Developing a model for solving the flight perturbation problem

A. Nickkar, S. Seyed-Hosseini, H. Javanshir, H. Khaksar
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引用次数: 2

Abstract

Purpose: In the aviation and airline industry, crew costs are the second largest direct operating cost next to the fuel costs. But unlike the fuel costs, a considerable portion of the crew costs can be saved through optimized utilization of the internal resources of an airline company. Therefore, solving the flight perturbation scheduling problem, in order to provide an optimized schedule in a comprehensive manner that covered all problem dimensions simultaneously, is very important. In this paper, we defined an integrated recovery model as that which is able to recover aircraft and crew dimensions simultaneously in order to produce more economical solutions and create fewer incompatibilities between the decisions. Design/methodology: Current research is performed based on the development of one of the flight rescheduling models with disruption management approach wherein two solution strategies for flight perturbation problem are presented: Dantzig-Wolfe decomposition and Lagrangian heuristic. Findings: According to the results of this research, Lagrangian heuristic approach for the DW-MPsolved the problem optimally in all known cases. Also, this strategy based on the Dantig-Wolfe decomposition manage to produce a solution within an acceptable time (Under 1 Sec). Originality/value: This model will support the decisions of the flight controllers in the operation centers for the airlines. When the flight network faces a problem the flight controllers achieve a set of ranked answers using this model thus, applying crew’s conditions in the proposed model caused this model to be closer to actual conditions
建立求解飞行摄动问题的模型
目的:在航空和航空业中,机组人员成本是仅次于燃料成本的第二大直接运营成本。但与燃油成本不同的是,通过优化利用航空公司内部资源,可以节省相当一部分机组成本。因此,解决飞行摄动调度问题,以提供同时涵盖所有问题维度的全面优化调度是非常重要的。本文将综合恢复模型定义为能够同时恢复飞机和机组人员的尺寸,以产生更经济的解决方案,并减少决策之间的不兼容性。设计/方法:目前的研究是基于一种带有干扰管理方法的航班重新调度模型的开发,其中提出了两种解决飞行扰动问题的策略:dantzigg - wolfe分解和拉格朗日启发式。研究结果表明,拉格朗日启发式方法在所有已知情况下都能最优地解决dw - mpp问题。此外,这种基于Dantig-Wolfe分解的策略能够在可接受的时间内(小于1秒)生成解决方案。原创性/价值:该模型将支持航空公司运营中心飞行管制员的决策。当飞行网络面临问题时,飞行控制器使用该模型得到一组排序的答案,因此,在提出的模型中加入机组人员的情况使该模型更接近实际情况
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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40 weeks
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