A Methodology Combining Optimization and Simulation for Real Applications of the Stochastic Aircraft Recovery Problem

P. Arias, Daniel Guimarans, Miguel Mujica Mota, Geert Boosten
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引用次数: 16

Abstract

The Aircraft Recovery Problem appears when external events cause disruptions in a flight schedule. Thus in order to minimize the losses caused by the externalities, aircrafts must be reallocated (rescheduled) in the best possible way. The aim of this paper is to develop a suitable methodology that combines optimization techniques with a simulation approach to tackle the so-called Stochastic Aircraft Recovery Problem. The approach solves the problem through the rescheduling of the flight plan using delays, swaps, and cancellations. The main objective of the optimization model is to restore as much as possible the original flight schedule, minimizing the total delay and the number of cancelled flights. By applying simulation techniques, the robustness of the given solution is assessed. The proposed methodology is applied on a medium-sized scenario based on real data provided by a commercial airline. The obtained results show that the methodology described in the paper is capable of producing a feasible and robust solution for this problem.
飞机随机回收问题的优化与仿真相结合的实际应用方法
当外部事件导致航班时刻表中断时,就会出现飞机恢复问题。因此,为了尽量减少外部性造成的损失,飞机必须以最好的方式重新分配(重新安排)。本文的目的是开发一种合适的方法,将优化技术与模拟方法相结合,以解决所谓的随机飞机回收问题。该方法通过使用延迟、交换和取消来重新安排飞行计划来解决问题。优化模型的主要目标是尽可能地恢复原航班时刻表,使总延误和取消航班数量最小化。通过仿真技术,对给定解的鲁棒性进行了评估。建议的方法应用于基于商业航空公司提供的真实数据的中型场景。结果表明,本文所描述的方法能够为该问题提供一个可行的鲁棒解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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