Millimeter-wave (mmWave) and sub-Terahertz (THz) frequencies are expected to play a vital role in 6G wireless systems and beyond due to the vast available bandwidth of many tens of GHz. This paper presents an indoor 3-D spatial statistical channel model for mmWave and sub-THz frequencies based on extensive radio propagation measurements at 28 and 140 GHz conducted in an indoor office environment from 2014 to 2020. Omnidirectional and directional path loss models and channel statistics such as the number of time clusters, cluster delays, and cluster powers were derived from over 15,000 measured power delay profiles. The resulting channel statistics show that the number of time clusters follows a Poisson distribution and the number of subpaths within each cluster follows a composite exponential distribution for both LOS and NLOS environments at 28 and 140 GHz. This paper proposes a unified indoor statistical channel model for mmWave and sub-Terahertz frequencies following the mathematical framework of the previous outdoor NYUSIM channel models. A corresponding indoor channel simulator is developed, which can recreate 3-D omnidirectional, directional, and multiple input multiple output (MIMO) channels for arbitrary mmWave and sub-THz carrier frequency up to 150 GHz, signal bandwidth, and antenna beamwidth. The presented statistical channel model and simulator will guide future air-interface, beamforming, and transceiver designs for 6G and beyond.
翻译:在2014年至2020年在室内办公室环境中对28和140千兆赫频率进行广泛的无线电传播测量的基础上,本文件展示了MmmWave和次Thaz频率的室内三维空间统计频道模型,根据2014年至2020年在28和140千兆赫频率上进行的广泛无线电传播测量结果,预期在6G无线系统及以后的6G无线系统将发挥至关重要的作用,例如时间组数、集群延迟和集束权力。由此得出的频道统计数据显示,时间组数在Poisson分布和每个组内子路径数之后,在28和140千兆赫之间对LOS和NLOS环境进行混合指数分布。本文提出,根据以前的户外NYUSIM频道模型的数学框架,对方向和方向路径丢失模型和频道统计数据,如时间组数、集群延迟和集束权力,来自15 000多个测得的电力延迟剖面剖面剖面剖面剖面剖面剖面剖面剖面剖面剖面剖面剖面图,可重新生成3-D型阵面方向、方向、跨向、多频段导面导面导路段。