Effects On Polarization Characteristics of Off-Body Channels with Dynamic Users

K. Turbic, L. Correia
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引用次数: 5

Abstract

This paper presents an analysis of the depolarization effect in off-body channels, based on a previously developed geometry-based channel model for polarized communications with dynamic users. The model considers Line-of-Sight propagation and components reflected from scatterers distributed on cylinders centered around the user. A mobility model for wearable antennas based on Fourier series is employed to take the effects of user’s motion into account. The focus is on scattered signal components, where the impact of a scatter’s position, its material properties, and the influence of user dynamics on signal depolarization are investigated. It is observed that the wearable antenna motion has a strong impact on the channel’s polarization characteristics, particularly for dynamic on-body placements, such as arms and legs. If the antenna motion is neglected, the error in cross-polarization ratio is greater than 23dB compared to a static approach. The antenna rotation during motion is found to be the dominant factor, while the corresponding displacement can be neglected, with the error not exceeding 1dB. This result justifies the channel model simplification proposed in this paper.
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动态用户对离体信道极化特性的影响
本文基于先前开发的具有动态用户的极化通信的基于几何的信道模型,对离体信道中的去极化效应进行了分析。该模型考虑了视距传播和分布在以用户为中心的圆柱体上的散射体反射的分量。采用基于傅立叶级数的可穿戴天线移动模型,考虑了用户运动的影响。重点是散射信号成分,其中散射的位置,其材料性质的影响,以及用户动态对信号去极化的影响进行了研究。可以观察到,可穿戴天线的运动对信道的极化特性有很强的影响,特别是对于动态的身体放置,如手臂和腿。在忽略天线运动的情况下,与静态方法相比,交叉极化比误差大于23dB。发现天线在运动过程中的旋转是主导因素,而相应的位移可以忽略不计,误差不超过1dB。这一结果证明了本文提出的通道模型简化是正确的。
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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