What will the future of UAV cellular communications be? In this tutorial article, we address such a compelling yet difficult question by embarking on a journey from 5G to 6G and sharing a large number of realistic case studies supported by original results. We start by overviewing the status quo on UAV communications from an industrial standpoint, providing fresh updates from the 3GPP and detailing new 5G NR features in support of aerial devices. We then show the potential and the limitations of such features. In particular, we demonstrate how sub-6 GHz massive MIMO can successfully tackle cell selection and interference challenges, we showcase encouraging mmWave coverage evaluations in both urban and suburban/rural settings, and we examine the peculiarities of direct device-to-device communications in the sky. Moving on, we sneak a peek at next-generation UAV communications, listing some of the use cases envisioned for the 2030s. We identify the most promising 6G enablers for UAV communication, those expected to take the performance and reliability to the next level. For each of these disruptive new paradigms (non-terrestrial networks, cell-free architectures, artificial intelligence, reconfigurable intelligent surfaces, and THz communications), we gauge the prospective benefits for UAVs and discuss the main technological hurdles that stand in the way. All along, we distil our numerous findings into essential takeaways, and we identify key open problems worthy of further study.
翻译:无人机移动通信的未来会是什么?在这个教义文章中,我们通过从5G到6G的旅程和分享大量有原始结果支持的切合实际的案例研究,解决如此迫切而棘手的问题。我们首先从工业角度审视无人机通信的现状,从3GPP提供最新更新,并详细列出支持航空装置的5GNR新特征。然后我们展示这些特征的潜力和局限性。特别是,我们展示了6GHZ大型巨头MIMO如何能够成功应对细胞选择和干扰挑战,我们展示了城市和郊区/农村环境中的鼓励AMWave覆盖评价,我们审视了空中直接设备对设备通信的独特性。我们继续偷看下一代UAV通信,列举了2030年代设想的一些使用案例。我们确定了UAV通信最有希望的6G推进器,那些有望将性能和可靠性带到下一个水平的。我们沿着这些破坏性的新模式(非空间通信网络、无细胞结构结构、人造智能智能结构、未来主要技术发现我们许多关键障碍和潜在障碍),我们沿着这些关键的地面研究,我们讨论所有关键的技术障碍和主要结论。