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Study of the Bus Dynamic Coscheduling Optimization Method under Urban Rail Transit Line Emergency

机译:城市轨道交通紧急状态下公交动态调度优化方法研究

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摘要

As one of the most important urban commuter transportation modes, urban rail transit (URT) has been acting as a key solution for supporting mobility needs in high-density urban areas. However, in recent years, high frequency of unexpected events has caused serious service disruptions in URT system, greatly harming passenger safety and resulting in severe traffic delays. Therefore, there is an urgent need to study emergency evacuation problem in URT. In this paper, a method of bus dynamic coscheduling is proposed and two models are built based on different evacuation destinations including URT stations and surrounding bus parking spots. A dynamic coscheduling scheme for buses can be obtained by the models. In the model solution process, a new concept—the equivalent parking spot—is proposed to transform the nonlinear model into an integer linear programming (ILP) problem. A case study is conducted to verify the feasibility of models. Also, sensitivity analysis of two vital factors is carried out to analyze their effects on the total evacuation time. The results reveal that the designed capacity of buses has a negative influence on the total evacuation time, while an increase in the number of passengers has a positive effect. Finally, some significant optimizing strategies are proposed.
机译:作为最重要的城市通勤交通方式之一,城市轨道交通(URT)一直是满足高密度城市地区交通需求的关键解决方案。但是,近年来,突发事件的频繁发生导致URT系统中的服务严重中断,极大地损害了乘客的安全,并导致严重的交通延误。因此,迫切需要研究URT中的紧急疏散问题。本文提出了一种公交动态协调调度方法,并根据不同的疏散目的地,建立了两个模型,包括地铁站和周边公交停车场。通过模型可以获得公交车的动态调度方案。在模型求解过程中,提出了一个新概念-等效停车位-将非线性模型转换为整数线性规划(ILP)问题。进行了案例研究以验证模型的可行性。另外,还对两个重要因素进行了敏感性分析,以分析它们对总疏散时间的影响。结果表明,公交车的设计容量对总疏散时间有负面影响,而载客量的增加则具有积极影响。最后,提出了一些重要的优化策略。

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