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Finite Discrete Markov Model of Ship Safety

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Języki publikacji
EN
Abstrakty
EN
The ship safety modeling is the process used to convert information from many sources about the ship as an antropotechnical system into a form so that it can be analyzed effectively. The first step is to fix the system (ship, human, environment) boundaries to clearly identify the scope of the analysis. The ship can be generally defined by conceptual sketches, schematics drawings or flow diagrams to establish the element hierarchy which evolves from the physical and functional relationships. The man could be generally defined by the operational procedures. The environment could be generally defined by the mission place and time of the year. The information is needed considering that the accidents are caused by factors associated with ship (failure, design defect), man (human error, workload), and environment. Safety is a system property that we intuitively relate to a system’s design, accident rates and risk. This work proposes finite discrete Markov model as an example of systematic approach to the analysis of ship safety.
Twórcy
autor
  • Gdynia Maritime University, Gdynia, Poland
Bibliografia
  • [1] Soares C.G.; Teixeira A.P. 2001, Risk assessment in maritime transportation, Reliability Engineering and System Safety, Volume 74, Number 3, December 2001 , pp. 299-309(11) Elsevier
  • [2] Clemens P. L. 2002. Human Factors and Operator Errors, JA-COBS SVERDRUP, February 2002.
  • [3] Lawton C. R., Miller D. P., Campbell J. E., 2005 Human Per-formance Modeling for System of Systems Analytics: Sol-dierFatigue, SAND REPORT, SAND2005-6569, Unlimited Release,Printed October 2005,
  • [4] Gucma L., 2005. Modelowanie ryzyka zderzenia jednostek pływających z konstrukcjami portowymi i pełnomorskimi, Studia nr.44 AkademiaMorska w Szczecinie, Szczecin 2005.
  • [5] Pietrzykowski Z. 2007. Assessment of navigational safety in vessel traffic in an open area, Proc. TransNav 2007.
  • [6] Smolarek L. & Soliwoda J., 2008, Human Fatigue Model at MaritimeTransport, Proceedings of ESREL 2008 Confer-ence.
  • [7] Smolarek L., 2008. Human Reliability at Ship Safety Consid-eration, Journal of KONBiN 2(5)2008, pp191-206.
  • [8] Soliwoda J., 2008. Factors Determining Vessel Safety Assess-ment in Operation, Journal of KONBiN 2(5)2008, pp. 239-254.
  • [9] Wang Wuhong, Zhang Dianye, Cao Qi. Reliability analysis of human error identification in man-machine systems. System Engineering and Electronical Technology, 1997, (3):76-79
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bacd30fa-3e94-4e3e-9033-437432069454
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