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Characteristics of the polarised off-body channel in indoor environments

机译:室内环境中极化体外通道的特性

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摘要

This paper addresses the depolarisation effect in off-body body area networks channels, based on measurements performed at 2.45 GHz in an indoor environment. Seven different scenarios, involving both static and dynamic users, were considered, taking a statistical perspective. The analysis of the cross-polarisation discrimination is performed, as well as the analysis of path loss in co- and cross-polarised channels. Results show a strong dependence of the cross-polarisation discrimination and of channel characteristics on the polarisation and propagation condition, i.e. line-of-sight (LoS), non-LoS or quasi-LoS. Distance, varied between 1 and 6 m in the considered scenarios, is observed to have very little impact on the cross-polarisation discrimination. In the considered dynamic scenario, the channel is characterised by lognormal-distributed shadowing and Nakagami-distributed multipath fading. Parameters of the Nakagami distribution have essentially different values in the co- and cross-polarised channels, showing a trend towards Rice in the former and Rayleigh in the latter. Based on results, a model is proposed for a dynamic off-body channel.
机译:本文基于在室内环境中以2.45 GHz进行的测量,解决了人体体外局域网通道中的去极化效应。从统计角度来看,考虑了涉及静态和动态用户的七个不同方案。进行交叉极化鉴别的分析,以及共极化和交叉极化通道中的路径损耗分析。结果表明交叉极化鉴别和信道特性强烈依赖于极化和传播条件,即视线(LoS),非LoS或准LoS。在所考虑的情况下,距离在1至6 m之间变化,观察到对交叉极化辨别的影响很小。在所考虑的动态场景中,信道的特征在于对数正态分布的阴影和Nakagami分布的多径衰落。 Nakagami分布的参数在共极化和交叉极化通道中具有实质上不同的值,显示前者趋向莱斯,后者趋向于瑞利。基于结果,提出了一种动态体外通道模型。

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