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Reliability model of the RTC System with trackside equipment equipped with a Peltier cell

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Warianty tytułu
PL
Model niezawodności systemu SRK z osprzętem przytorowym wyposażonym w ogniwo Peltiera
Języki publikacji
EN
Abstrakty
EN
The article presents a mathematical model assessing the reliability of rail traffic control systems with a mounted Peltier cell. The semiconductor element will be used for operating electronic components that are in the trackside equipment. In the prepared model, Markow processes were used to describe the states occurring between individual components of the RTC System. Simulation tests were mainly based on determining the average time of component failure. The presented results were carried out for 1,000, 2,000 and 3,000 rail vehicle crossings over the railway tracks equipped with RTC Systems. At the very end of the article the conclusions resulting from computer simulations were presented.
PL
W artykule przedstawiono model matematyczny oceniający niezawodność systemów sterowania ruchem kolejowym z zamontowanym ogniwem Peltiera. Element półprzewodnikowy zostanie wykorzystany do obsługi elementów elektronicznych znajdujących się w urządzeniach torowych. W przygotowanym modelu wykorzystano procesy Markowa do opisu stanów występujących pomiędzy poszczególnymi elementami systemu SRK. Testy symulacyjne polegały głównie na określeniu średniego czasu uszkodzenia elementu. Przedstawione wyniki przeprowadzono dla 1000, 2000 i 3000 przejazdów pojazdów szynowych nad torami kolejowymi wyposażonymi w systemy SRK. Na samym końcu artykułu przedstawiono wnioski wynikające z symulacji komputerowych.
Rocznik
Strony
99--108
Opis fizyczny
Bibliogr. 28 poz., rys., tab.
Twórcy
  • Aviation Military University, Faculty of Aviation, Department of Avionics and Control Systems, Poland
  • Service and Trade Company HESTA (PUH HESTA) in Radom, Poland
Bibliografia
  • [1] Bobrowski D. (1985) Mathematical models and methods of reliability theory. WNT, Warsaw
  • [2] Digital Exchange Design Objectives - General (March 1994). ITU-T Recommendation. Q.541
  • [3] Kopociński B. (1973) An outline of the theory of renewal and reliability. PWN, Warsaw
  • [4] Migdalski J. (1982) Reliability Guide. Mathematical basics. WEMA Machine Industry Publishing House. Warsaw
  • [5] Oprzędkiewicz J., Młynarski S. (2000) “Problems of prediction of quality and reliability of motor vehicles. In Construction, testing, operation, technology of motor vehicles and internal combustion engines”. Teka of the Scientific and Problem Automotive Commission, PAN O / w Kraków, z. 21
  • [6] Oprzędkiewicz J. (1993) CAD CAM Computer support in machine reliability. WNT, Warsaw
  • [7] PN-77/N-04005 Reliability in technology. Indicators of reliability. Names of terms and symbols
  • [8] PN-93/N-50191 Electrical terminology dictionary. Reliability; quality of service
  • [9] Collective work edited by M. Prażewska: (1987) Reliability of electronic devices. WKŁ. Warsaw
  • [10] Prażewska M. (1987) Editor: Reliability of electronic devices. WKŁ Warsaw. Reviewer: prof. dr hab. Eng. Stanisław Cierpisz
  • [11] Rej A., Skoropacki W., Wojtas P. (2000) Report from the Research Project 9T12A 03116 Investigation of structural reliability of the mine telecommunications network. EMAG Center. Katowice
  • [12] Rej A., Skoropacki W., Wojtas P. Substantive report on the implementation of the Research Project 9T12A 03116 Investigation of structural reliability of the mine telecommunications network. Scientific and research work of the EMAG Center. Katowice
  • [13] ReliaSoft Corporation. Life Data Analysis Reference. Weibull ++ Reliasoft Publishing. Tucson AZ USA 2008
  • [14] Sergiejczyk M. (2008) Availability of the Motorway Emergency Communication. Journal of KONBiN 2(5)2008. ISSN 1895-8281. https://doi.org/10.2478/v10040-008-0053-3
  • [15] Sharma A. (2008) Performance Comparision of two Dynamic Shared-Path Protection Algorithms for WDM Optical Mesh Networks. University of Pretoria
  • [16] Szkoda M. (2014) Assessment of Reliability, Availability and Maintain-ability of Rail Gauge Change Systems. Operation and Reliability - Maintenance and Reliability, No. 6(3)
  • [17] Szopa T. (2009) Reliability and security. Warsaw University of Technology Publishing House. Warsaw
  • [18] Wojtas P. (2010) Impact of integration of dispatch systems and telecommunication network configuration on their reliability and functionality. Dissertation. The Silesian Technical University. Gliwice
  • [19] Żółtowski B., Cempel C. (ed.) (2005) Machine diagnostics engineering. ITeE, Radom
  • [20] Żółtowski B. (2012) Improving machine operation systems. Operation Problems
  • [21] Fei Yan, Tao Tang, (2005) “Research and Development of Safety Technology in Signaling System of Rail Transit”, China Safety Science Journal (in Chinese), pp 23-26
  • [22] Guo H. T., Yang X. H, (2008) “Automatic creation of Markov models for reliability assessment of safety instrumented systems”, Reliability Engineering & System Safety, Vol. 93, Issue 6, pp 829-837. https://doi.org/10.1016/j.ress.2007.03.029
  • [23] Smith R.M. (1987) “Markov reward models: application domains and solution methods”, Ph D thesis, Computer Science Dept., Duke University, Durham, NC, pp 15-18
  • [24] Ereau J. F., Saleman M., Valette R., et al. (1997) “Petri nets for the evaluation of redundant systems”, Reliability Engineering & System Safety, pp 95-104
  • [25] Manish M., Trivedi K.S. (1995) “Dependability Modeling Using Petri- Nets”, IEEE Transactions on Reliability, pp 428-440. DOI: 10.1109/24.406578
  • [26] Tomek L., Trivedi K.S. (1995) “Analyses using stochastic reward nets”, Software Fault Tolerance, New York: John Wiley & Sons, pp 139-166
  • [27] Liu S. X., Xu Z. C., Chen G. L., et al. (2009) “Dependability Research of Standby System Based on Stochastic Petri Net”, Proceedings of the International Conference on Networks Security, Wireless Communications and Trusted Computing, pp 179-183. DOI: 10.1109/NSWCTC.2009.373
  • [28] Nabil S., Hamid D. (2009) “Reliability analysis of discrete event dynamic systems with Petri nets”, Reliability Engineering and System Safety, Vol. 94, Issue 11, pp 1848-1861. https://doi.org/10.1016/j.ress.2009.06.006
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-13586ac6-19ea-423c-816f-17bb260032d5
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