TeraHertz (THz) communications are envisioned as a promising technology, owing to its unprecedented multi-GHz bandwidth. One fundamental challenge when moving to new spectrum is to understand the science of radio propagation and develop an accurate channel model. In this paper, a wideband channel measurement campaign between 130 GHz and 143 GHz is investigated in a typical meeting room. Directional antennas are utilized and rotated for resolving the multi-path components (MPCs) in the angular domain. With careful system calibration that eliminates system errors and antenna effects, a realistic power delay profile is developed. Furthermore, a combined MPC clustering and matching procedure with ray-tracing techniques is proposed to investigate the cluster behavior and wave propagation of THz signals. In light of the measurement results, physical parameters and insights in the THz indoor channel are comprehensively analyzed, including the line-of-sight path loss, power distributions, temporal and spatial features, and correlations among THz multi-path characteristics. Finally, a hybrid channel model that combines ray-tracing and statistical methods is developed for THz indoor communications. Numerical results demonstrate that the proposed hybrid channel model shows good agreement with the measurement and outperforms the conventional statistical and geometric-based stochastic channel model in terms of the temporal-spatial characteristics.
翻译:TeraHertz (THZ) 通信被认为是一种有希望的技术,因为其具有前所未有的多GHz带宽。在移动到新的频谱时,一个根本的挑战是如何理解无线电传播科学,并开发准确的频道模型。在本文中,对130GHz和143GHz之间的宽频频道测量运动进行了典型的会议室调查。方向天线被利用和旋转,以解决角域的多路组件(MPCs)。在仔细的系统校准以消除系统错误和天线效应的情况下,开发了一个现实的电力延迟剖面。此外,还提出了混合的MPC集群和与射线追踪技术相匹配的程序,以调查THz信号的集群行为和波传播。根据测量结果,对THz室内通道的物理参数和洞察洞洞的洞洞情况进行了全面分析,包括光线丢失、电力分布、时空和空间特征以及THz多路特性之间的相互关系。最后,为THz室内通信模型和统计方法相结合的混合频道模型和统计方法模型开发了一个混合模型模型和统计模型模型模型模型模型模型。Numerica结果显示传统频道的测量结果显示传统频道的测量条件。