带时间窗的多车场异构车队路径问题:航空与道路综合路径

IF 1.6 3区 工程技术 Q4 ENGINEERING, INDUSTRIAL
Ö. Dursun, Asuman Özger
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引用次数: 4

摘要

在交通运输中,带时间窗的多车场异构车队路径问题是现实生活中较难解决的问题之一。本研究开发了一种新的基于节点的MDHFVRPTW。与文献中的其他研究不同,异构车队包括航空和道路车辆被用于路由。在模型中,考虑了航线和道路的真实数据。特别地,在模型中给出了重要的航空约束,如飞机的航程,根据发动机类型的起降周期(LTO)成本,以及惩罚成本。采用窄时间窗和宽时间窗对问题进行了分析,实现了快速正常的需求。针对MDHFVRPTW模型,提出了一种新的可变邻域搜索混合遗传算法(HGA-VNS)。在模型求解中,HGA-VNS算法与遗传算法和现有求解器相比,取得了显著的结果。此外,HGA-VNS算法已在小型和大规模实例中进行了测试,并与文献中的其他研究进行了比较。认为提出的MDHFVRPTW模型和开发的HGA-VNS算法将为交通运输带来不同的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-depot heterogeneous fleet vehicle routing problem with time windows: Airline and roadway integrated routing
In transportation, the multi-depot heterogeneous fleet vehicle routing problem with time windows (MDHFVRPTW) is one of the hard-to-solve real-life problems. In the study, a new node-based MDHFVRPTW has been developed. Unlike other studies in the literature, heterogeneous fleets including both airline and roadway vehicles are used for routing. In the model, real-life data of the airline and roadway are taken into consideration. In particular, important aviation constraints such as the range of the aircraft, landing and take-off cycle (LTO) cost according to the engine type, and the penalty cost are presented in the model. The problem is analysed by using narrow and wide time windows, which is the realization of fast and normal demand. A new hybrid genetic algorithm with variable neighborhood search (HGA-VNS) has been proposed for the solution of the MDHFVRPTW model. In the solution of the model, remarkable results have been obtained with the HGA-VNS algorithm compared to the genetic algorithm and off-the-shelf solvers. Also, the HGA-VNS algorithm has been tested with small and large-scale instances and compared with other studies in the literature. It is thought that the proposed MDHFVRPTW model and the developed HGA-VNS algorithm will bring a different perspective to transportation.
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来源期刊
CiteScore
5.70
自引率
9.10%
发文量
35
审稿时长
20 weeks
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