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Timetable Optimization for Utilization of Regenerative Braking Energy: A Single Line Case over Istanbul Metro Network

机译:再生制动能量利用的时间表优化:伊斯坦布尔地铁网络的单线案例

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Energy costs still have a large proportion in operational expenses in metro lines, even though metro is the least energy-consuming mode of transport. Recently, researchers have shown an increased interest in the utilization of regenerative braking energy (RBE) to reduce the energy consumption: synchronizing the accelerating and braking trains is one of the more practical ways of the utilization of RBE. In this paper, a timetable optimization model is proposed to pair the accelerating and breaking trains in the operation to enhance the utilization of RBE. The main objective of the model proposed is to provide maximum total overlapping time between breaking and accelerating periods of trains by adjusting the timetable. In comparison with the existing methods, the proposed timetable optimization model requires less modeling information and calculates more train in cooperation. A case study over Istanbul Metro M4 line is studied employing a Genetic Algorithm to real operating data. The simulation results confirm the effectiveness of the proposed method that the total overlapping time has increased to a considerable extent in different headway scenarios.
机译:即使地铁是最不消耗能源的运输方式,能源成本仍在地铁线路的运营费用中占很大比例。最近,研究人员对利用再生制动能量(RBE)来降低能耗越来越感兴趣:同步加速和制动列车是利用RBE的更实用的方法之一。本文提出了一个时间表优化模型,将运行中的加速和中断列车配对,以提高RBE的利用率。提出的模型的主要目的是通过调整时间表,在列车的中断和加速时段之间提供最大的总重叠时间。与现有方法相比,提出的时刻表优化模型需要较少的建模信息,并且可以协同计算更多的列车。研究了伊斯坦布尔地铁M4线的一个案例,该案例采用遗传算法对实际运行数据进行了研究。仿真结果证实了所提出方法的有效性,即在不同的车头情况下,总的重叠时间已大大增加。

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