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Air traffic flow management at airports : a unified optimization approach

机译:机场空中交通流量管理:统一的优化方法

摘要

The cost of air traffic delays is well documented, and furthermore, it is known that the significant proportion of delays is incurred at airports. Much of the air traffic flow management literature focuses on traffic flows between airports in a network, and when studies have focused on optimizing airport operations, they have focused largely on a single aspect at a time. In this thesis, we fill an important gap in the literature by proposing unified approaches, on both strategic and tactical levels, to optimizing the traffic flowing through an airport. In particular, we consider the entirety of key problems faced at an airport: a) selecting a runway configuration sequence; b) determining the balance of arrivals and departures to be served; c) assigning flights to runways and determining their sequence; d) determining the gate-holding duration of departures and speedcontrol of arrivals; and e) routing flights to their assigned runway and onwards within the terminal area. In the first part, we propose an optimization approach to solve in a unified manner the strategic problems (a) and (b) above, which are addressed manually today, despite their importance. We extend the model to consider a group of neighboring airports where operations at different airports impact each other due to shared airspace. We then consider a more tactical, flight-by-flight, level of optimization, and present a novel approach to optimizing the entire Airport Operations Optimization Problem, made up of subproblems (a) - (e) above. Until present, these have been studied mainly in isolation, but we present a framework which is both unified and tractable, allowing the possibility of system-optimal solutions in a practical amount of time. Finally, we extend the models to consider the key uncertainties in a practical implementation of our methodologies, using robust and stochastic optimization. Notable uncertainties are the availability of runways for use, and flights' earliest possible touchdown/takeoff times. We then analyze the inherent trade-off between robustness and optimality. Computational experience using historic and manufactured datasets demonstrates that our approaches are computationally tractable in a practical sense, and could result in cost benefits of at least 10% over current practice.
机译:空中交通延误的成本已得到充分记录,此外,众所周知,机场延误的比例很大。空中交通流量管理的许多文献都集中在网络中各机场之间的交通流量,当研究着重于优化机场运营时,它们一次只集中在一个方面。在这篇论文中,我们通过在战略和战术层面上提出统一的方法来优化流经机场的交通量,填补了文献中的一个重要空白。特别是,我们考虑了机场面临的所有关键问题:a)选择跑道配置顺序; b)确定要送达的到达和离开的余额; c)为跑道分配飞行并确定其顺序; d)确定出发门的保持时间和到达者的速度控制; e)将航班转至其指定的跑道并在航站楼区域内向前飞行。在第一部分中,我们提出了一种优化方法,以统一的方式解决上述战略问题(a)和(b),尽管这些战略问题很重要,但今天仍要手动解决。我们扩展模型以考虑一组相邻的机场,由于共享空域,不同机场的运营会相互影响。然后,我们考虑一种更具战术性,逐次飞行的优化级别,并提出一种优化整个机场运营优化问题的新颖方法,该问题由上述子问题(a)-(e)组成。到目前为止,这些问题主要是单独进行研究的,但是我们提出了一个统一且易于处理的框架,从而允许在实际时间内实现系统最佳解决方案。最后,我们使用健壮和随机优化对模型进行扩展,以考虑我们方法论的实际实施中的关键不确定性。明显的不确定性是跑道的可用性以及航班最早的着陆/起飞时间。然后,我们分析了鲁棒性和最优性之间的内在平衡。使用历史数据和人工数据集的计算经验表明,从实际意义上讲,我们的方法在计算上是易于处理的,并且可能导致比当前实践至少节省10%的成本。

著录项

  • 作者

    Frankovich Michael Joseph;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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