Empirical Indoor Path Loss Models at 3.5GHz for 5G Communications Network Planning

E. I. Adegoke, E. Kampert, M. Higgins
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引用次数: 8

Abstract

In this paper, we present results of a measurement campaign at 3.5 GHz for 5G communications. Large-scale fading measurements have been carried out in an office building using a spectrum analyser and omnidirectional antennas in line-of-sight (LoS) and non line-of-sight (NLoS) co-polar scenarios. For the NLoS and LoS points, a linear track as well as spot locations were used to measure the receive power, with NLoS points resulting from obstructions. The transmitter–receiver (Tx-Rx) separation distance adopted in the measurement campaign ranged from 2 m to 20 m, with measurements averaged over 10 wavelengths at each location. From the measurement data, empirical path loss models were obtained to fit the measurement data. For the LoS points investigated, the path loss exponent varied between 1.32 and 1.95, while a path loss exponent of 1.78 was obtained for NLoS scenarios. The model comparison carried out showed that the ITU-R model overestimates the path loss in LoS scenarios, while the FSPL underestimates the path loss.
面向5G通信网络规划的3.5GHz室内路径损耗实证模型
在本文中,我们介绍了用于5G通信的3.5 GHz测量活动的结果。利用频谱分析仪和全向天线在视距(LoS)和非视距(NLoS)共极场景下对办公楼进行了大规模衰落测量。对于NLoS和LoS点,采用线性轨迹和光斑位置来测量接收功率,NLoS点由障碍物产生。在测量活动中采用的收发器(Tx-Rx)分离距离范围为2米至20米,在每个位置测量平均超过10个波长。根据测量数据,建立了经验路径损耗模型来拟合测量数据。路径损失指数在1.32 ~ 1.95之间变化,而NLoS情景的路径损失指数为1.78。模型对比表明,ITU-R模型高估了LoS场景下的路径损耗,而FSPL模型低估了路径损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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