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A SUBWAY TIMETABLE OPTIMIZATION MODEL FOR MAXIMIZING THE UTILIZATION OF RECOVERY ENERGY

机译:用于最大限度地利用恢复能量的地铁时间表优化模型

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Since the regenerative braking technique can recover considerable electricity from braking trains, it is maturely applied in subway systems. Generally speaking, except a small part of the recovery energy is used by the on-board auxiliary services, most of them is fed back into the overhead contact line. If the feedback energy cannot be absorbed by adjacent accelerating trains timely, it will be consumed by resistances. For maximizing the utilization of recovery energy, this paper proposes a timetable optimization model to coordinate the accelerating and braking processes of up trains and down trains. Firstly, we analyze the coordinating rules. Secondly, we propose an integer programming model to maximize the utilization of recovery energy with headway time and dwell time control. Furthermore, we design a genetic algorithm to solve the optimal timetable. Finally, we conduct numerical examples based on the operation data from Beijing Yizhuang subway line of China. The results illustrate that the proposed model can significantly save energy by 21.58% compared with the current timetable.
机译:由于再生制动技术可以从制动训练中恢复相当大的电力,因此它在地铁系统中熟致地应用。一般来说,除了车载辅助服务使用的恢复能量的一小部分外,大多数都被反馈到顶置接触线。如果反馈能量不能及时通过相邻的加速列车吸收,则它将被电阻消耗。为了使恢复能量的利用率最大化,本文提出了一种时间表优化模型,以协调达到列车和下降列车的加速和制动过程。首先,我们分析协调规则。其次,我们提出了一种整数编程模型,以最大限度地利用恢复能量,使用始终时间和停留时间控制。此外,我们设计一种遗传算法来解决最佳时间表。最后,我们基于来自中国北京银庄地铁线的运营数据进行数值示例。结果表明,与当前的时间表相比,所提出的模型可以显着将能量节省21.58%。

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