Technology forecasts anticipate a new era in which massive numbers of humans, machines, and things are connected to wireless networks to sense, process, act, and communicate with the surrounding environment in a real-time manner. To make the visions come true, the sixth generation (6G) wireless networks should be hyper-connected, implying that there are no constraints on the data rate, coverage, and computing. In this article, we first identify the main challenges for 6G hyper-connectivity, including terabits-per-second (Tbps) data rates for immersive user experiences, zero coverage-hole networks, and pervasive computing for connected intelligence. To overcome these challenges, we highlight key enabling technologies for 6G such as distributed and intelligence-aware cell-free massive multi-input multioutput (MIMO) networks, boundless and fully integrated terrestrial and non-terrestrial networks, and communication-aware distributed computing for computation-intensive applications. We further illustrate and discuss the hyper-connected 6G network architecture along with open issues and future research directions.
翻译:技术预测将进入一个新的时代,在这个时代中,大量的人类、机器和事物以实时的方式与无线网络连接到感知、处理、行为和与周围环境的通信。为了实现这些愿景,第六代(6G)无线网络应该具有超链接,这意味着数据率、覆盖面和计算方面没有限制。在本篇文章中,我们首先确定6G超链接的主要挑战,包括渗透用户体验的每秒(Tbps)数据率、零覆盖孔网络和普遍计算连通情报。为了克服这些挑战,我们强调6G的关键赋能技术,例如分布式和无智能的无细胞大规模多投入(MIIMO)网络、无限和完全一体化的陆地和非地球网络,以及计算密集应用的通信通信通信网络分布。我们进一步说明和讨论超链接的6G网络结构以及开放问题和未来研究方向。