Terahertz (THz) wireless access is considered as a next step towards sixth generation (6G) cellular systems. By utilizing even higher frequency bands than 5G millimeter wave (mmWave) New Radio (NR), they will operate over extreme bandwidth delivering unprecedented rates at the access interface. However, by relying upon pencil-wide beams, these systems will not only inherit mmWave propagation challenges such as blockage phenomenon but introduce their own issues associated with micromobility of user equipment (UE). In this paper, we analyze and compare user association schemes and multi-connectivity strategies for joint 6G THz/mmWave deployments. Differently, from stochastic geometry studies, we develop a unified analytically tractable framework that simultaneously accounts for specifics of THz and mmWave radio part design and traffic service specifics at mmWave and THz base stations (BS). Our results show that (i) for negligible blockers density, $\lambda_B\leq{}0.1$ bl./$m^2$, the operator needs to enlarge the coverage of THz BS by accepting sessions that experience outage in case of blockage (ii) for $\lambda_B>0.1$ bl./$m^2$, only those sessions that does not experience outage in case of blockage need to be accepted at THz BS, (iii) THz/mmWave multi-connectivity improves the ongoing session loss probability by $0.1-0.4$ depending on the system parameters.
翻译:Terahertz (THZ) 无线接入被视为向第六代(6G)蜂窝系统迈进的下一步。 通过使用比5GM毫米波(mmWave)新无线电(NR)更高的频带波比5G毫米波(mmWave)新无线电台(NR),它们将在超频带中运行,在接入界面中提供前所未有的速率。然而,依靠环铅横梁,这些系统将不仅继承双频波传播的挑战,例如阻塞现象,而且引入与用户设备的微移动性(UE)相关的自身问题。在本文中,我们分析并比较了6GTHz/mmWave联合部署的用户关联计划和多连通性参数。不同地,我们开发了一个可分析的、可分析、可同时说明THZ和mmWave无线电部分设计和交通服务具体特性的统一框架。 我们的结果表明,(i)对于最小阻塞密度的阻塞密度,$=B+2美元,操作者需要扩大Bxxxxxxxx(xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx