基于导航性能的城市空中交通空间模型

Nichakorn Pongsakornsathien, Suraj Bijjahalli, A. Gardi, R. Sabatini, Trevor Kistan
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引用次数: 4

摘要

UAS交通管理(UTM)框架的出现导致了指定新的空域结构和分类的潜力,适用于低空空域,特别是在人口密集的城市和郊区。本文提出了一种针对城市空中交通(UAM)的空域管理新方法。基于期望导航性能,提出了一种鲁棒空域离散化方法。此外,还开发了一种新的方法来从离散的三维空域单元中最佳地生成空域扇区。基于基于全球导航卫星系统(GNSS)的参考导航体系结构的导航性能,对新型空域结构方法进行了初步验证。提出的基于性能的离散化方法提高了操作安全性和效率,并支持增强UTM运营商在密集交通条件下的态势感知。所进行的分析表明,所提出的空域模型可以有效地适应具有不同航空电子设备的无人驾驶飞机,并且可以扩展到一个完整的基于通信、导航和监视(CNS)性能的方法,允许空域容量的持续动态优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Navigation Performance-based Airspace Model for Urban Air Mobility
The emergence of the UAS Traffic Management (UTM) framework has led to the potential to designate new airspace structures and classifications that are suitable for low altitude airspace and particularly in denser urban and suburban areas. This paper presents a novel airspace management approach for Urban Air Mobility (UAM) below the skyline in particular. A robust airspace discretization methodology is developed based on the expected navigation performance. Additionally, a novel methodology is developed to optimally generate airspace sectors from discrete 3D airspace cells. A preliminary verification of the novel airspace structuring methodology is performed based on navigation performance with a reference navigation architecture based on the Global Navigation Satellite System (GNSS). The proposed performance-based discretization methodology promotes operational safety and efficiency and supports enhanced UTM operators' situational awareness under dense traffic conditions. The analysis performed demonstrates that the proposed airspace model can efficiently accommodate unmanned aircraft with varying avionics equipment and can be expanded to a full Communication, Navigation and Surveillance (CNS) performance-based approach, allowing a continuous dynamic optimisation of airspace capacity.
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