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Energy-Efficient Operation of Single Train Based on the Control Strategy of ATO

机译:基于ATO控制策略的单列列车节能运行

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Energy efficiency is paid more and more attention in urban rail transit systems. Optimization on Automatic Train Operation (ATO) is important to energy-efficient operation of trains. ATO generates the recommended speed curve based on the railway line parameters, the scheduled time table, and the vehicle conditions. The control strategy of ATO makes the train running along the recommended speed curve to meet the requirements on precision of train stopping, punctuality, energy-saving and riding comfort. The optimization of recommended speed curve in traditional research does not consider the influence of the control strategy of ATO. The energy consumption calculated by such a recommended speed curve and the practical curve of the train operation have a significant deviation. In this paper, a more accurate model of the train energy consumption is presented by considering the control strategy of ATO. Two modifications of Tabu Search (TS) algorithm, which are named as Acceleration Rate Decided Modification (ARDM) and Distance Decided Modification (DDM), are proposed to optimize train recommended speed curve based on the presented model. Case studies have been conducted based on Beijing Subway to illustrate that the proposed algorithm results in good performance with regards to energy saving. In addition, the computation time is within 1 s, which is short enough to be applied in the online control of trains.
机译:在城市轨道交通系统中,能源效率越来越受到关注。火车自动运行(ATO)的优化对于火车的节能运行非常重要。 ATO根据铁路线参数,预定时间表和车辆状况生成建议的速度曲线。 ATO的控制策略使列车沿着推荐的速度曲线行驶,从而满足列车停止精度,准时性,节能性和乘坐舒适性的要求。传统研究中推荐速度曲线的优化并未考虑ATO控制策略的影响。通过这样的推荐速度曲线和列车运行的实际曲线计算出的能量消耗具有明显的偏差。在本文中,通过考虑ATO的控制策略,提出了一种更准确的列车能耗模型。基于所提出的模型,提出了两种禁忌搜索(TS)算法的改进方案,分别称为加速度决定修正(ARDM)和距离决定修正(DDM),以优化列车的推荐速度曲线。基于北京地铁的案例研究表明,该算法在节能方面具有良好的性能。此外,计算时间在1 s之内,这足够短,可以应用于火车的在线控制。

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