Reflect-array study with shorted slotted ground plane using microtrip patches or rings as cell elements

S. Latif, C. Shafai, L. Shafai
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Abstract

Reflect-array antenna was introduced to replace parabolic reflectors, as they offer many advantages including beam steering, ease of fabrication, lightweight, etc. [1]. The electromagnetic energy should reflect back when it hits the reflect-array surface. It has become very popular due to the advancement of printed antennas because of low surface profile, small mass and low cost [2, 3]. We have been studying microstrip rings as the cell element to obtain a reflect-array. When there is an aperture on the ground plane, the distance of the rings can be adjusted to obtain appropriate phases so that the electromagnetic energy can propagate through the ground plane or reflect back. The aperture size is another important parameter to obtain the reflection. When the aperture on the ground plane is partially shorted using a micrsotrip, the length of the aperture is essentially reduced, and the reflection from the structure can be achieved. In this paper, simulation results of the unit cell of a reflect-array are discussed, which is based on square rings with an aperture on the ground plane. The effects of the aperture size and the use of shorting strips are presented. The cell is in an infinite array environment. Simulations were carried out in Ansoft HFSS, version 12.
以微行程片或环为单元元的短槽接平面反射阵研究
反射阵列天线被引入来取代抛物面反射器,因为它们具有许多优点,包括波束转向,易于制造,重量轻等[1]。当电磁能量到达反射阵列表面时,它应该被反射回来。由于印刷天线的进步,由于低表面轮廓,小质量和低成本,它已经变得非常流行[2,3]。我们一直在研究微带环作为单元单元来获得反射阵列。当地平面上有孔径时,可以调节环的距离以获得合适的相位,使电磁能通过地平面传播或反射回来。孔径大小是获得反射的另一个重要参数。当使用微行程缩短接地面上的孔径时,孔径的长度基本上减少,并且可以实现结构的反射。本文讨论了基于地平面上有孔径的方形环的反射阵列单元格的仿真结果。介绍了孔径大小和短带的使用对其性能的影响。单元处于无限阵列环境中。在Ansoft HFSS版本12中进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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