Zhou Yu, Zhou Leishan, Wang Yun, Li Xiaomeng, Yang Zhuo
MOE Key Laboratory for Urban Transportation Complex System Theory and Technology, School of Traffic and Transportation, Beijing Jiaotong University, Beijing, China.
Department of Civil, Environmental, and Infrastructure Engineering, Volgenau School of Engineering, George Mason University, Fairfax, Virginia, United States of America.
PLoS One. 2017 May 10;12(5):e0175698. doi: 10.1371/journal.pone.0175698. eCollection 2017.
As a sustainable transportation mode, high-speed railway (HSR) has become an efficient way to meet the huge travel demand. However, due to the high acquisition and maintenance cost, it is impossible to build enough infrastructure and purchase enough train-sets. Great efforts are required to improve the transport capability of HSR. The utilization efficiency of train-sets (carrying tools of HSR) is one of the most important factors of the transport capacity of HSR. In order to enhance the utilization efficiency of the train-sets, this paper proposed a train-set circulation optimization model to minimize the total connection time. An innovative two-stage approach which contains segments generation and segments combination was designed to solve this model. In order to verify the feasibility of the proposed approach, an experiment was carried out in the Beijing-Tianjin passenger dedicated line, to fulfill a 174 trips train diagram. The model results showed that compared with the traditional Ant Colony Algorithm (ACA), the utilization efficiency of train-sets can be increased from 43.4% (ACA) to 46.9% (Two-Stage), and 1 train-set can be saved up to fulfill the same transportation tasks. The approach proposed in the study is faster and more stable than the traditional ones, by using which, the HSR staff can draw up the train-sets circulation plan more quickly and the utilization efficiency of the HSR system is also improved.
作为一种可持续的交通方式,高速铁路已成为满足巨大出行需求的有效途径。然而,由于购置和维护成本高昂,不可能建设足够的基础设施并购置足够的列车组。提高高速铁路的运输能力需要付出巨大努力。列车组(高速铁路的运载工具)的利用效率是高速铁路运输能力的最重要因素之一。为了提高列车组的利用效率,本文提出了一种列车组循环优化模型,以最小化总衔接时间。设计了一种创新的两阶段方法,包括区段生成和区段组合,来求解该模型。为了验证所提方法的可行性,在北京 - 天津客运专线上进行了一项实验,以实现一个包含174趟列车的运行图。模型结果表明,与传统蚁群算法(ACA)相比,列车组的利用效率可从43.4%(ACA)提高到46.9%(两阶段方法),并且在完成相同运输任务的情况下可节省1个列车组。本研究提出的方法比传统方法更快、更稳定,利用该方法,高速铁路工作人员可以更快地制定列车组循环计划,同时高速铁路系统的利用效率也得到了提高。