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An optimization to schedule train operations with phase-regular framework for intercity rail lines

机译:利用城际铁路的相位规则框架对火车运行进行调度的优化

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The most important operating problem for intercity rail lines, which are characterized with the train operations at rapid speed and high frequency, is to design a service-oriented schedule with the minimum cost. This paper proposes a phase-regular scheduling method which divides a day equally into several time blocks and applies a regular train-departing interval and the same train length for each period under the period-dependent demand conditions. A nonlinear mixed zero-one programming model, which could accurately calculate the passenger waiting time and the in-train crowded cost, is developed in this study. A hybrid genetic algorithm associated with the layered crossover and mutation operation is carefully designed to solve the proposed model. Finally, the effectiveness of the proposed model and algorithm is illustrated through the application to Hefei-Wuhan intercity rail line in China.
机译:城际铁路最重要的运行问题是设计出以服务为导向的时间表,以最低的成本来解决这些问题,这些问题的特点是列车在快速,高频的情况下运行。本文提出了一种阶段规则的调度方法,该方法将一天平均划分为多个时间块,并在与周期相关的需求条件下,对每个周期应用规则的列车发车间隔和相同的列车长度。本研究开发了一种非线性混合零一规划模型,该模型可以准确地计算出乘客的等候时间和列车内拥挤成本。精心设计了与分层交叉和变异操作相关的混合遗传算法,以解决该模型。最后,通过在中国合肥-武汉城际铁路上的应用,说明了所提模型和算法的有效性。

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