Adaptive reactance parasitic antenna array

V. Filimonov, A. Mainwaring, I. Shishalov, M. Shuralev, A. Umnov
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引用次数: 1

Abstract

This paper presents initial experiences with the design and implementation of a low-cost beam steering antenna for long-distance WIFI applications. The antenna system has three components: (1) an adaptive parabolic reflector constructed from an array of passive scatterers with tunable reactive loads, (2) an optimizer that runs on a host computer that adjusts the phases and amplitudes of their currents based on received signal strengths, and (3) a minimal hardware controller that interfaces to an array of digital-to-analog converters and varactor bias voltage logic. Experimental measurements confirm electrodynamics simulations and show that highly directional patterns can be realized while controlling orientation in azimuth and elevation. Initial results achieve 18 dBi of gain across an operational 50 degrees of azimuth with a beam width of 10 degrees. Higher gains of 22 dBi or more are possible with reduced range of steerability.
自适应电抗寄生天线阵列
本文介绍了用于远距离WIFI应用的低成本波束转向天线的设计和实现的初步经验。天线系统有三个组成部分:(1)一个自适应抛物面反射器,由一组无源散射体构成,具有可调无功负载;(2)一个运行在主机上的优化器,根据接收到的信号强度调整其电流的相位和幅度;(3)一个最小的硬件控制器,与数模转换器阵列和变容管偏置电压逻辑接口。实验结果证实了电动力学模拟结果,并表明在控制方位和仰角方向的同时,可以实现高度定向的图案。初始结果在50度方位角和10度波束宽度范围内获得18 dBi增益。更高的增益为22 dBi或更高,可以减少转向范围。
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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