Using “predictor antennas” for long-range prediction of fast fading for moving relays

M. Sternad, M. Grieger, Rikke Apelfrojd, T. Svensson, Daniel Aronsson, Ana Belen Martinez
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引用次数: 64

Abstract

Channel state information at transmitters is important for advanced transmission schemes. However, feedback and transmission control delays of multiple milliseconds in LTE systems result in severe outdating of this information at vehicular velocities. Channel prediction based on extrapolation of the short-term fading is inadequate in LTE systems at vehicular velocities and high carrier frequencies. We here propose and evaluate a simple scheme which may extend the prediction horizon when used on vehicles: Use an additional antenna, a “predictor antenna”, placed in front of the transmission antennas in the direction of travel. This is of particular interest for use with moving relays: Local access points placed on e.g. buses or trams. A measurement-based study for 20 MHz downlink channels at 2.68 GHz is reported here for both line-of-sight and non-line-of-sight conditions.
利用“预测天线”对移动中继的快速衰落进行远距离预测
发射机的信道状态信息对于先进的传输方案非常重要。然而,在LTE系统中,反馈和传输控制延迟数毫秒会导致这些信息在车辆速度下严重过时。基于短期衰落外推的信道预测在车辆速度和高载波频率的LTE系统中是不够的。我们在此提出并评估了一个简单的方案,该方案可以在车辆上使用时扩展预测范围:使用一个额外的天线,一个“预测天线”,放置在传输天线的前方,在行驶方向上。这对于移动中继的使用是特别有趣的:例如放置在公共汽车或有轨电车上的本地接入点。本文报道了一项基于测量的2.68 GHz 20mhz下行信道的研究,用于视距和非视距条件。
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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