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Enable UAVs safely flight in low-altitude: A Preliminary research of the public air route network of UAVs

机译:使无人机安全地在低空飞行:无人机公共航线网络的初步研究

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Increasing numbers and industrial applications for UAVs acquire much airspace for low-altitude flights. However, unknow and changeable environment has hindered UAVs’ rapid development. To enable UAVs flight safely and legally at low-altitude, this paper proposed a concept of “low-altitude public air route network (LAPAR)” and presented key technologies. Specifically, Firstly, a four-level air route system were proposed; Secondly, a low-altitude flight environment consisting of various constraints of UAV flights, such as climate, buildings, communication and mountains was constructed by modeling and gridding technology; Thirdly, the optimum path was searched by the improved Ant Colony optimization (ACO) algorithm; Lastly, a network of the public air route was constructed by formulating traffic management regulation for UAV flight in air routes. And a route map in Tianjin has also been obtained. This research can regulate low-altitude air traffic management, improve the utilization of low-altitude airspace resources, and ensure aviation and public safety.
机译:越来越多的无人机和工业应用为低空飞行提供了更多的空域。但是,未知和多变的环境阻碍了无人机的快速发展。为了使无人机能够安全,合法地在低空飞行,本文提出了“低空公共航线网络(LAPAR)”的概念,并提出了关键技术。具体来说,首先,提出了一种四级航路系统。其次,通过建模和网格化技术构建了包括气候,建筑物,通信和山脉等无人机飞行的各种约束条件的低空飞行环境。第三,通过改进的蚁群算法(ACO)搜索最优路径。最后,通过制定无人机在空中航线飞行的交通管理规定,建立了公共空中航线网络。并获得了天津的路线图。这项研究可以规范低空空中交通管理,提高低空空域资源的利用率,并确保航空和公共安全。

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