Owning abundant bandwidth resource, the Terahertz (0.1-10 THz) band is a promising spectrum to support sixth-generation (6G) and beyond communications. As the foundation of channel study in the spectrum, channel measurement is ongoing in covering representative 6G communication scenarios and promising THz frequency bands. In this paper, a wideband channel measurement in an L-shaped university campus street is conducted at 306-321 GHz and 356-371 GHz. In particular, ten line-of-sight (LoS) and eight non-line-of-sight (NLoS) points are measured at the two frequency bands, respectively. In total, 6480 channel impulse responses (CIRs) are obtained from the measurement, based on which multi-path propagation in the L-shaped roadway in the THz band is elaborated to identify major scatterers of walls, vehicles, etc. in the environment and their impact on multi-path components (MPCs). Furthermore, outdoor THz channel characteristics in the two frequency bands are analyzed, including path losses, shadow fading, cluster parameters, delay spread and angular spread. In contrast with the counterparts in the similar outdoor scenario at lower frequencies, the results verify the sparsity of MPCs at THz frequencies and indicate smaller power spreads in both temporal and spatial domains in the THz band.
翻译:拥有丰富的带宽资源,Terahertz (0.1-10 THz)带是支持第六代(6G)及以后通信的一个很有希望的频谱。作为频谱频道研究的基础,正在对具有代表性的6G通信情景和有前景的THz频带进行频道测量。本文在L型大学校园街道上对宽带频道测量,在306-321 GHz和356-371 GHz进行,特别是在306-321 GHz和356-371 GHz进行宽带测量。特别是,对两个频带分别进行了10个视线和8个非视线(NLOS)点的测量。总共从测量中获得了6 480 80 个频道脉冲反应(CIRs),根据测量结果,在THz 带的L型路形公路上进行了多路传播,以查明在环境中的墙壁、车辆等主要散射器及其对多路段(MPCs)的影响。此外,对两个频带的户外色频道特征进行了分析,包括路径丢失、影子散落、集参数参数、延迟差差差差差差和角波段的移动波段和角波段,在空间频段间空间频段内,对等空间频段内,对相对等空间频段进行对比。