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Linear Holding for Airspace Flow Programs: A Case Study on Delay Absorption and Recovery

机译:空域流量程序的线性保持:延迟吸收和恢复的案例研究

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This paper presents a method to introduce linear holding to flights affected by the airspace flow program (AFP) initiatives. Trajectories are optimized at their planning stage in such a way that the program performance is improved in terms of delay absorption before the congested area, and delay recovery at the destination airport. This recovery process is studied by comparing the case where the same fuel consumption is fixed as the nominal flight, with several cases where some extra fuel allowances are considered at the flight planning stage. The effects for AFP delayed flights are thoroughly discussed in a case study followed by a sensitivity analysis on possible influential factors. Results suggest that using the proposed method could partially recover part of the AFP delay, even with no extra fuel allowances (e.g., reducing 3.3 min of ground delay and 1.7 min of arrival delay for a typical short-haul flight). When extra fuel is allowed, however, the maximum delay recovery increases up to 10 min for the studied case, which also proves to be more cost-efficient than current operations, when flight speed is increased after experiencing all delay on the ground.
机译:本文提出了一种将线性保持引入受空域流量计划(AFP)计划影响的航班的方法。在计划阶段对航迹进行优化,以提高程序性能,包括在拥挤区域之前延误吸收以及在目标机场延误恢复。通过比较固定燃料消耗与标称飞行相同的情况以及在飞行计划阶段考虑一些额外燃料余量的几种情况,研究了这种恢复过程。案例研究中充分讨论了AFP延误航班的影响,然后对可能的影响因素进行了敏感性分析。结果表明,即使没有额外的燃油补贴,使用建议的方法也可以部分恢复AFP延误(例如,对于典型的短途航班,减少3.3分钟的地面延误和1.7分钟的到达延误)。但是,当允许额外的燃料时,对于所研究的情况,最大延迟恢复时间最多可增加10分钟,当在地面上经历所有延迟后提高飞行速度时,这也证明比当前操作更具成本效益。

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