This letter provides a comparison of indoor radio propagation measurements and corresponding channel statistics at 28, 73, and 140 GHz, based on extensive measurements from 2014-2020 in an indoor office environment. Side-by-side comparisons of propagation characteristics (e.g., large-scale path loss and multipath time dispersion) across a wide range of frequencies from the low millimeter wave band of 28 GHz to the sub-THz band of 140 GHz illustrate the key similarities and differences in indoor wireless channels. The measurements and models show remarkably similar path loss exponents over frequencies in both line-of-sight (LOS) and non-LOS (NLOS) scenarios, when using a one meter free space reference distance, while the multipath time dispersion becomes smaller at higher frequencies. The 3GPP indoor channel model overestimates the large-scale path loss and has unrealistic large numbers of clusters and multipath components per cluster compared to the measured channel statistics in this letter.
翻译:本信根据2014-2020年在室内办公环境中的广泛测量结果,对28、73和140千兆赫的室内无线电传播测量和相应的频道统计数据进行了比较。对28千兆赫的低毫米波波段至140千兆赫的亚THz波段等多种频率的传播特征(如大规模路径丢失和多路时间分散)进行逐边比较,显示了室内无线信道的关键相似性和差异。测量和模型显示,在使用一个米空空空间参照距离时,与视线(LOS)和非LOS(NLOS)的频率相比,路径损失情况非常相似,而多路时间分散在较高频率时则变小。3千兆帕的室内频道模型高估了大规模路径损失,与本信所测量的频道统计数据相比,每个集群的集群和多路段部件数量不切实际。