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Evaluating the impact of new aircraft separation minima on available airspace capacity and arrival time delay

机译:评估新飞机分离最小值对可用空域能力和到达时滞的影响

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Although the application of new, reduced aircraft separation minima can directly increase runway throughput, the impact thereof on the traffic flow of aircraft arriving at the destination airport has not been discussed yet. This paper proposes a data-driven and queue-based modeling approach and presents an analysis of the impact on the delay time of arriving aircraft in the airspace within a radius of 100 nautical miles around an airport. The parameters of our queuing model were estimated by analysing the data contained in the radar tracks and flight plans for flights that arrived at Tokyo International Airport during the 2 years of 2016 and 2017. The results clarified the best arrival strategy according to the distance from the arrival airport: The combination of airspace capacity control and reduction of the flight time and separation variance is the most powerful solution to mitigate delays experienced by arriving traffic while also allowing an increase in the amount of arrival traffic. The application of new wake vortex categories would enable us to increase the arrival traffic to 120%. In addition, the arrival delay time could be minimised by implementing the proposed arrival traffic strategies together with automation support for air traffic controllers.
机译:虽然应用新的飞机分离最小值可以直接增加跑道吞吐量,但尚未讨论到达目的地机场的飞机的交通流量上的影响尚未讨论。本文提出了一种数据驱动和队列的建模方法,并对机场100海里范围内的半径内到达航空飞行中的飞机延迟时间的影响。通过分析2016年和2017年2年来达到东京国际机场的雷达轨道和飞行计划中所载的数据的数据估计了我们的排队模型。结果根据距离的距离澄清了最佳到达策略抵达机场:空域能力控制和减少飞行时间和分离方差的结合是最强大的解决方案,以减轻到达交通所经历的延误,同时也允许增加到达流量。新尾瓦斯类别的应用使我们能够将到达流量增加到120%。此外,通过实施建议的到达交通策略以及对空中交通管制员的自动化支持,可以最大限度地减少到达延迟时间。

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