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Cooperative Passenger Inflow Control in Urban Mass Transit Network with Constraint on Capacity of Station

机译:限制站点容量的城市轨道交通协同客流控制

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In urban mass transit network, when passengers’ trip demands exceed capacity of transport, the numbers of passengers accumulating in the original or transfer stations always exceed the safety limitation of those stations. It is necessary to control passenger inflow of stations to assure the safety of stations and the efficiency of passengers. We define time of delay (TD) to evaluate inflow control solutions, which is the sum of waiting time outside of stations caused by inflow control and extra waiting time on platform waiting for next coming train because of insufficient capacity of first coming train. We build a model about cooperative passenger inflow control in the whole network (CPICN) with constraint on capacity of station. The objective of CPICN is to minimize the average time of delay (ATD) and maximum time of delay (MTD). Particle swarm optimization for constrained optimization problem is used to find the optimal solution. The numeral experiments are carried out to prove the feasibility and efficiency of the model proposed in this paper.
机译:在城市公共交通网络中,当旅客的出行需求超出了运输能力时,在原始车站或中转站累积的乘客人数总是超过这些车站的安全限制。必须控制车站的乘客流入量,以确保车站的安全性和乘客的效率。我们定义延迟时间(TD)来评估流量控制解决方案,该时间是流量控制导致的站外等待时间与平台上等待下一列火车的额外等待时间(由于第一列火车的容量不足)的总和。在车站容量约束的基础上,建立了全网合作旅客流量控制模型。 CPICN的目标是最大程度地减少平均延迟时间(ATD)和最大延迟时间(MTD)。针对约束优化问题,采用粒子群算法求解最优解。通过数值实验证明了该模型的可行性和有效性。

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