基于栅格反射面和八木天线馈源修正的栅格天线2.4 GHz优化

Cahyo Muvianto, Pahrurrozi, Suthami Ariessaputra, Sareh Malekpour
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引用次数: 2

摘要

Wi-Fi抛物线网格是点对点或点对多点链路的最佳远程天线。抛物线网格具有非常高的增益和非常窄的波束宽度,这使其成为此类应用的首选天线。然而,可以增加天线参数,如增益和波束方向图。优异的前后比有助于减少不必要的干扰。本文的目的是研究馈电天线的布置对抛物线网格天线性能的影响。通过重新布置不同类型的反射器和进料点,利用CST模拟进行了解析和数值优化。仿真过程有助于确定反射器的类型和馈入点,产生更高的增益和高等级的光束方向图。然后,天线的制作、设计和测量是接下来的步骤。反射器的修改包括网格段数量的变化,以及在反射器的中心添加固体材料。馈点修改使用五元八木天线。反射面和馈电点优化的测量结果使普通网格抛物面Wi-Fi天线的增益参数从24 dBi提高到26.02 dBi。辐射方向图是定向的,水平极化波束宽度为7°,垂直极化波束宽度为18°,得到的天线带宽约为57 MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Grid Antenna 2.4 GHz Using Grid Reflector and Yagi Antenna's Feed Modification
The Wi-Fi parabolic grid is the best long range antenna for point to point or point to multi point links. The parabolic grid has a very high gain and a very narrow beamwidth which makes it a favorite antenna for such applications. However, it is possible to increase the antenna parameter such as gain and beam pattern. The excellent front-to-back ratio helps to reduce unwanted interference. The purpose of this work is to investigate how the arrangement of feeding antennas can affect the parabolic grid antenna performance. The optimization has been performed analytically and numerically using CST simulation via re-arranging different types of reflectors and feeding points. Simulation process helps to determine the type of the reflector and the feeding point that produce higher gain and a high-grade beam pattern. Afterwards, fabrication the design and measuring the antenna are the following steps. The reflector modifications include the changes in the number of the grid segments, and adding a solid material at the center of the reflector. The feed point modification uses five elements yagi antennas. The measurement results of the reflector and feed point optimization has improved the gain parameter from 24 dBi to 26.02 dBi for normal grid parabolic Wi-Fi antennas. The radiation pattern is directional with a beamwidth of 7° in horizontal polarization and a beamwidth of 18° in vertical polarization while the obtained antenna bandwidth is about 57 MHz.
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