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Impact of antenna pattern and reflective environment on 60 GHz indoor radio channel characteristics

机译:天线方向图和反射环境对60 GHz室内无线信道特性的影响

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摘要

Wideband channel measurements at the 60-GHz frequency band in a reflective environment with different antenna heights are presented. The log-distance model of the normalized received power (NRP) is used to fit the measured data for both line-of-sight (LOS) and nonline-of-sight (NLOS) cases. Also, the impact of the biconical antennas and the reflective environment on the channel properties is analyzed and explained. Results show that the most favorable NRP values are found in the case that the Tx and Rx antennas are at the same height. Also, in most cases, the scatter paths have more contributions on the total received power than the direct path. In addition, in the LOS case, the NRPs become less dependent on the Tx-Rx separation owing to the combined effect of the antenna and the reflective environment. In the NLOS region, the contribution level of the strongest path becomes less dominant with increasing virtual Tx-Rx separation. The analysis of these results can be instructive for the deployment of a 60-GHz system in a reflective environment.
机译:提出了在反射环境中具有不同天线高度的60 GHz频带上的宽带信道测量。归一化接收功率(NRP)的对数距离模型用于拟合视线(LOS)和非视线(NLOS)情况下的测量数据。同样,分析和解释了双锥天线和反射环境对信道特性的影响。结果表明,在Tx和Rx天线处于相同高度的情况下,找到了最有利的NRP值。而且,在大多数情况下,散射路径对总接收功率的贡献要大于直接路径。另外,在LOS情况下,由于天线和反射环境的综合作用,NRP不再依赖于Tx-Rx间隔。在NLOS区域中,随着虚拟Tx-Rx间隔的增加,最强路径的贡献水平将变得不那么占主导地位。这些结果的分析对于在反射环境中部署60 GHz系统可能具有指导意义。

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