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一种针对多类型飞机航班计划与航线问题的综合优化模式。

An integrated optimization mode for multi-type aircraft flight scheduling and routing problem.

作者信息

Wei Ming, Zhao Li Gang, Ye Zhi Jian, Jing Bin Bin

机构信息

School of Air traffic Management, Civil Aviation University of China, Tianjin 300300, China.

School of civil aviation, Nanjing University of Aeronautics and Astronautics, Nanjing 210000, China.

出版信息

Math Biosci Eng. 2020 Jul 17;17(5):4990-5004. doi: 10.3934/mbe.2020270.

Abstract

This paper proposes an optimization model for the integrated aircraft flight scheduling and routing problem, which allows a simultaneous determination of the departure time of each flight trip and assignment of a set of aircraft located at different airports to perform all flight trips. The proposed model envisages that each flight trip is covered by its own particular aircraft type or a larger airplane. Further, departure and arrival times of each flight trip are within a flexible time window in its aircraft's route and origin/destination airports, and the number of airplanes firstly distributed in the base airports is fully accounted for in the model. The model not only can effectively minimize weighted operation costs for the number of airplanes and the total idle time for adjacent flight trips covered by an aircraft, but also can maximize the number of transported passengers. This paper further presents a two-stage heuristic approach based on the ant colony optimization algorithm, which efficiently finds the most acceptable solutions. The above algorithm is used to generate a series of aircraft routes, and a polynomial algorithm is designed to obtain their feasible flight trip timetable. Finally, the model is applied to a case study to design the integrated aircraft flight scheduling and routing plan for a real airline in China. A comparative analysis of the conventional and proposed models proved the latter's feasibility.

摘要

本文提出了一种用于综合飞机航班计划与航线问题的优化模型,该模型能够同时确定每个航班行程的出发时间,并分配位于不同机场的一组飞机来执行所有航班行程。所提出的模型设想每个航班行程由其特定的飞机类型或更大的飞机覆盖。此外,每个航班行程的出发和到达时间在其飞机航线及始发/目的地机场的灵活时间窗口内,并且模型充分考虑了首先分布在基地机场的飞机数量。该模型不仅能够有效最小化飞机数量的加权运营成本以及飞机覆盖的相邻航班行程的总空闲时间,还能够最大化运送乘客的数量。本文进一步提出了一种基于蚁群优化算法的两阶段启发式方法,该方法能够高效地找到最可接受的解决方案。上述算法用于生成一系列飞机航线,并设计了一种多项式算法来获取其可行的航班行程时间表。最后,将该模型应用于一个案例研究,为中国一家实际航空公司设计综合飞机航班计划与航线方案。对传统模型和所提出模型的对比分析证明了后者的可行性。

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