4.7 Article

An Efficient Train Timetable Scheduling Approach With Regenerative-Energy Supplementation Strategy Responding to Potential Power Interruptions

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TITS.2021.3125781

关键词

Substations; Optimization; Reliability; Energy consumption; Safety; Heuristic algorithms; Genetic algorithms; Potential power interruption; energy allocation; regenerative energy supplementation; multi-objective optimization

资金

  1. National Natural Science Foundation of China [72001008, 71890972/71890970]
  2. State Key Laboratory of Rail Traffic Control and Safety [RCS2020K002]
  3. 111 Project [B20071]
  4. Beijing Natural Science Foundation Program [L181002]
  5. Postdoctoral Science Foundation of China [2019M660373]

向作者/读者索取更多资源

This study proposes an energy supplementation strategy utilizing regenerative energy in case of power interruptions, and develops an algorithm for optimizing the timetable. The results show significant improvements in energy efficiency, reduced passenger waiting time, and decreased power interruption risks with the suggested approach compared to the current method.
The timetable of a metro system is essential for trains running safely and efficiently. For the design of a timetable, the potential power interruptions of energy supplies from the substations to the trains should be borne in mind. In case potential power interruptions occur, the backup running plan should be completed responsively to accommodate the passenger and energy demands In this study, we propose an energy supplementation strategy utilizing regenerative energy from decelerating trains in the event of power interruptions and develop a tri-objective optimization model incorporating passenger travel time, potential power interruption, and energy consumption. Particularly, for calculating regenerative energy utilization, we suggest a many-to-many energy allocation mechanism between decelerating and accelerating trains based on the real-time energy demands and supplies. A heuristic algorithm is developed to obtain a regular and cyclic timetable for minimizing passenger travel time, the potential power interruptions, and energy consumption. The suggested model and algorithm are tested based on the smart-card data collected from a bidirectional metro line in Beijing (China). The results show that the suggested approach significantly improves energy efficiency, reduces passenger waiting time, and decreases power interruption risks, compared with the currently used scheduling method.

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