The number of disasters has increased over the past decade where these calamities significantly affect the functionality of communication networks. In the context of 6G, airborne and spaceborne networks offer hope in disaster recovery to serve the underserved and to be resilient in calamities. Therefore, this paper surveys the state-of-the-art literature on post-disaster wireless communication networks and provides insights for the future establishment of such networks. In particular, we first give an overview of the works investigating the general procedures and strategies for counteracting any large-scale disasters. Then, we present the possible technological solutions for post-disaster communications, such as the recovery of the terrestrial infrastructure, installing aerial networks, and using spaceborne networks. Afterward, we shed light on the technological aspects of post-disaster networks, primarily the physical and networking issues. We present the literature on channel modeling, coverage and capacity, radio resource management, localization, and energy efficiency in the physical layer and discuss the integrated space-air-ground architectures, routing, delay-tolerant/software-defined networks, and edge computing in the networking layer. This paper also presents interesting simulation results which can provide practical guidelines about the deployment of ad hoc network architectures in emergency scenarios. Finally, we present several promising research directions, namely backhauling, placement optimization of aerial base stations, and the mobility-related aspects that come into play when deploying aerial networks, such as planning their trajectories and the consequent handovers.
翻译:在过去十年中,灾害的数量有所增加,这些灾害大大影响了通信网络的功能。在6G、空载和空间网络的背景下,灾害恢复的希望在于为服务服务不足的灾民提供服务和抗灾能力。因此,本文件调查了灾后无线通信网络的最新文献,为今后建立此类网络提供了见解。特别是,我们首先概述了调查应对任何大规模灾害的一般程序和战略的工作。然后,我们介绍了灾后通信的可能技术解决方案,例如恢复地面基础设施、安装航空网络和使用空间网络。之后,我们介绍了灾后网络的技术方面,主要是物理和网络问题。我们介绍了关于频道建模、覆盖和能力、无线电资源管理、本地化和物理层能源效率的文献,并讨论了综合空间-地面结构、路线、耐延迟/软软件界定网络和网络层边缘计算等。本文还介绍了一些有趣的模拟结果,这些结果可以提供实际准则,说明如何将地面基础设施、航空网络的后期期期、航空结构的后期期期期期、航空结构的后期演演演演,以及若干与空中结构的后期演化,我们最后在与航空结构有关的情景中,可以提供临时网络的后期演化,从而在航空结构的后演演演后演时,在航空结构的后演进后演演演。