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Optimal aircraft scheduling and routing at a terminal control area during disturbances

机译:干扰期间终端控制区域的最佳飞机调度和路由

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This paper addresses the real-time problem of aircraft scheduling and routing. A main task of traffic controllers is to mitigate the effects of severe traffic disturbances on the day of operations in the Terminal Control Area (TCA) of an airport. When managing disturbed take-off and landing operations, they need to minimize the delay propagation and, in addition, to reduce the aircraft travel time and energy consumption. The paper tackles the problem of developing effective decision support tools for air traffic monitoring and control in a busy TCA. To this purpose, centralized and rolling horizon traffic control paradigms are implemented and compared. The mathematical formulation is a detailed model of air traffic flows in the TCA based on alternative graphs, that are generalized disjunctive graphs. As for the aircraft scheduling and (re-)routing approaches, the First In First Out (FIFO) rule, used as a surrogate for the dispatchers behaviour, is compared with various optimization-based approaches including a branch and bound algorithm for aircraft scheduling with fixed routes, a tabu search algorithm for aircraft re-routing, and a mixed integer linear programming formulation for simultaneous scheduling and routing. Various hypothetical disturbance scenarios are simulated for a real-world airport case study, Milano Malpensa, and the proposed timing and routing approaches are compared in terms of their performance in the different scenarios. The disturbed traffic situations are generated by simulating multiple delayed landing/departing aircraft and a temporarily disrupted runway. In general, the optimization approaches are found to improve the solutions significantly compared to FIFO, in terms of aircraft delay minimization. However, there are some trade-offs involved in picking the right approach and paradigms for practical implementations.
机译:本文涉及飞机调度和路由的实时问题。交通管制者的主要任务是减轻严重交通障碍对机场终端控制区域(TCA)的日常运营的影响。当管理干扰的起飞和降落操作时,他们需要尽量减少延迟传播,并且此外,还需要减少飞机旅行时间和能耗。该论文解决了在繁忙的TCA中制定有效决策支持工具的问题。为此目的,实现并比较集中和滚动地平线交通管制范式。数学制构是基于替代图的TCA中的空中交通流量的详细模型,即是广义的析出图。至于飞机调度和(重新)路由方法,将首次出版(FIFO)规则用于调度员行为的代理,与基于各种优化的方法进行比较,包括用于飞行器调度的分支和绑定算法固定路由,飞机重新路由的禁忌搜索算法,以及用于同时调度和路由的混合整数线性编程配方。针对真实世界的机场案例研究,Milano Malpensa的各种假设障碍情景,以及所提出的时序和路由方法在不同方案中的性能方面进行了比较。通过模拟多个延迟着陆/离去飞机和暂时中断的跑道来产生干扰的交通情况。通常,在飞机延迟最小化方面,发现与FIFO相比,优化方法改善了解决方案。但是,有一些权衡涉及采摘正确的方法和实际实施的范例。

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