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Development of a new method for ATFCM based on trajectory-based operations

机译:基于轨迹运行的ATFCM新方法的开发

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This paper discusses a possibility to evolve the current Air Traffic Flow and Capacity Management towards a more proactive approach. This new method focuses on reducing the expected probability of air traffic control intervention based on "hot spot" identification and mitigation at strategic level by applying subliminal changes on the times of arrival at the crossing or merging points (junctions). The concept is fully aligned with the trajectory-based operation principles. The approach assumes that the changes on the times of arrival only demand small speed changes from the involved aircraft. In this study, the hot spots are defined as clusters of aircraft expected to arrive to the junctions. Two aircraft are said to be in the same cluster if their proximity and closure rate are below a given threshold. Some exercises are proposed and solved by applying this method. The obtained results show its ability to remove the potential conflicts by applying simple linear programming. This approach seeks to change the current capacity limiting factor, established by the number of aircraft occupying simultaneously each sector, to another parameter where the level of traffic complexity, flowing towards junctions, is identified and mitigated at strategic level. The speed changes, used as the control variable and computed before or during the flight, are designed to provide an adjustment on aircraft's required time of arrival at the junctions in order to have a de-randomised and well-behaved (conflict free) traffic. This will enable improvements in airspace capacity/ safety binomial. It is recognised that this measure alone is unable to produce a conflict free airspace, and then other collaborative and coordinated actions, such as adjusting and swapping departing times at the departing airports (before the aircraft are taking off), offsetting some flights from nominal route, and allowing multi-agent separation management (while they are in flight) should be applied together with this method.
机译:本文讨论了将当前的空中交通流量和容量管理向更主动的方法发展的可能性。这种新方法的重点是通过在到达交叉点或合并点(交汇点)的时间上应用阈下的更改,在战略层面基于“热点”识别和缓解来降低空中交通管制干预的预期概率。该概念与基于轨迹的操作原理完全一致。该方法假设到达时间的变化仅要求所涉及飞机的速度发生微小变化。在这项研究中,热点定义为预计到达交界处的飞机群。如果两架飞机的接近率和关闭率低于给定的阈值,则称它们在同一群集中。通过应用此方法,提出并解决了一些练习。获得的结果表明,它可以通过应用简单的线性编程来消除潜在冲突。这种方法力图将当前的容量限制因素(由同时占用每个扇区的飞机数量确定)更改为另一个参数,以便在战略层面确定并缓解流向交叉路口的交通复杂程度。速度变化用作控制变量,在飞行之前或飞行过程中进行计算,旨在对飞机到达交界处所需的时间进行调整,以实现非随机且行为规范(无冲突)的交通。这将使空域容量/安全二项式得以改进。公认的是,仅此一项措施并不能产生无冲突的空域,然后采取其他协作和协调的行动,例如调整和交换起飞机场(飞机起飞前)的起飞时间,从而使一些航班偏离正常航线,并且允许多主体分离管理(在飞行中)应与此方法一起应用。

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