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Integrated Optimization of Dispatching Decision and Speed Trajectory for High-Speed Railway Under Disturbances*

机译:干扰下高速铁路调度决策与速度轨迹的综合优化*

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摘要

The integrated optimization of train operation control and dynamic dispatching and the generation of integrated strategy is an important challenge to enhance the essence of emergency response capability of high-speed railway systems (HSRs) when dealing with emergencies. Considering that in actual high-speed railways, there are already preset optimized speed trajectories inside ATO. On this basis, this paper proposes a real-time train rescheduling approach that integrates preset speed trajectory selection and timetable optimization is to reduce the weighted sum of total delay time and energy consumption as much as possible, and the mixed-integer linear programming (MILP) model is established and solved in CPLEX. The simulation experiment at a train delay scenario is performed and the results show that the proposed method can reduce train delay and energy consumption compared with the integrated method without considering energy consumption and other non-integrated methods.
机译:列车运营控制和动态调度的综合优化以及集成策略的产生是提高高速铁路系统(HSRS)在处理紧急情况时提高应急响应能力的本质的重要挑战。考虑到在实际的高速铁路中,已经预设了ATO内部的优化速度轨迹。在此基础上,本文提出了一种实时列车重新安排方法,它集成了预设速度轨迹选择和时间线优化,是尽可能地减少总延迟时间和能量消耗的加权和,以及混合整数线性编程(MILP )模型建立并在CPLEL中解决。进行列车延迟场景的仿真实验,结果表明,与集成方法相比,该方法可以降低列车延迟和能耗而不考虑能耗和其他非集成方法。

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