Introducing digital air-traffic controllers for urban-air mobility to ensure safe and energy-efficient flight operations

被引:0
|
作者
S. Schier-Morgenthal [1 ]
R. Abdellaoui [1 ]
I. C. Metz [1 ]
机构
[1] German Aerospace Center,
[2] Institute of Flight Guidance,undefined
关键词
Urban-air mobility; air-traffic control; automation; artificial intelligence; digital controller; control zone;
D O I
10.1007/s13272-024-00802-1
中图分类号
学科分类号
摘要
Facing the continued growth of cities, the introduction of urban-air mobility intends to reduce traffic congestion and improve the quality of services such as on-demand-transport, reduced travel times and increased connectivity. Nevertheless, its integration into existing air-traffic flows remains one of the biggest challenges ahead, especially once controlled airspace overlaps with urban-air mobility areas, such as at airport control zones. Here, air-traffic control needs to coordinate amobng urban-air mobility vehicles and conventional air traffic. In 2022, DLR conducted a human-in-the-loop simulation with ten air-traffic controllers to validate previously developed workflows for that coordination task applied for Hamburg airport. The simulation results revealed that additional urban-air mobility traffic increases controllers’ experienced workload up to 30% while slightly reducing their perceived situation awareness. Thus, a majority of controllers participating in the trials suggested to introduce an additional controller working position to exclusively control airtaxis and traffic following visual flight rules. This option is assessed as owning a high potential as cost intensive adaptions of regulations and procedures can be omitted. Nevertheless, the feasibility of this option is rather low due to the limited availability of endorsed human controllers.
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页码:339 / 352
页数:13
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