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Statistical characterization and analysis of low-THz communication channel for 5G Internet of Things

机译:用于5G互联网的低THZ通信通道的统计表征与分析

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This paper presents measurements and statistical characterization to compare three potential bands of the low-THz channel, namely, the 300 to 319 GHz, 340 to 359 GHz and 380 to 399 GHz bands. From the large set of measurements performed in line-of-sight (LoS) and non-LoS (NLoS) environments, parameters for path loss model with shadowing are evaluated. Our results show that the path loss exponents for the band around 310 GHz, 350 GHz, and 390 GHz is 2.07, 1.90 and 1.96, respectively. The impacts of different materials acting as surfaces in LoS channels and reflectors in NLoS environments are also examined. Additionally, the statistical analysis due to temporal, spatial and multipath propagation is performed to determine the best fit distributions. Finally, we look at some networking scenarios in THz Band communication to derive the expressions for the number of connections a user can make based on antenna characteristics, data rate requirements and antenna mobility as well as network density. Our results suggest fundamental parameters that can be used in future THz Band analysis with applications in both macro and micro scale Internet of Things (IoT). (C) 2019 Published by Elsevier B.V.
机译:本文介绍了测量和统计表征,以比较低THZ通道的三个电位频段,即300到319 GHz,340到359 GHz和389 GHz频段。根据在视线(LOS)和非LOS(NLOS)环境中执行的大量测量,评估具有阴影的路径损耗模型的参数。我们的结果表明,频段约为310GHz,350 GHz和390 GHz的频段的路径损耗指数分别为2.07,1.90和1.96。还研究了作为LOS频道和NLOS环境中的反射器中的不同材料的影响。另外,执行由于时间,空间和多径传播引起的统计分析以确定最佳拟合分布。最后,我们研究THz频段通信中的一些网络情景,以导出用户可以基于天线特征,数据速率要求和天线移动性以及网络密度来获得的表达式。我们的结果表明,可以在未来的THz频段分析中使用的基本参数,其中包含宏观和微尺度互联网(物联网)的应用程序。 (c)2019年由elestvier b.v发布。

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