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Demand-Driven Train Schedule Synchronization for High-Speed Rail Lines

机译:高速铁路的需求驱动列车时刻表同步

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This paper addresses a new class of train scheduling problems with two interconnected high-speed rail lines under given and precise time-dependent origin–destination demand input. The proposed systematic schedule synchronization approach focuses on satisfying the requirements of transfer passengers from one rail line to another rail line. Aiming to minimize passenger waiting times at stations and crowding disutility in trains, a nonlinear optimization model for a single-line case is formulated to demonstrate the modeling framework of train scheduling problems. The model is then extended to a two-line case by explicitly taking into account the number of boarding and alighting passengers at the connection station. Using a state-space representation, a novel dynamic programming algorithm is designed to solve the single-line problem as a deterministic finite-state problem with sequential decisions. An integer coding-based genetic algorithm procedure is developed to solve the proposed model for general cases with two lines. A simplified real-world example illustrates that the designed schedule is beneficial to the through passengers and transfer passengers simultaneously.
机译:在给定且精确的与时间相关的始发地-目的地需求输入下,本文解决了具有两条相互连接的高铁线路的新型火车调度问题。拟议的系统时间表同步方法侧重于满足将乘客从一条铁路线转移到另一条铁路线的需求。为了最大程度地减少车站的候车时间和火车的拥挤浪费,建立了针对单线情况的非线性优化模型,以证明火车调度问题的建模框架。然后,通过明确考虑连接站的登机和下车乘客数量,将模型扩展到两行模式。使用状态空间表示,设计了一种新颖的动态规划算法来解决单线问题,将其作为具有顺序决策的确定性有限状态问题。开发了一种基于整数编码的遗传算法程序,以解决两行通用情况下的模型。一个简化的实际示例说明,设计的时间表对于直达乘客和转机乘客都是有利的。

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