The Terahertz (0.1-10 THz) band has been envisioned as one of the promising spectrum bands to support ultra-broadband sixth-generation (6G) and beyond communications. In this paper, a wideband channel measurement campaign in an indoor lobby at 306-321 GHz is presented. The measurement system consists of a vector network analyzer (VNA)-based channel sounder, and a directional antenna equipped at the receiver to resolve multi-path components (MPCs) in the angular domain. In particular, 21 positions and 3780 channel impulse responses (CIRs) are measured in the lobby, including the line-of-sight (LoS), non-line-of-sight (NLoS) and obstructed-line-of-sight (OLoS) cases. Multi-path propagation is elaborated in terms of clustering results, and the effect of typical scatterers in the indoor lobby scenario in the THz band is explored. Moreover, indoor THz channel characteristics are analyzed in depth. Specifically, best direction and omni-directional path losses are analyzed by invoking close-in and alpha-beta path loss models. The most clusters are observed in the OLoS case, followed by NLoS and then LoS cases. On average, the power dispersion of MPCs is smaller in the LoS case in both temporal and angular domains, compared with the NLoS and OLoS counterparts.
翻译:Terahertz (0.1-10 THz) 频带被认为是支持超宽带第六代(6G)和超宽带通信之外的有希望的频带之一。 本文介绍了306-321 GHz 室内大厅的宽频带测量运动。 测量系统包括一个基于矢量网络分析器(VNA)的频道声音仪,以及一个在接收器中安装用于解决角域多路组件(MPC)的定向天线。 特别是, 在大厅中测量了21个位置和3,780个频道的脉冲反应(CIRs), 包括视觉线(LOS)、非视觉(NLOS)和视觉障碍(OLos), 多路传播是用集群结果来阐述的,在THz波段的室内大厅情景中典型的散射器效果得到了探索。 此外, 对室内通道的特性进行了深度分析。 具体地说, 最佳方向和导线路段路径损失是,通过引用近距离线线线线和轨道S 的域分析。 在O-S 中, 和LO-S 平均路径中, 比较的Los- S 的轨道的轨道损失是采用最小的轨道和LO- S 的轨道和LO- C 。 中, 和LO- C 和LO- C 中, 中, 和LO- s 中, 平均路径是比较的轨道和LOB- C 和LO- s 的中, 中测路流模式是以中, 和L- s 。