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A Bilevel Programming Model to Optimize Train Operation Based on Satisfaction for an Intercity Rail Line

机译:基于满意度的城际铁路双层运营优化编程模型

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The passenger travel demands for intercity rail lines fluctuate obviously during different time periods, which makes the rail departments unable to establish an even train operation scheme.This paper considers an optimization problem for train operations which respond to passenger travel demands of different periods in intercity rail lines. A satisfactory function of passenger travelling is proposed by means of analyzing the passengers' travel choice behavior and correlative influencing factors. On this basis, the paper formulates a bilevel programming model which maximizes interests of railway enterprises and travelling satisfaction of each passenger. The trains operation in different periods can be optimized through upper layer planning of the model, while considering the passenger flow distribution problem based on the Wardrop user equilibrium principle in the lower layer planning. Then, a genetic algorithm is designed according to model features for solving the upper laying. The Frank-Wolfe algorithm is used for solving the lower layer planning. Finally, a numerical example is provided to demonstrate the application of the method proposed in this paper.
机译:城际铁路的旅客出行需求在不同时间段波动明显,使铁路部门无法建立均匀的列车运行方案。线。通过分析旅客的出行选择行为及相关影响因素,提出了令人满意的旅客出行功能。在此基础上,本文提出了一种双层规划模型,该模型使铁路企业的利益和每个乘客的旅行满意度最大化。可以通过模型的上层计划优化不同时期的列车运行,同时在下层计划中考虑基于Wardrop用户均衡原理的客流分配问题。然后,根据模型特征设计了一种遗传算法来求解上层铺设。 Frank-Wolfe算法用于求解下层计划。最后,通过数值例子说明了本文提出的方法的应用。

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