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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Networked Timetable Stability Improvement Based on a Bilevel Optimization Programming Model
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Networked Timetable Stability Improvement Based on a Bilevel Optimization Programming Model

机译:基于双层优化规划模型的网络时间表稳定性改进

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Train timetable stability is the possibility to recover the status of the trains to serve as arranged according to the original timetable when the trains are disturbed. To improve the train timetable stability from the network perspective, the bilevel programming model is constructed, in which the upper level programming is to optimize the timetable stability on the network level and the lower is to improve the timetable stability on the dispatching railway segments. Timetable stability on the network level is defined with the variances of the utilization coefficients of the section capacity and station capacity. Weights of stations and sections are decided by the capacity index number and the degrees. The lower level programming focuses on the buffer time distribution plan of the trains operating on the sections and stations, taking the operating rules of the trains as constraints. A novel particle swarm algorithm is proposed and designed for the bilevel programming model. The computing case proves the feasibility of the model and the efficiency of the algorithm. The method outlined in this paper can be embedded in the networked train operation dispatching system.
机译:火车时刻表的稳定性是在火车受到干扰时恢复火车状态以按照原始时刻表安排的可能性。为了从网络角度提高列车时刻表的稳定性,构建了双层规划模型,其中上层规划是在网络层上优化时刻表的稳定性,而下层规划是在调度铁路段上提高时刻表的稳定性。网络水平上的时间表稳定性由路段容量和车站容量的利用系数的方差定义。站点和分区的权重由容量索引号和度数决定。下层编程着眼于在区段和车站上运行的火车的缓冲时间分配计划,以火车的运行规则为约束。提出了一种新颖的粒子群算法并设计了双层规划模型。通过算例验证了该模型的可行性和算法的有效性。本文概述的方法可以嵌入到网络列车运行调度系统中。

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