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Safety and risk optimization of a ferry technical system

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The joint general model of safety of complex technical systems in variable operation conditions linking a semimarkov modeling of the system operation processes with a multi-state approach to system safety analysis and linear programming are applied in maritime transport to safety and risk optimization of a ferry technical system.
Rocznik
Strony
159--172
Opis fizyczny
Bibliogr. 12 poz., fot., rys.
Twórcy
  • Maritime University, Gdynia, Poland
  • Maritime University, Gdynia, Poland
Bibliografia
  • [1] Aven, T. (1985). Reliability evaluation of multistate systems with multi-state components. IEEE Transactions on reliability 34, pp 473-479.
  • [2] Dziula, P., Jurdzinski, M., Kolowrocki, K. & Soszynska, J. (2007). On multi-state approach to ship systems safety analysis. Proc. 12th International Congress of the International Maritime Association of the Mediterranean, IMAM 2007. A. A. Balkema Publishers: Leiden-London-New York-Philadelphia-Singapore.
  • [3] Grabski, F. (2002). Semi-Markov Models of Systems Reliability and Operations. Warsaw: Systems Research Institute, Polish Academy of Science.
  • [4] Kolowrocki, K. (2004). Reliability of Large Systems. Elsevier, Amsterdam-Boston-Heidelberg-London-New York-Oxford-Paris-San Diego-San Francisco-Singapore-Sydney-Tokyo.
  • [5] Kolowrocki, K. & Soszyńska, J. (2006). Reliability and availability of complex systems. Quality and Reliability Engineering International Vol. 22, Issue 1, J. Wiley & Sons Ltd. 79-99.
  • [6] Kolowrocki, K. & Soszynska, J. (2008). A general model of ship technical systems safety. Proc. International Conference on Industrial Engineering and Engineering Management, IEEM 2008, Singapore, 1346-1350, 2008.
  • [7] Kolowrocki, K., Soszynska, J., Xie, M. & Blokus-Roszkowska, A. (2009). Safety and reliability optimisation of complex industrial systems and processes. WP5. Reliability, risk and availability based optimization of complex technical systems operation processes with applications in port, shipyard and maritime transport. Task 5.3 – English – 30.11.2009. Poland-Singapore Joint Project. MSHE Decision No. 63/NSingapore/ 2007/0.
  • [8] Lisnianski, A., Levitin, G. (2003). Multi-state System Reliability. Assessment, Optimisation and Applications. World Scientific Publishing Co., New Jersey, London, Singapore , Hong Kong.
  • [9] Meng, F. (1993). Component- relevancy and characterisation in multi-state systems. IEEE Transactions on reliability 42, pp 478-483.
  • [10] Soszynska, J. (2006). Reliability evaluation of a port oil transportation system in variable operation conditions. International Journal of Pressure Vessels and Piping Vol. 83, Issue 4, 304-310.
  • [11] Soszynska, J. (2007). Systems reliability analysis in variable operation conditions. International Journal of Reliability, Quality and Safety Engineering. System Reliability and Safety Vol. 14, No 6, 1-19.
  • [12] Soszyńska, J., Kołowrocki, K., Kamiński, P., Judziński, M. & Milczek, B. (2009). Data mining for identification and prediction of safety and reliability characteristics of complex industrial systems and processes WP6. Safety and risk analysis and evaluation of a Stena Baltica ferry in variable operation conditions. WP6 - Sub-Task 6.2.5 – English – 30.11.2009. Poland-Singapore Joint Project. MSHE Decision No. 63/NSingapore/2007/0.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4e8fc050-ee17-4e03-85d6-7f157b75bb6f
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