Ding Jupeng, Mei Hongye, I Chih-Lin, Zhang Hui, Liu Wenwen
Key Laboratory of Signal Detection and Processing in Xinjiang Uygur Autonomous Region, School of Information Science and Engineering, Xinjiang University, Urumqi 830046, Xinjiang, China.
China Mobile Research Institute, Beijing 100053, China.
Sensors (Basel). 2020 Sep 24;20(19):5476. doi: 10.3390/s20195476.
With the continuous maturity of unmanned aerial vehicles (UAV) in materials, communications, and other related technologies, the UAV industry has developed rapidly in recent years. In order to cope with the diversified emerging business forms, the explosive growth of the scale of data traffic, number of terminal connections, high reliability, low-latency, and high transmission rate provided by the fifth generation (5G) network will inject new vitality into the development of the UAVs industry. In this paper, optical wireless technology is introduced into the UAV platform, combining theory with practical applications. We explain many research advances and key technologies in the four aspects of "air, space, earth, and sea" to achieve a strong and broadband communication link. This discussion focuses on link modeling, parameter optimization, experimental testing, and the status quo of UAVs in different application scenarios with optical wireless link configurations. At the same time, based on the current situation of UAV optical wireless technology, the technical problems and the research direction in the future are also discussed.
随着无人机在材料、通信等相关技术方面的不断成熟,近年来无人机产业发展迅速。为了应对多样化的新兴业务形态,第五代(5G)网络所提供的海量数据流量规模的爆发式增长、终端连接数量、高可靠性、低延迟以及高传输速率,将为无人机产业的发展注入新的活力。本文将光无线技术引入无人机平台,理论与实际应用相结合。我们阐述了在“空、天、地、海”四个方面的诸多研究进展和关键技术,以实现强大且宽带的通信链路。本讨论聚焦于链路建模、参数优化、实验测试以及不同应用场景下配备光无线链路配置的无人机的现状。同时,基于无人机光无线技术的现状,还讨论了技术问题及未来的研究方向。