An optimization integrated approach for simultaneous allocation of railcars and locomotives for train formation based on a pre-designed time schedule

Amirhosein Allafeepour, Ali Tavakoli, Arash Arvin
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引用次数: 2

Abstract

In the rail network, providing empty railcars and locomotives at the origin stations of trains and dynamic train formation planning according to the schedule is essential. In the present study, the simultaneous allocation of railcars and locomotives to plan train formation was accomplished according to the schedule. A Mixed Integer Linear Programming (MILP) mathematical model has been developed, with the aim of maximizing the profits of the railway company resulting from customer demand satisfaction by freight trains in the rail network. In this mathematical model, in addition to the simultaneous railcars and locomotives allocation to trains, issues such as the capacity of train stations, the traction of locomotives, cancellation of trains, and active and deadhead consist of locomotives are considered. The Iran railways network was selected as a real-world case study to evaluate the proposed model. As the results show, purchasing a particular combination of railcars and locomotives in the current and future demand situations achieved the greatest increase in the demand satisfaction rate and railway company profit as well in the rail network, and also the productivity indicators of railcars and locomotives were improved. Moreover, the best-case scenario was selected based on the best combination offered for the fleet in the current and future demand situations.

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基于预先设计时间表的列车编组车、机车同步调度优化集成方法
在铁路网中,在列车始发站提供空车和机车,并根据时间表进行动态列车编组规划至关重要。在本研究中,根据时间表同时分配轨道车和机车来计划列车编组。建立了一个混合整数线性规划(MILP)数学模型,旨在使铁路公司的利润最大化,因为铁路网中的货运列车满足了客户的需求。在该数学模型中,除了同时将轨道车和机车分配给列车外,还考虑了火车站的容量、机车的牵引、列车的取消以及机车的主动和空载组成等问题。选择伊朗铁路网作为真实世界的案例研究,以评估所提出的模型。结果表明,在当前和未来的需求情况下,购买特定的轨道车和机车组合,在铁路网中实现了需求满足率和铁路公司利润的最大增长,轨道车和火车头的生产力指标也得到了提高。此外,根据当前和未来需求情况下为车队提供的最佳组合,选择了最佳情况。
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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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