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Dwell Time Modelling and Optimized Simulations for Crowded Rail Transit Lines Based on Train Capacity

机译:基于列车通行能力的拥挤轨道交通线路停留时间建模与优化仿真

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摘要

Understanding the nature of rail transit dwell time has potential benefits for both the users and the operators. Crowded passenger trains cause longer dwell times and may prevent some passengers from boarding the first available train that arrives. Actual dwell time and the process of passenger alighting and boarding are interdependent through the sequence of train stops and propagated delays. A comprehensive and feasible dwell time simulation model was developed and optimized to address the problems associated with scheduled timetables. The paper introduces the factors that affect dwell time in urban rail transit systems, including train headway, the process and number of passengers alighting and boarding the train, and the inability of train doors to properly close the first time because of overcrowded vehicles. Finally, based on a time-driven micro-simulation system, Shanghai rail transit Line 8 is used as an example to quantify the feasibility of scheduled dwell times for different stations, directions of travel and time periods, and a proposed dwell time during peak hours in several crowded stations is presented according to the simulation results.
机译:了解轨道交通停留时间的本质对用户和运营商都有潜在的好处。拥挤的旅客列车会导致更长的停留时间,并可能阻止一些旅客登上第一班到达的可用列车。实际的停留时间与旅客上下车的过程是相互依存的,这取决于火车停靠和延误的顺序。开发并优化了综合可行的停留时间仿真模型,以解决与预定时间表相关的问题。本文介绍了影响城市轨道交通系统停留时间的因素,包括火车车头,下车和登车的过程和乘客人数,以及由于车辆拥挤而导致火车门第一次无法正确关闭。最后,以时间驱动的微仿真系统为基础,以上海轨道交通8号线为例,对不同车站的预定停留时间,行进方向和时间段以及建议的高峰时间停留时间的可行性进行量化。根据仿真结果,给出了几个拥挤站点的位置。

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