Measurement characterization of 37.2GHz indoor radio channels in terms of antenna radiation patterns and threshold levels

L. Talbi, G. Delisle, K. Hettak
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Abstract

In order to construct efficient communication systems for indoor radio networks and personal communication network (PCN) systems, a great deal of effort has been expended and considerable quantities of information obtained on the propagation of radio transmissions, mostly in the form of experimental measurements. This paper intends to add some experimental results conducted at 37.2GHz and aiming the investigation of the effect of the antenna radiation patterns on the indoor line of sight propagation channel. For narrowband results, cumulative distribution functions for the received signal envelope are given to determine multipath characteristics in a number of indoor microcell channels employing directional and omnidirectional antennas. A model for assessment of the unit-cell size, based on experimental data, is reported. In addition, wideband results have been performed using the same type of antennas and the RMS delay spreads have been obtained for different threshold levels.
37.2GHz室内无线电信道在天线辐射方向图和阈值水平方面的测量特性
为了构建高效的室内无线网络和个人通信网络(PCN)系统的通信系统,人们付出了大量的努力,并获得了大量关于无线电传输传播的信息,这些信息大多以实验测量的形式存在。本文拟增加一些在37.2GHz下进行的实验结果,旨在研究天线辐射方向图对室内视线传播信道的影响。对于窄带结果,给出了接收信号包络的累积分布函数,以确定采用定向和全向天线的许多室内微蜂窝信道的多径特性。本文报道了一种基于实验数据的单元胞大小评估模型。此外,使用相同类型的天线进行了宽带结果,并获得了不同阈值水平下的RMS延迟扩展。
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