Assignment Based Resource Constrained Path Generation for Railway Rolling Stock Optimization

Authors Boris Grimm, Ralf Borndörfer, Julian Bushe



PDF
Thumbnail PDF

File

OASIcs.ATMOS.2023.13.pdf
  • Filesize: 0.62 MB
  • 15 pages

Document Identifiers

Author Details

Boris Grimm
  • Freie Universtät Berlin, Germany
  • Zuse Institute Berlin, Germany
Ralf Borndörfer
  • Freie Universtät Berlin, Germany
  • Zuse Institute Berlin, Germany
Julian Bushe
  • Zuse Institute Berlin, Germany

Cite As Get BibTex

Boris Grimm, Ralf Borndörfer, and Julian Bushe. Assignment Based Resource Constrained Path Generation for Railway Rolling Stock Optimization. In 23rd Symposium on Algorithmic Approaches for Transportation Modelling, Optimization, and Systems (ATMOS 2023). Open Access Series in Informatics (OASIcs), Volume 115, pp. 13:1-13:15, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2023) https://doi.org/10.4230/OASIcs.ATMOS.2023.13

Abstract

The fundamental task of every passenger railway operator is to offer an attractive railway timetable to the passengers while operating it as cost efficiently as possible. The available rolling stock has to be assigned to trips so that all trips are operated, operational requirements are satisfied, and the operating costs are minimum. This so-called Rolling Stock Rotation Problem (RSRP) is well studied in the literature. In this paper we consider an acyclic version of the RSRP that includes vehicle maintenance. As the latter is an important aspect, maintenance services have to be planned simultaneously to ensure the rotation’s feasibility in practice. Indeed, regular maintenance is important for the safety and reliability of the rolling stock as well as enforced by law in many countries. We present a new integer programming formulation that links a hyperflow to model vehicle compositions and their coupling decisions to a set of path variables that take care of the resource consumption of the individual vehicles. To solve the model we developed different column generation algorithms which are compared to each other as well as to the MILP flow formulation of [Ralf Borndörfer et al., 2016] on a test set of real world instances.

Subject Classification

ACM Subject Classification
  • Mathematics of computing → Combinatorial optimization
Keywords
  • Railway Rolling Stock Optimization
  • Integer Programming
  • Column Generation

Metrics

  • Access Statistics
  • Total Accesses (updated on a weekly basis)
    0
    PDF Downloads

References

  1. M. L. Balinski and R. E. Gomory. A Primal Method for the Assignment and Transportation Problems. Management Science, 10(3):578-593, April 1964. URL: https://doi.org/10.1287/mnsc.10.3.578.
  2. Ralf Borndörfer, Markus Reuther, Thomas Schlechte, Kerstin Waas, and Steffen Weider. Integrated optimization of rolling stock rotations for intercity railways. Transportation Science, 50(3):863-877, 2016. URL: https://doi.org/10.1287/trsc.2015.0633.
  3. Julian Bushe. Rolling stock rotation optimization with maintenance paths. Master’s thesis, Technische Universität Berlin, 2021. Google Scholar
  4. Valentina Cacchiani, Alberto Caprara, and Paolo Toth. Solving a real-world train-unit assignment problem. Mathematical Programming, 124(1):207-231, July 2010. URL: https://doi.org/10.1007/s10107-010-0361-y.
  5. Jacques Desrosiers and Marco E Lübbecke. A primer in column generation. In Column generation, pages 1-32. Springer, 2005. Google Scholar
  6. Pieter-Jan Fioole, Leo Kroon, Gábor Maróti, and Alexander Schrijver. A rolling stock circulation model for combining and splitting of passenger trains. European Journal of Operational Research, 174(2):1281-1297, 2006. URL: https://doi.org/10.1016/j.ejor.2005.03.032.
  7. Giovanni Luca Giacco, Andrea D’Ariano, and Dario Pacciarelli. Rolling stock rostering optimization under maintenance constraints. Journal of Intelligent Transportation Systems, 18(1):95-105, 2014. URL: https://doi.org/10.1080/15472450.2013.801712.
  8. Boris Grimm, Ralf Borndörfer, Markus Reuther, Stanley Schade, and Thomas Schlechte. A propagation approach to acyclic rolling stock rotation optimization. In 7th International Conference on railway operations modelling and Analysis (RailLille 2017), pages 688-698, 2017. Google Scholar
  9. Stefan Irnich and Guy Desaulniers. Shortest path problems with resource constraints. In Column generation, pages 33-65. Springer, 2005. Google Scholar
  10. Richard M. Lusby, Jørgen Thorlund Haahr, Jesper Larsen, and David Pisinger. A branch-and-price algorithm for railway rolling stock rescheduling. Transportation Research Part B: Methodological, 99:228-250, 2017. URL: https://doi.org/10.1016/j.trb.2017.03.003.
  11. Markus Reuther. Mathematical Optimization of Rolling Stock Rotations. PhD thesis, Technical University Berlin, 2017. URL: https://depositonce.tu-berlin.de/handle/11303/6309.
  12. Per Thorlacius, Jesper Larsen, and Marco Laumanns. An integrated rolling stock planning model for the Copenhagen suburban passenger railway. Journal of Rail Transport Planning & Management, 5(4):240-262, 2015. URL: https://doi.org/10.1016/j.jrtpm.2015.11.001.
  13. Joris C. Wagenaar, Leo G. Kroon, and Marie Schmidt. Maintenance appointments in railway rolling stock rescheduling. Transportation Science, 51(4):1138-1160, 2017. URL: https://doi.org/10.1287/trsc.2016.0701.
  14. Qingwei Zhong, Richard M. Lusby, Jesper Larsen, Yongxiang Zhang, and Qiyuan Peng. Rolling stock scheduling with maintenance requirements at the Chinese high-speed railway. Transportation Research Part B: Methodological, 126:24-44, 2019. URL: https://doi.org/10.1016/j.trb.2019.05.013.
Questions / Remarks / Feedback
X

Feedback for Dagstuhl Publishing


Thanks for your feedback!

Feedback submitted

Could not send message

Please try again later or send an E-mail