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Reducing metro trip times and energy consumption through speed control, holding and boarding limits

机译:通过控制速度,保持和上下车限制来减少地铁出行时间和能耗

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摘要

A mathematical programming model is presented for controlling the operation of a line in a metro train system so as to minimize social cost in passenger trip times and energy consumption. The minimization is accomplished through three control strategies: speed control between stations, train holding and boarding limits. All three can be implemented individually or simultaneously. The proposed approach is evaluated by simulations demonstrating that the speed control and holding strategies alone lower social cost by up to 20% compared to uncontrolled baseline operation. Although average train speed declines slightly in the model's solutions, the reducible portion of total trip time falls by more than 70%. The model also distributes passengers more evenly, thus improving user comfort. These results demonstrate that substantial reductions in both user trip times and energy costs can be achieved simultaneously.
机译:提出了一种数学编程模型,用于控制地铁列车系统中线路的运行,以最大程度地减少乘客出行时间和能源消耗方面的社会成本。最小化通过三种控制策略来实现:车站之间的速度控制,列车保持和上下车限制。这三个可以单独或同时实现。通过仿真评估提出的方法,表明与不受控制的基准运行相比,仅速度控制和保持策略可将社会成本降低多达20%。尽管在模型的解决方案中平均火车速度略有下降,但总行程时间的可减少部分却下降了70%以上。该模型还可以更均匀地分配乘客,从而提高了用户的舒适度。这些结果表明,可以同时大幅减少用户的出行时间和能源成本。

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