Precise Relative Navigation and Separation Assurance of UAS and Manned Aircraft during Low Altitude Airfield Operations

E. Schuster, Christoph Struempfel, Svenja Huschbeck, B. Goebel, Christiane Berth, M. Haag
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Abstract

This paper discusses the flight test setup and preliminary results of a precise relative navigation and separation assurance system to support safe simultaneous operation of general aviation aircraft and UAS at low altitudes in the vicinity of an uncontrolled airfield. With an increased use of UAS for a wide variety of applications, such as law enforcement, search and rescue, agriculture, infrastructure inspection, maintenance, mapping, filming and journalism, it is expected that UAS will be taking off, landing or otherwise operating at airfields at the same time as manned aircraft. In that case, it will be required that the UAS not only has precise knowledge of its location and velocity to enable an automatic flight at lower altitudes with sufficient accuracy, integrity, availability and continuity to support its operation (e.g. take-off, landing, flight patterns), but also to support broadcasting its position and velocity to the other aircraft in the vicinity, for improved awareness of the UAS location and to achieve separation assurance
低空机场作战中无人机与有人驾驶飞机精确相对导航与分离保障
本文讨论了一种支持通用航空飞机和无人机在无管制机场附近低空同时安全运行的精确相对导航和分离保障系统的飞行试验设置和初步结果。随着无人机在执法、搜索和救援、农业、基础设施检查、维护、测绘、拍摄和新闻等各种应用中的使用越来越多,预计无人机将与有人驾驶飞机同时在机场起飞、降落或以其他方式运行。在这种情况下,将要求无人机不仅具有精确的位置和速度知识,以便在较低高度自动飞行,具有足够的准确性、完整性、可用性和连续性,以支持其操作(例如起飞、降落、飞行模式),而且还支持向附近的其他飞机广播其位置和速度,以提高对无人机位置的认识,并实现分离保证
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