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Bandwidth enhancement of electrically large shaped-beam reflectarray by modifying the shape and phase distribution of reflective surface

机译:通过修改反射表面的形状和相位分布来增强电大形波束反射阵列的带宽

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摘要

In this paper the bandwidth performance of areflectarray antenna to obtain fixed shaped-beam radiation pattern is studied. In order to achieve this purpose two parameters including the curvature of reflective surface and the phase distribution of reflective surface in the whole frequency band are simultaneously manipulated. Phase synthesis procedure is used to analyze the reflectarray. The particle swarm optimization is also used for obtaining the shaped-beam radiation pattern in the whole frequency band. It is shown that the bandwidth of a large reflectarray is considerably enhanced by decreasing the path length difference between phase center of the feed antenna and each point of the reflective surface. To verify this purpose, a shaped-beam reflectarray with concave reflective surface has been designed and simulated in the X-band with the commercial full-wave electromagnetic software, CST Microwave Studio and results to about 17% bandwidth for the stable cosecant square radiation pattern and pencil beam radiation pattern in E and H planes respectively. (C) 2016 Published by Elsevier GmbH.
机译:本文研究了反射阵列天线获得固定形波束辐射方向图的带宽性能。为了实现该目的,同时操纵包括反射表面的曲率和整个频带上的反射表面的相位分布在内的两个参数。相位合成程序用于分析反射阵列。粒子群优化还用于获得整个频带中的成形光束辐射图。结果表明,通过减小馈电天线相位中心与反射表面各点之间的路径长度差,可以大大提高大型反射阵列的带宽。为了验证这一目的,已经设计了带有凹面反射面的异型束反射阵列,并使用商用全波电磁软件CST Microwave Studio在X波段中进行了模拟,结果获得了约17%的带宽,从而形成了稳定的余割平方辐射图和分别在E和H平面上的铅笔束辐射方向图。 (C)2016由Elsevier GmbH发布。

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