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Energy Efficient Metro Train Running Time Rescheduling Model for Fully Automatic Operation Lines

机译:节能地铁列车运行时间重新安排型号全自动运行线

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Reducing energy consumption without degrading the normal operation of metro trains and service quality has received increasing attention. Besides, fully automatic operation (FAO), for which no drivers and crew attendants are needed and all functions are controlled automatically, has been applied as a new generation train operation integrated control technology to achieve better performance. In this paper, a two-level energy-efficient optimization approach is proposed based on the characteristics of the FAO system. First, we formulate a single train trajectory optimization model and develop a genetic algorithm to calculate the optimal speed curves with variable running time. The Pareto frontier that represents the relationship between energy consumption and running time can be obtained. Second, we propose a sensitivity analysis method to distribute the total running time among different station segments based on the Pareto solutions in Level 1. Furthermore, the global optimal solution can be obtained. Finally, a case study of the Nanning Rail Transit Line 5 demonstrates that an optimal distribution of running time leads to extra energy savings compared to the original timetable.
机译:在不降低地铁列车的正常运行和服务质量的情况下,减少能量消耗得到了越来越长的关注。此外,完全自动操作(粮农组织),没有驾驶员和船员服务员,并且所有功能都被自动控制,已被应用为新一代列车运行集成控制技术,以实现更好的性能。本文基于粮农组织系统的特性提出了一种两级节能优化方法。首先,我们制定单个列车轨迹优化模型,并开发遗传算法,以计算具有可变运行时间的最佳速度曲线。可以获得代表能量消耗和运行时间之间关系的帕累托前沿。其次,我们提出了一种敏感性分析方法,以基于级别的帕累托解决方案分布不同站段之间的总运行时间。此外,可以获得全局最佳解决方案。最后,纳米轨道交通线5的案例研究表明,与原始时间表相比,运行时间的最佳分布导致额外的节能。

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