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Millimeter waves channel measurements and path loss models

机译:毫米波通道测量和路径损耗模型

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This paper describes a measurement campaign performed in a modern building at the University of L'Aquila, Italy. Measurements are taken for two large bands around 60 GHz, i.e. 54–59 and 61–66 GHz. The channel probe is an ultrawideband (UWB) PN-sequence signal having a bandwidth of 1.2 GHz, which is up-converted to the 60 GHz band and finely tuned in order to span the whole mentioned bands. Measurements were done at several different locations, in line-of-sight and non-line-of-sight scenarios and using different combinations of transmitting and receiving antennas: either omnidirectional or directional antennas with a beam width of 30 or 9 degrees, respectively. Accurate processing of recorded signals and subsequent regression fits allow us to derive path loss models that include both distance and frequency dependence of the power decay. The path loss is modeled as the product of a distance dependent term and a frequency dependent term, both modeled through power laws. Our analysis shows that the parameters of the path loss models for 60 GHz channels in modern buildings assume values comparable to UWB channels.
机译:本文介绍了在意大利拉奎拉大学的一幢现代建筑中进行的测量活动。针对60 GHz附近的两个大频段(即54–59和61–66 GHz)进行测量。信道探测器是具有1.2 GHz带宽的超宽带(UWB)PN序列信号,该信号被上变频到60 GHz频带并进行了微调,以覆盖上述整个频带。在视线和非视线场景中,使用发射和接收天线的不同组合在几个不同的位置进行测量:波束宽度分别为30或9度的全向或定向天线。记录信号的精确处理和随后的回归拟合使我们能够导出路径损耗模型,其中包括功率衰减的距离和频率相关性。路径损耗建模为距离相关项和频率相关项的乘积,两者均通过幂律进行建模。我们的分析表明,现代建筑中60 GHz信道的路径损耗模型的参数取与UWB信道相当的值。

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