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Improving taxi traffic flow by real-time runway sequence optimization using dynamic taxi route planning

机译:使用动态出租车路线规划,通过实时跑道序列优化改善出租车交通流量

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Traffic control on the airport surface is tactical rather than strategic, preventing the optimal use of the available taxiway and runway infrastructure. In the current taxi process the controller has to estimate a number of time windows while optimizing the traffic flow. To compensate for the uncertainties in these time windows and to prevent the runway from not being utilized efficiently, the controllers create buffers by planning a queue of aircraft at the runway. As a result aircraft have to wait while the engines are running which may lead to unnecessary fuel consumption. One of the goals of the described research is to reduce the amount of unnecessary taxi time while engines are running, by reducing the taxi process uncertainties and thus reducing the need of aircraft queuing at the runway. At the same time reducing taxi time uncertainties enables runway sequence planning when the aircraft is still at the gate improving the optimal use of the available runway infrastructure. Our proposed approach is to develop a planning function that will optimize the traffic flow by real-time sequencing the departure traffic at the gate and provide the controller and pilots with timing information. This paper describes a proposed taxi operation and real-time planning function to compensate for taxi operation uncertainties. Part of the planning function was implemented and evaluated using scenarios based on actual data from Amsterdam airport.
机译:机场表面上的交通管制是战术而不是战略性,防止了可用的滑行道和跑道基础设施的最佳使用。在当前的出租车过程中,控制器必须在优化流量时估计许多时间窗口。为了弥补这些时间窗口的不确定性,并防止跑道没有有效利用,控制器通过规划跑道的飞机排队来创建缓冲区。结果飞机必须等待发动机的运行,这可能导致不必要的燃料消耗。所描述的研究的一个目标之一是通过减少出租车过程的不确定性来减少不必要的出租车时间的数量,从而减少跑道上的飞机排队的需要。同时减少出租车时间不确定性,当飞机仍在提高可用跑道基础架构的最佳使用时,当飞机仍处于栅极时,可以启用跑道序列规划。我们所提出的方法是开发一个规划函数,它将通过实时排序在门处的出发流量来优化流量,并为控制器和飞行员提供定时信息。本文介绍了拟议的出租车运营和实时计划功能,以弥补出租车运营的不确定性。根据来自阿姆斯特丹机场的实际数据的情况,使用场景实现和评估计划函数的一部分。

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