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Safety analysis of multistate ageing car wheel system with dependent components

Treść / Zawartość
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Warianty tytułu
Konferencja
14th Summer Safety & Reliability Seminars - SSARS 2020, 26-30 September 2020, Ciechocinek, Poland
Języki publikacji
EN
Abstrakty
EN
An innovative approach and a new significant theoretical result are proposed for the safety analysis of multistate ageing systems that consider their components’ dependency. A safety function and a risk function are defined and determined for a multistate ageing system with independent and dependent components. As a special case, the safety of a series system is modelled using its components’ piecewise exponential safety functions. Results are applied to examine and characterize safety of an exemplary car wheel system.
Słowa kluczowe
Twórcy
  • Gdynia Maritime University, Gdynia, Poland
Bibliografia
  • [1] Blokus, A. 2020. Multistate System Reliability with Dependencies. Elsevier, Academic Press, London.
  • [2] Blokus, A. & Kołowrocki, K. 2019. Reliability and maintenance strategy for systems with agingdependent components. Quality and Reliability Engineering International 35(8), 2709-2731.
  • [3] Bogalecka, M. 2020. Consequences of Maritime Critical Infrastructure Accidents - Environmental Impacts. Elsevier, Amsterdam, Oxford, Cambridge (MA).
  • [4] Kołowrocki, K. 2014. Reliability of Large and Complex Systems. 2nd ed., Elsevier, Amsterdam - Boston - Heidelberd - London - New York - Oxford - Paris - San Diego - San Francisco - Sidney - Tokyo.
  • [5] Kołowrocki, K. 2019. Examination of the safety of a port oil terminal, Scientific Journals of the Maritime University of Szczecin 61(133), 143-151.
  • [6] Kołowrocki, K. 2020. Safety analysis of multistate ageing system with inside dependences and outside impacts. IEEE Trans Intelligent Trnsportation Systems, submitted.
  • [7] Kołowrocki, K., Kuligowska, E., SoszyńskaBudny, J. & Torbicki, M. 2018. Oil transport in port. Part 0. Port oil piping transportation system safety without outside impacts. Journal of Polish Safety and Reliability Association, Summer Safety and Reliability Seminars 9(2), 1-10.
  • [8] Kołowrocki, K. & Soszyńska-Budny, J. 2011/2015. Reliability and Safety of Complex Systems and Processes: Modeling - Identification - Prediction - Optimization. Springer English/Chinese Edition.
  • [9] Kołowrocki, K. & Soszyńska-Budny, J. 2015. Modelling safety of multistate systems with ageing components. Proceedings of the International Conference of Numerical Analysis and Applied Mathematics - ICNAAM, Symposium/Workshop on Safety of Critical Infrastructures.
  • [10] Kołowrocki, K. & Soszyńska-Budny, J. 2018. Critical infrastructure safety indicators. International Conference on Industrial Engineering and Engineering Management - IEEM, Bangkok.
  • [11] Lauge, A. Hernantes, J. & Sarriegi, J. M. 2015. Critical infrastructure dependencies: a holistic, dynamic and quantitative approach. International Journal of Critical Infrastructure Protection 8, 16-23.
  • [12] Szymkowiak, M. 2018. Characterizations of distributions through aging intensity. IEEE Transactions on Reliability 67(2), 446-458.
  • [13] Szymkowiak, M. 2018. Generalized aging intensity functions. Reliability Engineering and System Safety 178(C), 198-208.
  • [14] Szymkowiak, M. 2019. Lifetime Analysis by Aging Intensity Functions. Monograph in series: Studies in Systems, Decision and Control (196), Springer International Publishing.
  • [15] Xue, J. 1985. On multi-state system analysis. IEEE Transactions on Reliability 34, 329-337.
  • [16] Xue, J & Yang, K. 1985. Dynamic reliability analysis of coherent multi-state systems. IEEE Transactions on Reliability 4(44), 683-688.
  • [17] Xue, J. & Yang, K. 1995. Symmetric relations in multi-state systems. IEEE Transactions on Reliability 4(44), 689-693.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bee5e03f-8659-4005-81c5-b600e18dd06f
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