Optimization of urban rail transit station spacing for minimizing passenger travel time

Qiannan Wu , Yang Li , Pengrui Dan
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引用次数: 4

Abstract

Urban rail transit, regarded as the backbone of urban public transportation, can effectively solve the problems of urban traffic congestion and automobile exhaust pollution. However, due to improper planning, unreasonable station location often appears, which seriously affects the service access and mobility of rail transit. In order to improve the station spacing and passenger transport efficiency, a calculation model of station spacing for minimizing passenger travel time was established. In order to enhance the adaptability of the model in different cities, the grid road network and radial road network are considered when establishing the model. The results show that the station spacing is related to the passenger access/egress speed, the passenger travel distance, the maximum train running speed, the train stop time and the train acceleration. The influence of these parameters on the station spacing is obtained through the control variate method, and there are indeed obvious differences under different road network conditions. The research results can provide theoretical reference for station planning of new lines. Since the station spacing of the operated lines cannot be changed, this study can provide reference for skip-stop operation.

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城市轨道交通车站间距优化,以减少乘客出行时间
城市轨道交通作为城市公共交通的骨干,可以有效解决城市交通拥堵和汽车尾气污染问题。然而,由于规划不当,经常出现车站位置不合理的情况,严重影响了轨道交通的服务可及性和机动性。为了提高车站间距和客运效率,建立了以旅客出行时间最小为目标的车站间距计算模型。为了增强模型对不同城市的适应性,在建立模型时考虑了网格路网和放射状路网。结果表明:车站间距与旅客出入口速度、旅客行程距离、列车最大运行速度、列车停车时间和列车加速度有关。通过控制变量法得到这些参数对车站间距的影响,在不同路网条件下确实存在明显差异。研究结果可为新线车站规划提供理论参考。由于已运行线路的站距不能改变,本研究可为跳停运行提供参考。
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CiteScore
7.10
自引率
8.10%
发文量
41
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