抗边界条件(IBC)。所提出的方法依赖于电场积分方程(EFIE)的全域离散化。通过接地基板的二进格林函数,所需的辐射图转换为表面电流谱的可见部分,分解为全域和正交基函数,而光谱的不可见部分则来自未调制的解工作表问题。然后,将EFIE反相以获得薄层阻抗,根据无损贴片的实现要求,该薄层阻抗被约束为反厄米特式。该方法的效率取决于三个函数之间的反应积分的预计算:电流和阻抗的基本函数以及磁场的测试函数。首先针对标量(各向同性)MTS情况提出该公式,然后将其推广到张量(各向异性)MTS。成功提出并设计了几种辐射图。全波矩方法代码用于验证设计的MTS IBC。

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