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Dependability of a discrete transport system

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Języki publikacji
EN
Abstrakty
EN
A discrete system performing transport tasks (carriage of goods between the starting and ending points) using the vehicles of limited capacity and reliability is analyzed. The quality of transport tasks depend on the availability of transportation means (cars, roads, etc.), their functional properties (services) and reliability (faults and renewals) and of the system organization (dispatchers / system managers). Unfriendly system events affecting the realization of transport tasks are classified. A dependability model of the discrete transport system is considered as an unreliable service network. Outlined the idea of a maintenance policy system and a problem of synthesis of the discrete transport system.
Rocznik
Strony
159--168
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Wrocław University of Technology, Wrocław, Poland
Bibliografia
  • [1] Avižienis, A., Laprie, J. & Randell, B. (2000). Fundamental Concepts of Dependability. In: 3rd Information Survivability Workshop (ISW-2000), Boston, Massachusetts, USA.
  • [2] IFIP WG10.4 on Dependable Computing and Fault Tolerance, http://www.dependability.org/
  • [3] Inżynieria komputerowa. Praca zbiorowa pod red. W. Zamojski. WKŁ, 2005
  • [4] Josuttis, N. (2007). SOA in Practice: The Art of Distributed System Design. O’Reilly.
  • [5] Walkowiak, T. (2011). Simulation approach to Web system dependability analysis. Summer Safety and Reliability Seminars, SSARS 2011, Vol. 1, 197-204.
  • [6] Walkowiak, T. & Mazurkiewicz, J. (2008). Availability of Discrete Transport System Simulated by SSF Tool. Proceedings of International Conference on Dependability of Computer Systems, Szklarska Poreba, Poland, June, 2008. Los Alamitos: IEEE Computer Society Press, 430-437
  • [7] Walkowiak, T. & Mazurkiewicz, J. (2008). Functional Availability Analysis of Discrete Transport System Realized by SSF Simulator. Computational Science – ICCS 2008, 8th International Conference, Krakow, Poland, June 2008. Springer-Verlag, LNCS 5101, 2008. Part I, 671-678.
  • [8] Walkowiak, T. & Mazurkiewicz, J. (2009). Analysis of Critical Situations in Discrete Transport Systems. Proceedings of International Conference on Dependability of Computer Systems, Brunow, Poland, June 30-July 2, 2009. Los Alamitos: IEEE Computer Society Press, 364-371.
  • [9] Volfson, I.E. (2000). Reliability Criteria and the Synthesis of Communication Networks with its Accounting. J. Computer and Systems Sciences International, Vol. 39 (6), 951-967.
  • [10] Xiaofeng, T., Changjun, J. & Yaojun, H. (2005). Applying SOA to intelligent transportation system. IEEE International Conference on Services Computing Vol. 2, 101-104.
  • [11] Zamojski, W. (2005). Model funkcjonalno-niezawodnościowy systemu komputer-człowiek. Praca zbiorowa pod redakcją Wojciecha Zamojskiego Inżynieria komputerowa. WKiŁ, Warszawa 2005.
  • [12] Zamojski, W., Caban, D. (2006). Introduction to the dependability modelling of computer systems. Dependability of Computer Systems DepCoS - RELCOMEX ’06, 100-109.
  • [13] Zamojski, W. & Caban, D. (2007). Maintenance policy of a network with traffic reconfiguration. Dependability of Computer Systems DepCoS - RELCOMEX ’07, 213-220.
  • [14] Zamojski, W. & Walkowiak, T. (2010). Services net modeling for dependability analysis. In-Tech., 1-17.
  • [15] Zamojski, W. (2009). Dependability of services networks. 3d Summer Safety and Reliability Seminars SSARS 2009, 387-396.
  • [16] Zamojski, W. & Mazurkiewicz, J. (2011). From reliability to system dependability – theory and models. Summer Safety and Reliability Seminars, SSARS 2011.
  • [17] Zheng, Z. & Lyu, M.R. Collaborative Reliability Prediction of Service-Oriented Systems.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1372aafc-59fd-4cd8-b8b0-49b0b7516529
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