Alshaibani W T, Shayea Ibraheem, Caglar Ramazan, Din Jafri, Daradkeh Yousef Ibrahim
Electrical Engineering Department, Faculty of Electrical and Electronics Engineering, Istanbul Technical University (ITU), 34469 Istanbul, Turkey.
Electronics and Communication Engineering Department, Faculty of Electrical and Electronics Engineering, Istanbul Technical University (ITU), 34469 Istanbul, Turkey.
Sensors (Basel). 2022 Aug 12;22(16):6013. doi: 10.3390/s22166013.
The rapid growth of mobile data traffic will lead to the deployment of Ultra-Dense Networks (UDN) in the near future. Various networks must overlap to meet the massive demands of mobile data traffic, causing an increase in the number of handover scenarios. This will subsequently affect the connectivity, stability, and reliability of communication between mobile and serving networks. The inclusion of Unmanned Aerial Vehicles (UAVs)-based networks will create more complex challenges due to different mobility characterizations. For example, UAVs move in three-dimensions (3D), with dominant of line-of-sight communication links and faster mobility speed scenarios. Assuring steady, stable, and reliable communication during UAVs mobility will be a major problem in future mobile networks. Therefore, this study provides an overview on mobility (handover) management for connected UAVs in future mobile networks, including 5G, 6G, and satellite networks. It provides a brief overview on the most recent solutions that have focused on addressing mobility management problems for UAVs. At the same time, this paper extracts, highlights, and discusses the mobility management difficulties and future research directions for UAVs and UAV mobility. This study serves as a part of the foundation for upcoming research related to mobility management for UAVs since it reviews the relevant knowledge, defines existing problems, and presents the latest research outcomes. It further clarifies handover management of UAVs and highlights the concerns that must be solved in future networks.
移动数据流量的快速增长将在不久的将来促使超密集网络(UDN)的部署。各种网络必须相互重叠以满足移动数据流量的巨大需求,这导致切换场景的数量增加。这随后将影响移动网络与服务网络之间通信的连通性、稳定性和可靠性。由于不同的移动特性,纳入基于无人机(UAV)的网络将带来更复杂的挑战。例如,无人机在三维(3D)空间中移动,具有主导的视距通信链路和更快的移动速度场景。在无人机移动期间确保稳定、可靠的通信将是未来移动网络中的一个主要问题。因此,本研究概述了未来移动网络(包括5G、6G和卫星网络)中联网无人机的移动性(切换)管理。它简要概述了最近专注于解决无人机移动性管理问题的解决方案。同时,本文提取、突出并讨论了无人机及无人机移动性的移动性管理难点和未来研究方向。本研究为即将开展的与无人机移动性管理相关的研究奠定了部分基础,因为它回顾了相关知识,定义了现有问题,并展示了最新的研究成果。它进一步阐明了无人机的切换管理,并突出了未来网络中必须解决的问题。