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Body-centric ultra-wideband multi-channel characterisation and spatial diversity in the indoor environment

机译:室内环境中以人体为中心的超宽带多通道表征和空间分集

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摘要

This study presents the findings of an empirical channel characterisation for an ultra-wideband off-body optic fibre-fed multiple-antenna array within an office and corridor environment. The results show that for received power experiments, the office and corridor were best modelled by lognormal and Rician distributions, respectively [for both line of sight (LOS) and non-LOS (NLOS) scenarios]. In the office, LOS measurements for tmean and tRMS were both described by the Normal distribution for all channels, whereas NLOS measurements for tmean and tRMS were Nakagami and Weibull distributed, respectively. For the corridor measurements, LOS for tmean and tRMS were either Nakagami or normally distributed for all channels, with NLOS measurements for tmean and tRMS being Nakagami and normally distributed, respectively. This work also shows that achievable diversity gain was influenced by both mutual coupling and cross-correlation co-efficients. Although the best diversity gains were 1.8 dB for three-channel selective diversity combining, the authors present recommendations for improving these results.
机译:这项研究提出了在办公室和走廊环境中对超宽带离体光纤馈电多天线阵列进行经验信道表征的发现。结果表明,对于接收功率实验,办公室和走廊分别通过对数正态分布和Rician分布进行建模[对于视线(LOS)和非LOS(NLOS)场景]。在办公室中,t mean 和t RMS 的LOS测量均通过所有通道的正态分布描述,而tmean和t RMS 的NLOS测量sub>分别是Nakagami和Weibull。对于走廊测量,tmean和t RMS 的LOS为Nakagami或正态分布于所有通道,而t mean 和t RMS 分别是Nakagami和正态分布。这项工作还表明,可实现的分集增益受互耦系数和互相关系数的影响。尽管三通道选择性分集组合的最佳分集增益为1.8 dB,但作者提出了改善这些结果的建议。

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