论文标题

太阳能无线电排放对60 GHz频段的户外繁殖路径损失模型的影响,用于访问/回程链接和D2D通信

Effects of Solar Radio Emissions on Outdoor Propagation Path Loss Models at 60 GHz Bands for Access/Backhaul Links and D2D Communications

论文作者

Sulyman, Ahmed Iyanda, Seleem, Hussein, Alwarafy, Abdulmalik, Humadi, Khaled M., Alsanie, Abdulhameed

论文摘要

本文介绍了分析和经验数据,记录了太阳无线电排放对60 GHz频段室外传播路径损失的影响。均考虑了视线(LOS)和非LOS场景。实证研究中使用的设置模拟了未来的访问和回程服务的第五代细胞系统,以及设备之间的通信。根据激烈的太阳能活动在阳光明媚的天气中收集的测量数据,我们开发了60 GHz的大规模传播路径损失模型,并观察到太阳能发射对路径损失数据的影响。结果表明,太阳能无线电发射可以降低载波与噪声比率,并且这转化为大规模传播路径损耗通道模型的路径损耗指数(PLE)值的相应增加。经验数据表明,与夜间在凉爽和晴朗的天气(20°-38°C)中进行的对应物测量相比,白天在炎热和阳光明媚的天气(41°-42°C)中观察到了9.0%-15.6%的PLE值。这转化为白天在炎热和阳光明媚的天气中60 GHz无线电覆盖范围的相应减少。通过提出的分析估计值密切证实了经验数据。

This paper presents analytical and empirical data documenting the effects of solar radio emissions on outdoor propagation path loss at 60 GHz bands. Both line-of-sight (LOS) and non-LOS scenarios were considered. The setup used in the empirical studies emulates the future fifth-generation cellular systems for both access and backhaul services, as well as for device-to-device communications. Based on the measurement data collected in sunny weather with intense solar activities, we developed large-scale propagation path loss models at 60 GHz, and observed the effects of solar radio emissions on the path loss data. It is shown that solar radio emission can decrease carrier-to-noise ratio, and that this translates into a corresponding increase in the path loss exponent (PLE) values for the large-scale propagation path loss channel models. Empirical data show that 9.0%-15.6% higher PLE values were observed in hot and sunny weather during the day (41°-42 °C) compared with the counterpart measurements taken at night in cool and clear weather (20°-38 °C). This translates into a corresponding decrease in 60 GHz radio coverage in hot and sunny weather during the day. The empirical data are closely corroborated by analytical estimates presented.

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