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Decentralized Air Traffic Management for Advanced Air Mobility

机译:用于高级空运的分散式空中交通管理

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Leading proposals for Advanced Air Mobility (AAM) recognize the need for strategic and tactical airspace deconfliction, where the need for coordination appears in different forms and nuances. One recurring element is the use of pre-defined airways or corridors, a natural way to create order, with proven success from the conventional, manned, Air Traffic Management (ATM). But, while ATM is evolving to 4D Trajectory-Based Operations, when we apply the ATM principles to very dense and potentially more complex operations such as AAM, we have to consider their limitations in such demanding new environment. The requirement of following circulation corridors most often increase flight distance and inevitably create bottlenecks, hence we explore the hypothesis of not using corridors, testing such option via a simple and scalable simulation model.Other motivations for comparing different forms of traffic coordination are redundancy and diversity, which have potential to increase system safety. Relying on a single method to maintain traffic separation of course would not be allowed in practice. However, the concepts that we have seen so far leave a gap between two very distinct and co-existing methods: one, cooperative and centered on a ground-based Provider of Services for UAM (PSU), and another which is mostly non-cooperative and independent, centered on the individual aircraft, commonly referred to as Detect-And-Avoid (DAA). This duality achieves a welcomed diversity, however there are several areas for improvement.In-between these opposite methods, this paper analyzes the performance of an airborne cooperative method to coordinate traffic which is capable of safely solving conflicts of multiple aircraft (more than two) and achieve higher efficiency than DAA alone, thus with potential for being an alternative or a live fallback for ground-based traffic coordination.
机译:先进的航空流动性(AAM)的领先建议认识到需要战略和战术空域脱落,在不同的形式和细微差别中出现了对协调的需求。一个重复的元素是使用预定义的气道或走廊,创造订单的自然方式,从传统的,载有空中交通管理(ATM)中成功。但是,虽然ATM正在发展到基于4D的基于轨迹的操作,但是当我们将ATM原则应用于非常密集和可能更复杂的操作,如AAM,我们必须考虑他们在这种苛刻的新环境中的局限性。以下循环走廊的要求最多增加了飞行距离,不可避免地创造了瓶颈,因此我们探讨了不使用走廊的假设,通过简单且可扩展的模拟模型测试这种选项。比较不同形式的交通协调的其他动机是冗余和多样性,这有可能提高系统安全性。依靠单一的方法来维持流量分离当然不会被允许在实践中。然而,我们看到的概念迄今为止,两个非常独特和共同现有的方法之间的差距:一个,合作,以UAM(PSU)的基于地面服务提供者为中心,另一个是主要是非合作的独立,以各个飞机为中心,通常称为检测和避免(DAA)。这种二元性实现了欢迎的多样性,但有几个改进的领域 - 在这些相反的方法之间,本文分析了空气传播的合作方法对能够安全解决多种飞机冲突的交通的性能(两个以上)并仅实现比DAA更高的效率,因此有可能成为基于地面交通协调的替代或直播。

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