A modelling and simulation study of a metro line as a time-delayed switched system

Berkin Birol, Ali Fuat Ergenç
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引用次数: 1

Abstract

In public transportation systems, there is a linear relationship between the passenger quantities in a station and the headway of the vehicles. An optimized headway is beneficial for both passenger satisfaction and cost reduction, since reducing the headway will increase operational costs. The headway update starts from the first station and propagates to the other stations with a time delay, τ, originating from the train's travel time between the first station and the affected station. A well-defined model of the passenger quantities in the transportation line is required for tuning the headway efficiently. In this study, the transportation system is considered as a switched time-delayed system since the change in passenger quantities is dependent on the state of a train arriving at the station and travel time is a pure delay between stations. A sample metro line has been modelled as a switched time-delayed system and simulated on MATLAB Simulink® utilizing real-world data provided by Metro Istanbul. The results of the simulations of this new model have been compared to the traditional discrete event simulations of the Arena®. Both results were consistent and the simulation based on our switched time-delayed system mathematical model was significantly faster and dynamically adjustable.

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地铁线路延时切换系统的建模与仿真研究
在公共交通系统中,车站的乘客数量与车辆的车头距之间存在线性关系。优化车头时距有利于提高乘客满意度和降低成本,因为车头时距的降低会增加运营成本。车头时距更新从第一个车站开始,并以时间延迟τ传播到其他车站,时间延迟τ源于列车在第一个车站和受影响的车站之间的行驶时间。为了有效地调整车头时距,需要一个定义良好的运输线路客运量模型。在本研究中,运输系统被认为是一个切换时滞系统,因为乘客数量的变化取决于火车到达车站的状态,并且旅行时间是站与站之间的纯粹延迟。一条地铁线路被建模为一个切换时滞系统,并利用伊斯坦布尔地铁提供的真实世界数据在MATLAB Simulink®上进行了仿真。该模型的模拟结果与传统的Arena®离散事件模拟结果进行了比较。结果表明,基于切换时滞系统数学模型的仿真速度明显加快,且具有动态可调性。
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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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