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Indoor Radio Channel Fading Analysis via Deterministic Simulations at 60 GHz

机译:通过确定性仿真在60 GHz频率下进行室内无线信道衰落分析

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To study the radio propagation channel fading at 60 GHz, a 3D ray-tracing simulator is used to predict the wave propagation deterministically in a small indoor environment. Starting from the instantaneous received signals, the large-scale and small-scale fading of the line-of-sight and non-line-of-sight channels are analyzed and modeled for linear and circular polarized antenna schemes. It is shown that the large-scale fading can be well modeled by a lognormal distribution and the small-scale fading by a Rician distribution. Additionally, the multipath dispersion in time and space is analyzed by mapping the multipath waves into delay and angular domain. The analysis shows that the beamwidth of the TX-RX beams can be properly adjusted to reduce the multipath effect to a certain extent, which will provide useful information for designing 60-GHz systems with smart antennas.
机译:为了研究60 GHz时无线电传播信道的衰落,使用3D光线跟踪模拟器来确定性地预测在小型室内环境中的电波传播。从瞬时接收信号开始,针对线性和圆极化天线方案,对视距和非视距信道的大规模和小规模衰落进行了分析和建模。结果表明,通过对数正态分布可以很好地建模大规模衰落,而通过Rician分布可以很好地建模小规模衰落。另外,通过将多径波映射到延迟域和角域中,分析了时间和空间上的多径色散。分析表明,可以适当地调整TX-RX波束的波束宽度,以在一定程度上降低多径效应,这将为设计带有智能天线的60 GHz系统提供有用的信息。

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