Due to the advancements in cellular technologies and the dense deployment of cellular infrastructure, integrating unmanned aerial vehicles (UAVs) into the fifth-generation (5G) and beyond cellular networks is a promising solution to achieve safe UAV operation as well as enabling diversified applications with mission-specific payload data delivery. In particular, 5G networks need to support three typical usage scenarios, namely, enhanced mobile broadband (eMBB), ultra-reliable low-latency communications (URLLC), and massive machine-type communications (mMTC). On the one hand, UAVs can be leveraged as cost-effective aerial platforms to provide ground users with enhanced communication services by exploiting their high cruising altitude and controllable maneuverability in three-dimensional (3D) space. On the other hand, providing such communication services simultaneously for both UAV and ground users poses new challenges due to the need for ubiquitous 3D signal coverage as well as the strong air-ground network interference. Besides the requirement of high-performance wireless communications, the ability to support effective and efficient sensing as well as network intelligence is also essential for 5G-and-beyond 3D heterogeneous wireless networks with coexisting aerial and ground users. In this paper, we provide a comprehensive overview of the latest research efforts on integrating UAVs into cellular networks, with an emphasis on how to exploit advanced techniques (e.g., intelligent reflecting surface, short packet transmission, energy harvesting, joint communication and radar sensing, and edge intelligence) to meet the diversified service requirements of next-generation wireless systems. Moreover, we highlight important directions for further investigation in future work.
翻译:由于蜂窝技术的进步和蜂窝基础设施的密集部署,将无人驾驶航空飞行器(无人驾驶飞行器)纳入第五代(5G)和蜂窝网络之外,这是实现无人驾驶飞行器安全操作的有希望的解决方案,也有利于提供特派团特定有效载荷数据的多样化应用,特别是5G网络需要支持三种典型的使用情景,即:加强移动宽带(EMBB)、超可弹性低频通信(URLLLC)和大规模机械式通信(MMTC)。一方面,无人驾驶飞行器可以作为成本效益高的航空平台,为地面用户提供更好的通信服务,利用它们高巡航高度的高度和可控制的三维(3D)空间的可调控性,这是一个很好的解决办法。另一方面,同时为乌航和地面用户提供这种通信服务同时提供新的挑战,因为需要普遍的3D信号覆盖以及强大的空基网络干扰。除了高性无线通信的要求外,还能够进一步满足高效和高效的遥感以及网络情报,对于5G和超频地面用户提供更高的通信服务服务,从而将我们最新的地面服务网络纳入最新的地面观测。