Path loss models for indoor off-body communications at 60 GHz

S. Cotton, Young Jin Chun, W. Scanlon, G. Conway
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引用次数: 5

Abstract

In this paper we present some empirically obtained path loss models for 60 GHz line of sight (LOS) and non-LOS (NLOS) off-body communications within indoor environments. In particular, we considered signal propagation from a chest worn millimeter wave transmitter and a hypothetical base station in both a laboratory and seminar room. It was found that shadowing of the direct signal path caused by the wearer's body increased the path loss by more than 20 dB at the reference distance (1 m). The fluctuation of the path loss at each of the measurement locations is modeled as a zero mean Gaussian distributed random variable and a linear relationship between the separation distance and standard deviation of the path loss variation is deduced.
60 GHz室内离体通信的路径损耗模型
本文给出了室内环境下60 GHz视距(LOS)和非视距(NLOS)离体通信的路径损耗模型。特别地,我们考虑了在实验室和研讨室中从佩戴在胸前的毫米波发射机和假设的基站发出的信号传播。研究发现,在参考距离(1 m)处,佩戴者身体对直接信号路径的遮挡使路径损耗增加了20 dB以上。将每个测量位置的路径损耗波动建模为零均值高斯分布随机变量,并推导出距离与路径损耗变化标准差之间的线性关系。
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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