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A Numerically Efficient Technique for the Analysis of Metamaterial- and Metasurface-based Antennas

机译:一种基于超材料和基于超表面的天线分析的数值高效技术

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Metasurface-based antennas have received considerable recent attention because they are not only useful for designing new antennas, but for improving the performance of legacy design as well. However, these antennas are usually multiscale in nature and they typically require an inordinately long time when simulated by using commercial solvers. In this work, we present a new approach for analyzing antennas that utilize Metasurfaces (MTSs) and Metamaterial (MTMs). The proposed method departs from the widely used technique based on an anisotropic impedance representation of the surface and relies on an equivalent medium approach instead. The principal advantage of this approach is that such an equivalent medium representation can be conveniently used in commercial EM solvers. Several illustrative examples are presented in the paper to demonstrate the efficacy of the present approach when simulating MTS- and MTM-based antennas.
机译:基于超表面的天线最近受到了相当大的关注,因为它们不仅对设计新天线有用,而且对改善传统设计的性能也很有用。然而,这些天线通常本质上是多尺度的,并且当使用商业求解器进行仿真时,它们通常需要非常长的时间。在这项工作中,我们提出了一种用于分析利用超颖表面(MTS)和超材料(MTM)的天线的新方法。所提出的方法不同于基于表面各向异性阻抗表示的广泛使用的技术,而是依赖于等效介质方法。这种方法的主要优点是可以在商业EM解算器中方便地使用这种等效的介质表示形式。本文中提供了几个说明性示例,以演示本方法在模拟基于MTS和MTM的天线时的有效性。

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