Terahertz frequency bands will likely be used for the next-generation wireless communication systems to provide data rates of hundreds of Gbps or even Tbps because of the wide swaths of unused and unexplored spectrum. This paper presents two outdoor wideband measurement campaigns in downtown Brooklyn (urban microcell environment) in the sub-THz band of 140 GHz with TX-RX separation distance up to 100 m: i) terrestrial urban microcell measurement campaign, and ii) rooftop surrogate satellite and backhaul measurement campaign. Outdoor omnidirectional and directional path loss models for both line-of-sight and non-line-of-sight scenarios, as well as foliage loss (signal attenuation through foliage), are provided at 140 GHz for urban microcell environments. These measurements and models provide an understanding of both the outdoor terrestrial (e.g., 6G cellular and backhaul) and non-terrestrial (e.g., satellite and unmanned aerial vehicle communications) wireless channels, and prove the feasibility of using THz frequency bands for outdoor fixed and mobile cellular communications. This paper can be used for future outdoor wireless system design at frequencies above 100 GHz.
翻译:由于未使用和未探索频谱分布宽广,下一代无线通信系统很可能使用Terahertz频带,以提供数百千千兆字节甚至Tbps的数据率。本文介绍了布鲁克林市中心(城市微型细胞环境)在140千兆赫的亚THZ波段(TX-RX隔离距离不超过100米)下开展两次户外宽带测量运动,该波段为140千兆赫,TX-RX隔离距离不超过100米:i)地面微型细胞测量运动,和ii)屋顶替代卫星和回水道测量运动。门外光线和非视线外光线和非视线光谱路径丢失模型,以及叶片损失(通过叶片的信号衰减),为城市微型环境提供140千兆赫。这些测量和模型提供了对室外地面(例如6千兆赫蜂窝和回路)和非地球空间(例如卫星和无人驾驶飞行器通信)的无线和方向路径丢失路径模型。无线路段线外光线和非视线路段线路段的无线路段,并证明在使用100个户外和移动频率设计上移动纸系的可行性。