• DocumentCode
    1760007
  • Title

    A Subway Train Timetable Optimization Approach Based on Energy-Efficient Operation Strategy

  • Author

    Shuai Su ; Xiang Li ; Tao Tang ; Ziyou Gao

  • Author_Institution
    State Key Lab. of Rail Traffic Control & Safety, Beijing Jiaotong Univ., Beijing, China
  • Volume
    14
  • Issue
    2
  • fYear
    2013
  • fDate
    41426
  • Firstpage
    883
  • Lastpage
    893
  • Abstract
    Given rising energy prices and environmental concerns, train energy-efficient operation techniques are paid more attention as one of the effective methods to reduce operation costs and energy consumption. Generally speaking, the energy-efficient operation technique includes two levels, which optimize the timetable and the speed profiles among successive stations, respectively. To achieve better performance, this paper proposes to optimize the integrated timetable, which includes both the timetable and the speed profiles. First, we provide an analytical formulation to calculate the optimal speed profile with fixed trip time for each section. Second, we design a numerical algorithm to distribute the total trip time among different sections and prove the optimality of the distribution algorithm. Furthermore, we extend the algorithm to generate the integrated timetable. Finally, we present some numerical examples based on the operation data from the Beijing Yizhuang subway line. The simulation results show that energy reduction for the entire route is 14.5%. The computation time for finding the optimal solution is 0.15 s, which implies that the algorithm is fast enough to be used in the automatic train operation (ATO) system for real-time control.
  • Keywords
    cost reduction; energy conservation; energy consumption; optimisation; railways; Beijing Yizhuang subway line; automatic train operation system; distribution algorithm; energy consumption reduction; energy prices; energy-efficient operation strategy; environmental concerns; fixed trip time; integrated timetable; operation cost reduction; optimal speed profile; real-time control; subway train timetable optimization approach; train energy-efficient operation techniques; Acceleration; Algorithm design and analysis; Energy consumption; Force; Mathematical model; Optimization; Resistance; Energy-efficient operation; Pontryagin maximum principle; subway; timetable;
  • fLanguage
    English
  • Journal_Title
    Intelligent Transportation Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1524-9050
  • Type

    jour

  • DOI
    10.1109/TITS.2013.2244885
  • Filename
    6480871