Optimal sequencing of aircrafts take-off and landing at a busy airport

A. D’Ariano, Paolo D'Urgolo, D. Pacciarelli, M. Pranzo
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引用次数: 35

Abstract

This paper studies the problem of sequencing aircraft take-off and landing operations at congested airports. We introduce and analyze alternative detailed formulations and solution algorithms for scheduling arrival and departure times of the aircrafts, such that the delay with respect to the scheduled times is minimized. The aircraft scheduling problem (ASP) is viewed as an extension of the job shop scheduling problem with additional real-world constraints and formulated by using alternative graphs. Two alternative formulations model the required time separation among aircrafts in air segments and runways according to safety regulations and differ for the level of detail used to represent the holding circles. Scheduling rules, heuristic and exact methods are implemented and tested on practical size instances of the Fiumicino airport, the busiest airport in Italy. We show that two versions of an innovative branch and bound algorithm are always able to find good solutions in a few seconds and often improve the best solution computed by the scheduling heuristics. Optimality is proved in less than two minutes for more than half of the instances.
繁忙机场飞机起降的最优顺序
本文研究了拥挤机场中飞机起降排序问题。我们介绍和分析了飞机到达和离开时间调度的备选详细公式和解决算法,使得相对于预定时间的延误最小化。飞机调度问题(ASP)被看作是作业车间调度问题的扩展,具有附加的现实世界约束,并使用替代图来表述。根据安全规定,两种可供选择的公式对飞机在航段和跑道上所需的时间间隔进行建模,但用于表示等待圈的细节水平不同。调度规则、启发式和精确方法在意大利最繁忙的菲乌米奇诺机场的实际规模实例中实施和测试。我们证明了两个版本的创新分支定界算法总是能够在几秒内找到好的解,并且经常改进调度启发式计算的最优解。超过一半的实例在不到两分钟的时间内证明了最优性。
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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