A Survey on UAV-Aided Maritime Communications: Deployment Considerations, Applications, and Future Challenges

Обзор морских коммуникаций с использованием БПЛА: вопросы развертывания, применения и будущие вызовы
Panagiotis Trakadas, Panagiotis K. Gkonis, Νικόλαος Νομικός, Petros S. Bithas
2022-12-01

6G networksMaritime Internet of ThingsResource managementUAV trajectory optimizationUAV-aided maritime communications
Maritime activities represent a major domain of economic growth with several emerging maritime Internet of Things use cases, such as smart ports, autonomous navigation, and ocean monitoring systems. The major enabler for this exciting ecosystem is the provision of broadband, low-delay, and reliable wireless coverage to the ever-increasing number of vessels, buoys, platforms, sensors, and actuators. Towards this end, the integration of unmanned aerial vehicles (UAVs) in maritime communications introduces an aerial dimension to wireless connectivity going above and beyond current deployments, which are mainly relying on shore-based base stations with limited coverage and satellite links with high latency. Considering the potential of UAV-aided wireless communications, this survey presents the state-of-the-art in UAV-aided maritime communications, which, in general, are based on both conventional optimization and machine-learning-aided approaches. More specifically, relevant UAV-based network architectures are discussed together with the role of their building blocks. Then, physical-layer, resource management, and cloud/edge computing and caching UAV-aided solutions in maritime environments are discussed and grouped based on their performance targets. Moreover, as UAVs are characterized by flexible deployment with high re-positioning capabilities, studies on UAV trajectory optimization for maritime applications are thoroughly discussed. In addition, aiming at shedding light on the current status of real-world deployments, experimental studies on UAV-aided maritime communications are presented and implementation details are given. Finally, several important open issues in the area of UAV-aided maritime communications are given, related to the integration of sixth generation (6G) advancements. These future challenges include physical-layer aspects, non-orthogonal multiple access schemes, radical learning paradigms for swarms of UAVs and unmanned surface and underwater vehicles, as well as UAV-aided edge computing and caching.
1
Existing approaches generally combine conventional optimization with machine-learning methods to improve UAV deployment and maritime network performance.
2
Experimental studies demonstrate real-world UAV-aided maritime communication deployments, with implementation details summarized to clarify current practical maturity.
3
Major open challenges involve integrating 6G technologies, including physical-layer advances, non-orthogonal multiple access, and learning paradigms for UAV and maritime vehicle swarms.
4
The survey organizes UAV-aided maritime solutions across network architectures, physical-layer design, resource management, cloud/edge computing, caching, and trajectory optimization.
5
UAV integration adds an aerial connectivity dimension to maritime communications, addressing the limited coverage of shore-based stations and high latency of satellite links.

UAV-aided maritime communication networks and their deployment in maritime environments

Network architectures, wireless connectivity, resource management, computing/caching, trajectory optimization, deployment performance, and future 6G challenges

Publication Details
Publication Date
2022-12-01
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Panagiotis Trakadas
Panagiotis K. Gkonis
Νικόλαος Νομικός
Petros S. Bithas
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