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Analytical model of a metasurface consisting of a regular array of sub-wavelength circular holes in a metal sheet

机译:由金属薄板上规则的亚波长圆形孔阵列组成的超表面的分析模型

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摘要

In this work, a metasurface consisting of an array of circular holes in a metal conducting sheet with a sub-wavelength periodicity is considered. The surface partially reflects the incident field according to the shape and geometrical dimensions of the inclusions and, due to this property, is widely employed in antenna systems to improve the radiation pattern of regular radiators. Since the reflection properties of the metasurface are determined by the current density distribution on the metal, we inspect this distribution and coherently develop a new, easy, and accurate analytical model to describe the grid impedance of the metasurface. In order to validate the model, we compare the reflection coefficient of the array obtained through our approach to the one resulting from full-wave numerical simulations and to other accurateanalytical methods available in the open technical literature.
机译:在这项工作中,考虑了由具有亚波长周期性的金属导电片中的圆孔阵列组成的超表面。该表面根据内含物的形状和几何尺寸部分地反射入射场,并且由于该特性,该表面被广泛用于天线系统中以改善常规辐射器的辐射方向图。由于超表面的反射特性是由金属上的电流密度分布决定的,因此我们检查了这种分布,并连贯地开发了一个新的,简单而准确的分析模型来描述超表面的网格阻抗。为了验证模型,我们将通过我们的方法获得的阵列的反射系数与全波数值模拟产生的反射系数以及开放技术文献中可用的其他精确分析方法进行比较。

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