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Tytuł artykułu

Simulation of digital Interfaces for railway traffic control systems using IBIS models

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Currently used, computer railway traffic control systems , communicate via standard digital interfaces: CAN, Ethernet or RS485. In order to carry out the proof of security, it is necessary to test the functioning of the interfaces under different conditions. The IBIS model (I/O Buffer Information Specification) was used to simulate the transmission of signals through interfaces. The article discusses the applied interface models and simulation results in various conditions. The presented results can be used to prove the safety of transmission in computer railway traffic control systems.
Rocznik
Strony
25--30
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
  • UNIVERSITY OF TECHNOLOGY AND HUMANITIES IN RADOM, Malczewskiego 29, 26-600 Radom, Poland
  • UNIVERSITY OF TECHNOLOGY AND HUMANITIES IN RADOM, Malczewskiego 29, 26-600 Radom, Poland
Bibliografia
  • [1] Bombardier Transportation (ZWUS) Polska. 2001. Komputerowy system samoczynnej blokady liniowej SHL 12, Dokumentacja Techniczno-Ruchowa, Katowice, 48 s. (in Polish)
  • [2] CARLSON AH., FRINCKE D., LAUDE MJ.: Railway security issues: A survey of developing railway technology. Proceedings of International Conference on Computer, Communication and Control Technologies (CCCT 03)/9th International Conference on Information Systems Analysis and Synthesis (ISAS03), vol. 1, Inst. Informatics & Systemics, 14269 Lord Barclay DR, Orlando USA, pp. 1-6, 2003
  • [3] DHILLON B.S.: Transportation Systems, Reliability and Safety. CRC Press 2011
  • [4] DYDUCH J., KORNASZEWSKI M., PNIEWSKI R.: Nowoczesne laboratorium Systemów Sterowania Ruchem Kolejowym na Politechnice Radomskiej. XV Międzynarodowa Konferencja Naukowa „TRANSCOMP 2011”, Zakopane 5-8 grudnia 2011
  • [5] KORNASZEWSKI M.: Safe computer solutions applied in new generation railway traffic control systems. Computer Systems Aided Science And Engineering Work in Transport, Mechanics and Electrical Engineering. Kasimir Pulaski Technical University of Radom, Faculty of Transport, Radom 2008. ISSN: 1642-5278, pp. 279-284, 2008
  • [6] KORNASZEWSKI M., PNIEWSKI R.: Bezpieczeństwo komputerowych systemów SRK na przykładzie SZP-1 TTS 9/2012
  • [7] KUROIWA A., KATO T., KUNIFUJI T.: Improve the safety of maintenance work on the railway using computer. 8th International Conference on Computer Aided Design, Manufacture and Operation in the Railway and Other Advanced Mass Transit Systems (COMPRAIL), Lemnos, GREECE, VOLUME: 13, pp. 915-923
  • [8] MARSHALL P.S.: Industrial Ethernet: How to Plan, Install, and Maintain Tcp/Ip Ethernet Networks: The Basic Reference Guide for Automation and Process Control Engineers Instrumentation Systems & (1 February 2004)
  • [9] MIKULSKI J.: Malfunctions of railway traffic control systems - failure rate analysis, 3rd International Conference on Computer Simulation in Risk Analysis and Hazard Mitigation, Sintra, Portugal, Book Series: MANAGEMENT INFORMATION SYSTEMS, Vol. 5, pp. 141-147, 2002
  • [10] NOWAKOWSKI W., et al.: Failure evaluation of the level crossing protection system based on Fault Tree Analysis, Springer, Cham, Series: Lecture Notes in Networks and Systems: Recent Advances in Traffic Engineering for Transport Networks and Systems, Print ISBN: 978-3-319-64083-9, Online ISBN: 978-3-319-64084-6, pp. 107-115, 2017
  • [11] PNIEWSKI R.: Metoda oceny bezpieczeństwa cyfrowych systemów automatyki kolejowej. Radom, Wydawnictwo Uniwersytetu Techniczno-Humanistycznego w Radomiu, 146 s., 2013
  • [12] PNIEWSKI R., KORNASZEWSKI M., CHRZAN M.: Safety of electronic ATC systems in the aspect of technical and operational, Proceedings of the 16th International Scientific Conference Globalization and Its Socio-Economic Consequences, Rajecke Teplice, Slovakia, Part IV, pp. 1729-1735, 2016
  • [13] PRICEVICIUS G., et al..: Railway Segment Management Information System. Open Conference of Electrical, Electronic and Information Sciences (EStream), IEEE, 345 E 47TH ST, New York, NY 10017, USA, 2016
  • [14] RENPENNING F., BRABAND J., WERY S.: Application of functional hazard assessment in railway signalling. 14th European Safety and Reliability Conference “ESREL 2003”, Maastricht, Netherlands, pp. 1307-1314, 2007
  • [15] RESTEL F.J., ZAJAC, M.: Reliability Model of the Railway Transportation System With Respect to Hazard States, IEEE International Conference on Industrial Engineering and Engineering Management IEEM, Singapore, SINGAPORE, pp. 1031-1036.
  • [16] www.ti.com/lit/ds/symlink/sn75176a.pdf [date of access: 12.12.2018]
  • [17] AN-715 - Analog Devices APPLICATION NOTE
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e0a6eee2-381c-4824-97dc-2fe1f8af8cb0
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