Utilization of computer simulation for detection non-standard situations within single-track lines

  • Jan Fikejz  ,
  • Jan Merta  
  • a,b Department of Software Technologies, FEI, University of Pardubice, Pardubice, Czech Republic
Cite as
Fikejz J., Merta J. (2019). Utilization of computer simulation for detection non-standard situations within single-track lines. Proceedings of the 31st European Modeling & Simulation Symposium (EMSS 2019), pp. 352-358. DOI: https://doi.org/10.46354/i3m.2019.emss.049.

Abstract

This article deals with the use of computer simulation for induction and detection of non-standard/crisis situations within single-track railways. First, attention is paid to the collection and evaluation of historical data, which are then used for the designed simulator. The article then focuses on the design of a simulation tool for inducing non-standard/crisis situations within a monitored segment of a railway network. Simulation tool is then used for selected experiments.

References

  1. Dorazil, P. Základní vlastnosti kolejových obvodů bez izolovaných styků. Pardubice, 2008. Bachelor thesis. University of Pardubice. Supervisor: Milan Kunhart.
  2. Fikejz, J. and A. Kavička. Utilisation of computer simulation for testing additional support for dispatching rail traffic. In: European Simulation and Modelling Conference, 2011. Ostende: EUROSIS - ETI, 2011. p. 225-231. ISBN 978-90-77381-66-3.
  3. Fikejz, J. and E. Řezanina, Utilization of computer simulation for detection non-standard situations within the new data layer of railway network model. In: The 26th European Modeling & Simulation Symposium. Bordeaux, 2014s. 371-377, ISBN 978-88-97999-32-4
  4. Kolář, P. Řízení provozu na vedlejších železničních tratích. Seminář ZČU Plzeň-Fakulta elektrotechnická [online]. 2014 [cit. 2014-12-12]. http://old.fel.zcu.cz/Data/documents/sem_de_2014/5-RB_Kolar.pdf
  5. KOM 2011) 144 - WHITE PAPER - A Roadmap to a Single European Transport Area - Creating a competitive and resource efficient transport system.
  6. Kothuri, R. et al. Pro Oracle Spatial for Oracle database 11g. New York, NY: Distributed to the book trade worldwideby Springer-Verlag New York, c2007, xxxiv, 787 p. ISBN 15-905-9899-7.
  7. Libbrecht, R. and H. Sturesson. LOCOPROL: Final Report [online]. 2005 [cit. 2015-06-10].:http://www.transport-research.info/Upload/Documents/200607/20060727_153639_69273_LOCOPROL_Final_Report.pdf
  8. Low cost ERTMS implementation: ERTMS Regional.Railwaysignalling [online]. 2014 [cit. 2016-01-02]. http://www.railwaysignalling.eu/ertms-regional
  9. Mouna L. Integrated Applications Promotion Programme: Train Integrated Safety Satellite System (3InSat) Demonstration project, Rome 2013,[online]. [cit. 2015-06-10]. https://artesapps.esa.int/sites/default/files/1-IAP%20ASTS%203InSat_18-04-2013.pdf
  10. Redding, L. Satloc: a high-tech saviour for low-density lines. Railjournal [online]. UK, 2014 [cit. 2016-01-02]. http://www.railjournal.com/index.php/telecoms/satloc-a-high-tech-saviour-for-low-densitylines.html?channel=533