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Multiple Antenna Channel Characterisation for Wearable Devices in an Indoor Stairwell Environment

机译:室内楼梯间环境中可穿戴设备的多天线信道表征

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摘要

Any building with more than one floor will have stairwells of some form, yet this area is often neglected inchannel characterization studies. We present fading channel models and examine attainable spatial diversity gains at 90%signal reliability for an off-body multiple antenna system at frequencies of 3, 4, and 5 GHz in an indoor stairwell.Additionally we investigate received power, mutual coupling and channel cross-correlation, signal combining modelling, and antenna spatial diversity; the authors believe this is a valuable advancement beyond current knowledge to understand wearable MIMO technology in stairwell environments. Results reveal that 2-branch spatial diversity techniques offer signal gains over individual single channels in the range of 1.7 to 3.3 dB for LOS and 1.8 to 3.4 dB for NLOS for each of the three investigated frequencies, while 3-channel diversity combining appears to offer no significant additional gain over the 2-branch combinations. Furthermore, for NLOS cases the best fit statistical distribution channel models were found to change when spatial diversity was utilized; this highlights mitigated channel fading and increased signal reliability.
机译:任何一层以上的建筑物都将具有某种形式的楼梯间,但是在通道特性研究中通常忽略了该区域。我们介绍了衰落的信道模型,并研究了室内楼梯间频率为3、4和5 GHz的体外多天线系统在90%信号可靠性下可获得的空间分集增益,此外,我们还研究了接收功率,互耦和信道交叉相关,信号组合建模和天线空间分集;作者认为,这是超越当前知识以了解楼梯间环境中的可穿戴MIMO技术的宝贵进步。结果表明,对于三个调查频率中的每个频率,2分支空间分集技术可在单个单通道上为LOS提供1.7至3.3 dB的信号增益,为NLOS为1.8至3.4 dB,而3通道分集组合似乎可提供2分支组合没有明显的额外收益。此外,对于非视距情况,当利用空间分集时,发现最合适的统计分布通道模型发生了变化。这突出显示了减轻的信道衰落和增强的信号可靠性。

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