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Tytuł artykułu

Time resource problem in logistics systems dependability modelling

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Warianty tytułu
PL
Problem rezerwowania czasowego w modelowaniu niezawodności systemów logistycznych
Języki publikacji
EN PL
Abstrakty
EN
Article presents an overview of some recent developments in the area of mathematical modelling of technical systems’ maintenance decisions with the use of delay-time concept. Thus, the literature overview from 1984-2012 in the analysed research area is given. The problem of time relations occurred in logistic systems performance processes is investigated. Later, the example of DT model implementation in the area of logistic system of sixteen forklifts performance analysis is investigated.
PL
W artykule przedstawiono zagadnienia związane z matematycznym modelowaniem utrzymania systemów technicznych w stanie zdatności z wykorzystaniem koncepcji opóźnień czasowych (DT). Przedstawiono przegląd literatury z badanego obszaru obejmujący okres 1984-2012. Następnie został omówiony problem relacji czasowych w systemach logistycznych. W ostatnim punkcie, został przedstawiony przykład zastosowania modelu DT do oceny niezawodności szesnastu wózków widłowych funkcjonujących w wybranym systemie.
Rocznik
Strony
427--433
Opis fizyczny
Bibliogr. 63 poz., rys., tab.
Twórcy
  • Faculty of Mechanical Engineering Institute of Machine Design and Operation Wroclaw University of Technology Wybrzeze Wyspianskiego 27, 50-370, Wroclaw, Poland
Bibliografia
  • 1. Agrafiotis G. K., Tsoukalas M. Z. Reliability analysis and optimization applications of a two-unit standby redundant system with spare units. Microelectronics Reliability 1994; 34(9): 1469-1475.
  • 2. Akbarov A., Christer A. H., Wang W. Problem identification in maintenance modelling: a case study. International Journal of Production Research 2008; 46(4): 1031-1046.
  • 3. Alzubaidi, H. J. Maintenance modelling of a major hospital complex. PhD thesis. Salford: University of Salford, 1993.
  • 4. Baker R. D., Christer A. H. Review of delay-time OR modelling of engineering aspects of maintenance. European Journal of Operational Research 1994; 73: 407-422.
  • 5. Baker R. D., Wang W. Developing and testing the delay time model. Journal of the Operational Research Society 1993; 44: 361-374.
  • 6. Baker R. D., Wang W. Estimating the delay time distribution of faults in repairable machinery for failure data. IMA Journal of Mathematical Application in Business and Industry 1992; 3: 259-282.
  • 7. Barron Y., Frostig E., Levikson B. Analysis of R out of N systems with several repairmen, exponential life times & phase type repair times: An algorithmic approach. European Journal of Operational Research 2006; 169: 202-225.
  • 8. Bogataj L., Bogataj M. The study of optimal additional investments in capabilities for reduction of delays in value chain. International Journal of Production Economics 2007; 108: 281-290.
  • 9. Box G. E. P., Jenkins G. M. Time Series Analysis Forecasting and Control, California: Holden-Day, 1976.
  • 10. Caban D, Maciejewski H. Time redundancy in a transportation logistics system. Advances in safety and reliability. Proc. of the European Safety and Reliability Conference ESREL 2005, Tri City, Vol.1/ed. Kołowrocki K., Leigden: A. A. Balkema, 2005: 293-296.
  • 11. Caban D., Maciejewski H. Niezawodność systemów ze skumulowaną rezerwą czasową. Materiały XXXI Zimowej Szkoły Niezawodności, Radom: Instytut Technologii Eksploatacji, 2004: 74-80.
  • 12. Catuneanu V. M., Moldovan C., Popentin, Fl., Gheorghin M. Optimum system availability and spare allocation. Microelectronic Reliability 1988; 28(3): 353-357.
  • 13. Cho I. D., Parlar M. A survey of maintenance models for multi-unit systems. European Journal of Operational Research 1991; 51: 1-23.
  • 14. Christer A. H. A Review of Delay Time Analysis for Modelling Plant Maintenance. in: Stochastic Models in Reliability and Maintenance, Osaki S. (ed.), Springer, 2002.
  • 15. Christer A. H. Developments in delay time analysis for modelling plant maintenance. Journal of the Operational Research Society 1999; 50: 1120-1137.
  • 16. Christer A. H. Modelling inspection policies for building maintenance. Journal of the Operational Research Society 1982; 33: 723-732.
  • 17. Christer A. H., Redmond D. F. A recent mathematical development in maintenance theory. IMA Journal of Mathematics Applied in Business and Industry 1990; 2: 97-108.
  • 18. Christer A. H., Waller W. M. Delay time models of industrial inspection maintenance problems. Journal of the Operational Research Society 1984; 35(3): 401-406.
  • 19. Christer A. H., Wang W., Baker R. D. Sharp J.M. Modelling maintenance practice of production plant using the delay-time concept. IMA Journal of Mathematics applied in Business and Industry 1995; 6: 67-83.
  • 20. Christer A. H., Wang W. A model of condition monitoring of a production plant. International Journal of Production Research 1992; 30(9): 2199-2211.
  • 21. Coughlin R. J., Optimization for spares in a maintenance scenario. Proceedings of Annual Reliability and Maintainability Symposium 1984: 371-376.
  • 22. Das, A. N., Sarmah, S. P. Preventive replacement models: an overview and their application in process industries. European Journal of Industrial Engineering 2010; 4(3): 280-307.
  • 23. Dekker, R., Scarf, P. A. On the impact of optimisation models in maintenance decision making: the state of the art. Reliability Engineering and System Safety1998; 60: 111-119.
  • 24. Desa M. I., Christer A. H. Modelling in the absence of data: a case study of fleet maintenance in a developing country. Journal of the Operational Research Society 2001; 52: 247-260.
  • 25. Dziurkowski P. Pomiar niezawodności elektrycznego wózka podnośnikowego X, Praca magisterska Wydziału Mechanicznego PWr. (niepublikowana), Wrocław, 2009.
  • 26. Gross D., Pinkus C. E. Designing a support system for repairable items. Computers & Operations Research 1979; 6(2): 59-68.
  • 27. Guo R., Ascher H., Love E. Towards practical and synthetical modelling of repairable systems. Economic Quality Control 2001; 16(2): 147-182.
  • 28. Guo R., Ascher H., Love E. Generalized models of repairable systems a survey via stochastic processes formalism. ORiON 2000; 16(2): 87-128.
  • 29. Hennet J-C., Tarbouriech S. Stability conditions of constrained delay systems via positive invariance. International Journal of Robust and Nonlinear Control 1998; 8: 265-278.
  • 30. Jodejko-Pietruczuk, A., Werbińska-Wojciechowska, S. Time between inspections optimization for technical object with time delay. Journal of Polish Safety and Reliability Association Summer Safety and Reliability Seminars 2013; 4(1): 35-41.
  • 31. Jodejko-Pietruczuk, A., Werbińska-Wojciechowska, S. A delay-time model with imperfect inspections for multi-unit systems. Journal of KONBiN 2012; 3: 157-172.
  • 32. Jodejko-Pietruczuk, A., Werbińska-Wojciechowska, S. Economical effectiveness of Delay Time approach using in Time-Based maintenance modelling, Proc. of PSAM 11 & ESREL 2012 Conference, 25-29 June 2012, Helsinki, Finland.
  • 33. Jodejko-Pietruczuk, A., Werbińska-Wojciechowska, S. Analysis of Block-Inspection Policy parameters from economical and availability point of view. Proc. of PSAM 11 & ESREL 2012 Conference, 25-29 June 2012, Helsinki, Finland.
  • 34. Kobbacy, K. A. H., Murthy D. N. P. Complex System Maintenance Handbook. Springer, 2008.
  • 35. Lee, Ch. Applications of Delay Time Theory to Maintenance Practice of Complex Plant. PhD thesis. Salford: University of Salford, 1999.
  • 36. LV, W., Wang, W. Modelling preventive maintenance based on the delay time concept in the context of a case study. Eksploatacja i Niezawodnosc-Maintenance and Reliability 2011; 3: 5-11.
  • 37. Mabini M. C., Christer A. H. Controlling multi-indenture repairable inventories of multiple aircraft parts. Journal of the Operational Research Society 2002; 53: 1297-1307.
  • 38. Mazzuchi T. A., van Noortwijk J. M., Kallen M. J. Maintenance optimization. Technical Report TR-2007-9, 2007.
  • 39. Nowakowski T., Werbińska-Wojciechowska S. Developments of time dependencies modeling concepts. Proc. of the European Safety and Reliability Conference, ESREL 2011, Troyes, France, 18-22 September 2011, Leiden: CRC Press/Balkema, 2012: 832-838.
  • 40. Okumura S. An Inspection Policy for Deteriorating Processes Using Delay-Time Concept. International Transactions in Operational Research 1997: 4(5-6): 365-375.
  • 41. Okumura S., Jardine A. K. S., Yamashina, H. An inspection policy for a deteriorating single-unit system characterized by a delay-time model. International Journal of Production Research 1996; 34(9): 2441-2460.
  • 42. Ozekici S. (ed.). Reliability and Maintenance of Complex Systems. NATO ASI Series, Series F: Computer and Systems Sciences, 154, Springer, 1996.
  • 43. Pillay A., Wang J., Wall A. D. A maintenance study of fishing vessel equipment using delay-time analysis. Journal of Quality in Maintenance Engineering 2001; 7(2): 118-127.
  • 44. Redmond, D. F. Delay Time Analysis in Maintenance. PhD thesis. Salford: University of Salford, 1997.
  • 45. SadanandaUpadhya K., Srinivasan N. K. Availability of weapon systems with multiple failures and logistic delays. International Journals of Quality and Reliability Management 2003; 20(7): 836-846.
  • 46. Sarkar A., Panja S. Ch., Sarkar B. Survey of maintenance policies for the Last 50 Years. International Journal of Software Engineering and Applications 2011; 2(3): 130-148.
  • 47. Subramanian R., Natarajan R. An n-unit standby redundant system with r repair facilities and preventive maintenance. Microelectronics Reliability 1982; 22(3): 367-377.
  • 48. Thomas L.C., Gaver D.P., Jacobs P.A. Inspection models and their application. IMA Journal of Mathematics Applied in Business & Industry 1991; 3: 283-303.
  • 49. Ushakow I. Handbook of reliability engineering, New York: Wiley, 1994.
  • 50. Valdez-Flores C., Feldman R. A survey of preventive maintenance models for stochastically deteriorating single-unit systems. Naval Research Logistics 1989; 36: 419-446.
  • 51. Vlajic J. V., van der Vorst J. G. A. J. , Hendrix E. M. T. Food supply chain network robustness – A literature review and research agenda. Proc. of the International Conference on Management in Agrifood Chains and Networks, 2008. Wageningen, the Netherlands, 2008.
  • 52. Wang W. An overview of the recent advances in delay-time-based maintenance modeling. Reliability Engineering and System Safety 2012; 106: 165-178.
  • 53. Wang W. Modeling planned maintenance with non-homogeneous defect arrivals and variable probability of defect identification. Eksploatacja i Niezawodnosc-Maintenance and Reliability 2010; 2: 73-78.
  • 54. Wang W. Subjective estimation of delay-time distribution in maintenance modelling. European Journal of Operational Research 1997; 99(3): 511-529.
  • 55. Wang W., Christer A. H. Towards a general condition based maintenance model for a stochastic dynamic system. Journal of the Operational Research Society 2000; 51: 145-155.
  • 56. Wang K-H., Hsieh Y. Reliability of a repairable system with spares and a removable repairman. Microelectronics Reliability 1995; 35(2): 197-208.
  • 57. Wang K-H., Sivazlian B. D. Reliability of a system with warm standbys and repairmen. Microelectronics Reliability 1989; 29(5): 849-860.
  • 58. Ważyńska-Fiok K., Jaźwiński J. Niezawodność systemów technicznych. Warszawa: PWN, 1990.
  • 59. Werbińska-Wojciechowska S. Time dependencies in supply chain performance process. Logistics and Transport 2010; 1: 113-121.
  • 60. Werbińska S. Model logistycznego wsparcia systemu eksploatacji środków transportu. Rozprawa doktorska Wydziału Mechanicznego PWr., Wrocław: 2008.
  • 61. Werbińska S. Model niezawodności systemu wsparcia logistycznego z zależnością czasową. Logistyka 2007; 3.
  • 62. Werbińska S. Interactions between logistic and operational system – an availability model. In: Risk, reliability and societal safety. EdsAven T., Vinnem J. E., Vol. 2, Leiden: Taylor and Francis, 2007: 2045-2052.
  • 63. Zhao, J., Jia, X. An optimal policy of inspection for a component with delayed repair. Eksploatacja i Niezawodnosc-Maintenance and Reliability 2009; 3: 20-23.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-30ad33ff-f9f0-4db6-b0ed-f6902ea3bac6
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