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Full-Wave Synthesis of Modulated Metasurface Antennas

机译:调制超表面天线的全波合成

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A full-wave synthesis algorithm for modulated meta-surface antennas is presented. It is able to provide arbitrary radiation patterns, with any polarization. The algorithm does not use the local periodicity approximation, but is directly based on the electric field integral equation (EFIE). Using Fourier-Bessel basis functions (FBBFs), one can efficiently discretize the surface currents. An inverse problem based on the EFIE is then formulated to derive the surface impedance from the knowledge of the currents. It has been observed that the FBBFs are also more suited than the Zernike basis for the surface impedance discretization. In the case of antenna applications, only the visible part of the surface currents spectrum is known from pattern specifications. This visible part can be combined with the near-field of the average reactance (SW contribution) to derive the required impedance boundary condition (IBC); this latter is constrained to be anti-Hermitian as required for implementation in the absence of losses. An example of shaped beam design is presented and numerically validated.
机译:提出了一种用于调制超表面天线的全波合成算法。它能够提供具有任何极化的任意辐射图。该算法不使用局部周期性近似,而是直接基于电场积分方程(EFIE)。使用傅里叶-贝塞尔基函数(FBBF),可以有效地离散表面电流。然后根据EFIE提出反问题,以从电流知识中得出表面阻抗。已经观察到,FBBF也比Zernike基础更适合用于表面阻抗离散化。在天线应用的情况下,从方向图规格中只能知道表面电流频谱的可见部分。该可见部分可以与平均电抗的近场(SW贡献)相结合,以得出所需的阻抗边界条件(IBC)。在没有损失的情况下,根据实施要求,后者必须是反赫尔米特式的。给出了异形梁设计的示例,并进行了数值验证。

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