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Optimum Equilibrium Passenger Flow Control Strategies with Delay Penalty Functions under Oversaturated Condition on Urban Rail Transit

机译:城市轨道交通过饱和条件下具有延迟惩罚功能的最佳均衡乘客流量控制策略

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When passengers are oversaturated in the urban rail transit system and a further increase of train frequency is impossible, passenger flow control strategy is an indispensable approach to avoid congestion and ensure safety. To make the best use of train capacity and reduce the passenger waiting time, coordinative flow control is necessary at each station on a line. In most published studies, the equilibrium of passenger distributions among different stations and periods is not considered. As a result, two issues occur making it hard to implement in practical. First, a large number of passengers are held up outside a small number of stations for very long time. Second, there is a large variation of controlled flows for successive time intervals. To alleviate this problem, a single-line equilibrium passenger flow control model is constructed, which minimizes the total passenger delay. By applying different forms of the delay penalty function (constant and linear), flow control strategies such as independent flow control and equilibrium flow control can be reproduced. An improved simulated annealing algorithm is proposed to solve the model. A numerical case is studied to analyze the sensitivity of the functions, and the best parameter relationship in different functions could be confirmed. A real-world case from Batong Line corridor in Beijing subway is used to test the applicability of the model and algorithm, and the result shows that the solution with linear delay penalty functions can not only reduce the total passenger delay but also equilibrate the number of flow control passengers on spatial and temporal.
机译:当乘客在城市轨道交通系统中过度受到时,乘客流量控制策略是一种不可或缺的方法,以避免拥堵和确保安全的不可或缺的方法。为了充分利用火车能力并减少乘客等候时间,在一条线上的每个站都需要协调流量控制。在大多数公开的研究中,不考虑不同站点和时期的乘客分布平衡。因此,发生了两个问题使其难以实际实施。首先,很长一段时间,大量乘客在少数站之外举行。其次,对于连续的时间间隔存在受控流的大变化。为了缓解这个问题,构造了单线平衡客流控制模型,最小化总客延迟。通过应用不同形式的延迟损失功能(恒定和线性),可以再现独立的流量控制和平衡流量等流量控制策略。提出了一种改进的模拟退火算法来解决模型。研究了数值案例以分析功能的灵敏度,并且可以确认不同功能中的最佳参数关系。来自北京地铁的Batong线路走廊的真实案例用于测试模型和算法的适用性,结果表明,线性延迟惩罚功能的解决方案不仅可以减少总乘客延迟,还能平衡数量空间和时间的流量控制乘客。

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