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An integrated approach for the energy-efficient driving strategy optimization of multiple trains by considering regenerative braking

机译:考虑再生制动的多列车节能驾驶策略优化的综合方法

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摘要

With the rapid development of urban rail transit networks, the energy consumption problem of urban rail trains becomes more and more prominent. A critical issue is to reduce the energy consumption of trains through advanced control and optimization techniques. The majority of existing studies in this field focus on (1) the optimization of single train operation strategy and (2) the scheduling of multiple trains, separately. In this paper, we propose an integrated energy-efficient operation optimization method for multiple trains in multiple inter stations by considering regenerative braking. In particular, this paper integrates the energy-efficient operation strategy with optimized train timetable under the operation scenario of two trains in multiple interstations. First, a genetic algorithm is used to optimize the energy-efficient operation strategy for single train in multiple interstations and obtain the relationship between the operation time and operation energy consumption of trains. Then, a particle swarm optimization method is adopted to obtain the optimal operation time of trains (i.e. train timetable) for the purpose of minimizing the overall energy consumption. Finally, real-world case studies based on the operation data of the Beijing subway line 7 are presented to verify the effectiveness of the proposed approach. Numerical experiments show that the proposed approach by optimizing the train operation strategy and timetable can reduce the total energy consumption by 16.24% compared with the real-world train operation strategy.
机译:随着城市轨道交通网络的迅猛发展,城市轨道交通的能耗问题日益突出。一个关键问题是通过先进的控制和优化技术来减少火车的能耗。该领域中的大多数现有研究集中在(1)优化单列火车运营策略和(2)分别调度多列火车。在本文中,我们考虑了再生制动,提出了一种针对多站之间多列火车的综合节能运行优化方法。特别是,本文将多站场中两列火车的运行情景下的节能运行策略与优化的火车时刻表相结合。首先,采用遗传算法对多站对换列车的节能运行策略进行优化,得到列车运行时间与运行能耗之间的关系。然后,采用粒子群优化方法来获得列车的最佳运行时间(即列车时刻表),以使总能耗最小。最后,基于北京地铁7号线的运行数据进行了实际案例研究,以验证该方法的有效性。数值实验表明,该方法通过优化列车的运行策略和时刻表,与实际的列车运行策略相比,可将总能耗降低16.24%。

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