Ka-band antenna development for LMCS applications

L. Shafai, D. Gray, C. Ravipati, M. Barakat, S. Raut, N. Jacobs
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引用次数: 1

Abstract

Local multi-point communication services, LMCS, is targeted for operation around 28 GHz with an initial bandwidth of 1 GHz. Different service scenarios are under investigation, and a preliminary multi-cell configuration assumes four transmitters per site alternating between vertical and horizontal polarizations. The beam widths will, of course, depend on the cell configuration and for the above four sector case will be 90 degrees, limiting the antenna gain. The receiver antenna, at subscriber site, should therefore have higher gains, to compensate for the path loss and attenuations due to foliage, humidity, and multiple reflections. The latter also causes multipath interference, that must be eliminated or reduced to improve the coverage. A convenient approach will be to use narrow beam receiver antennas to block the multipath signals. This, in turn, again results in higher gain receiver antennas. In principle, therefore, the subscriber antennas are expected to be high gain and simultaneously low cost to increase the subscription rate.
用于LMCS应用的ka波段天线开发
本地多点通信服务(LMCS)的目标是在28 GHz左右运行,初始带宽为1 GHz。不同的服务方案正在调查中,初步的多小区配置假设每个站点有四个发射机,在垂直和水平极化之间交替。当然,波束宽度将取决于小区配置,对于上述四个扇区的情况,波束宽度将为90度,限制了天线增益。因此,用户站点的接收天线应该具有更高的增益,以补偿由于树叶、湿度和多次反射引起的路径损耗和衰减。后者还会引起多径干扰,必须消除或减少多径干扰以提高覆盖范围。一种方便的方法是使用窄波束接收天线来阻挡多径信号。这反过来又会产生更高增益的接收天线。因此,原则上,期望用户天线具有高增益和同时低成本,以提高订阅率。
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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