Integrated aircraft routing and cargo routing problem for combination airlines

IF 5.8 1区 工程技术 Q1 ECONOMICS Transportation Research Part B-Methodological Pub Date : 2024-09-04 DOI:10.1016/j.trb.2024.103063
Lei Huang , Wenshu Wang , Yi Su , Fujuan Li , Zhe Liang
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Abstract

The combination airlines operate both passenger aircraft and freighter aircraft to meet passenger and cargo demand. At present, combination airlines employ a sequential approach to allocating their capacity for passenger and cargo demand. Nevertheless, implementing an integrated resource allocation procedure has the potential to improve overall resource allocation efficiency. In this paper, we introduce an integrated model to help combination airlines integrate their aircraft routing and cargo routing decisions to maximize the expected overall profits derived from both passenger and cargo demand. We considered the stochastic nature of passenger baggage and proposed a set of individual chance constraints to ensure the robustness of the integrated solution. We reformulate the chance constraints using piecewise linear approximation to ensure solution efficiency. In addition, we proposed a column-and-row generation based solution approach that removes the through-connection related constraints at the beginning of the solution process and then adds the columns and rows during the iterations as needed. We proved that the proposed column-and-row generation approach can obtain an optimal solution for the LP relaxation problem. The model and the solution approach were tested in a number of scenarios obtained from a major Chinese combination airline. The computational results show that the combination airline can improve their expected profits by integrating capacity allocation. The results also demonstrated that the proposed column-and-row generation solution approach can decrease the solution time of the integrated model. These findings indicate that the model and the solution method are useful and efficient tools for combination airlines when planning their aircraft and cargo routes.

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组合航空公司的飞机航线和货物航线综合问题
组合航空公司同时运营客机和货机,以满足客运和货运需求。目前,组合航空公司采用顺序方式分配客运和货运需求的运力。然而,实施综合资源分配程序有可能提高整体资源分配效率。在本文中,我们引入了一个综合模型,帮助组合航空公司整合飞机航线和货物航线决策,最大化客运和货运需求带来的预期总体利润。我们考虑了乘客行李的随机性,并提出了一套单独的偶然性约束,以确保综合解决方案的稳健性。我们使用片断线性近似法重新表述偶然性约束,以确保求解效率。此外,我们还提出了一种基于列和行生成的求解方法,即在求解过程开始时删除与直通连接相关的约束,然后在迭代过程中根据需要添加列和行。我们证明了所提出的行列生成方法可以获得 LP 松弛问题的最优解。该模型和求解方法在中国某大型组合航空公司的多个场景中进行了测试。计算结果表明,组合航空公司可以通过整合运力分配提高预期利润。结果还表明,所提出的列-行生成求解方法可以缩短综合模型的求解时间。这些结果表明,该模型和求解方法是组合航空公司规划飞机和货运航线时有用且高效的工具。
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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来源期刊
Transportation Research Part B-Methodological
Transportation Research Part B-Methodological 工程技术-工程:土木
CiteScore
12.40
自引率
8.80%
发文量
143
审稿时长
14.1 weeks
期刊介绍: Transportation Research: Part B publishes papers on all methodological aspects of the subject, particularly those that require mathematical analysis. The general theme of the journal is the development and solution of problems that are adequately motivated to deal with important aspects of the design and/or analysis of transportation systems. Areas covered include: traffic flow; design and analysis of transportation networks; control and scheduling; optimization; queuing theory; logistics; supply chains; development and application of statistical, econometric and mathematical models to address transportation problems; cost models; pricing and/or investment; traveler or shipper behavior; cost-benefit methodologies.
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