Medium range backhaul feasibility under NLOS conditions at 60 GHz

Mustapha Bennai, L. Talbi, J. Le Bel, K. Hettak
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引用次数: 2

Abstract

This paper presents and analyzes the results of medium range propagation channel measurements with and without the presence of a reflecting obstacle at 60 GHz. Root-Mean-Square (RMS) delay spread, path loss and signal intensity are investigated. A strong relationship is found between the use of a reflector and the received signal strength. An RMS delay spread is established to help identify a possibility for InterSymbol Interference (ISI) to occur. Based on measurements held in the intersection of two corridors under non-line-of-sight (NLOS) scenario without reflector, we noticed that diffracted waves from the propagation environment were present. However, a very high loss of received signal power is noticed. In the meantime, it is found that the presence of adequate passive reflectors, strategically located, will help minimize delay spread and maximize the received energy level in NLOS scenarios. Finally, the results achieved using a reflector can be used to help design 60 GHz medium range NLOS backhaul.
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60 GHz NLOS条件下中程回程的可行性
本文介绍并分析了在有反射障碍物和没有反射障碍物的情况下对60 GHz中距离传播信道的测量结果。研究了均方根(RMS)延迟扩展、路径损耗和信号强度。在反射器的使用和接收到的信号强度之间有很强的关系。建立RMS延迟扩展以帮助识别码间干扰(ISI)发生的可能性。在没有反射器的非视距(NLOS)情况下,在两条走廊的交叉处进行测量,我们注意到来自传播环境的绕射波存在。然而,接收信号功率的损失非常高。同时,研究发现,在NLOS情况下,适当位置的被动反射器的存在将有助于最小化延迟扩散和最大化接收能级。最后,利用反射器获得的结果可用于帮助设计60 GHz中距离NLOS回程。
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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