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Design of an ultra-thin antenna with low RCS based on phase gradient metasurface

机译:基于相位梯度超表面的低RCS超薄天线设计

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This article proposes a novel design of an ultra-thin surface wave antenna. A simple structure of unit cell is utilized to provide sufficient phase gradient along the interface, then a low profile antenna working in the millimeter wave band is designed based on the metasurface and the generalized reflection law. The feeding part integrated on the same plane is to provide the quasiplane wave for a good match with the radiation part. The proposed antenna has a bandwidth of -10dB return loss from 33.3GHz to 36.8GHz, and radiates efficiently in the working band. Owing to the difference of the reflection phase from each unit cell, the scattered wave will not be converged to one direction efficiently, so the backward reflection is reduced compared to the conventional microstrip antenna array, resulting in radar cross section (RCS) reduction.
机译:本文提出了一种超薄表面波天线的新颖设计。利用单位单元的简单结构沿界面提供足够的相位梯度,然后基于超表面和广义反射定律设计工作在毫米波段的低剖面天线。集成在同一平面上的馈电部分将提供准平面波,以便与辐射部分很好地匹配。所提出的天线在33.3GHz至36.8GHz范围内具有-10dB回波损耗的带宽,并在工作频带内有效辐射。由于来自每个单位单元的反射相位的差异,散射波将不会有效地会聚到一个方向,因此与传统的微带天线阵列相比,后向反射得以减小,从而导致雷达截面(RCS)减小。

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