• DocumentCode
    3056439
  • Title

    Dynamic Fault Tree Analysis Using Input/Output Interactive Markov Chains

  • Author

    Boudali, Hichem ; Crouzen, Pepijn ; Stoelinga, Mariëlle

  • Author_Institution
    Univ. of Twente, Enschede
  • fYear
    2007
  • fDate
    25-28 June 2007
  • Firstpage
    708
  • Lastpage
    717
  • Abstract
    Dynamic fault trees (DFT) extend standard fault trees by allowing the modeling of complex system components´ behaviors and interactions. Being a high level model and easy to use, DFT are experiencing a growing success among reliability engineers. Unfortunately, a number of issues still remains when using DFT. Briefly, these issues are (1) a lack of formality (syntax and semantics), (2) limitations in modular analysis and thus vulnerability to the state-space explosion problem, and (3) lack in modular model-building. We use the input/output interactiveMarkov chain (I/O-IMC) formalism to analyse DFT. I/O-IMC have a precise semantics and are an extension of continuous-time Markov chains with input and output actions. In this paper, using the I/OI-MC framework, we address and resolve issues (2) and (3) mentioned above. We also show, through some examples, how one can readily extend the DFT modeling capabilities using the I/O-IMC framework.
  • Keywords
    fault trees; modular construction; software reliability; complex system components behaviors; continuous-time Markov chains; dynamic fault tree analysis; input-output interactive Markov chains; modular analysis; modular model-building; state-space explosion problem; Algebra; Computer science; Explosions; Fault trees; Formal specifications; Measurement standards; Performance analysis; Reliability engineering; Signal processing; Stochastic processes; Fault tree; Interactive process; Markov chain; compositional aggregation; modularity.;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Dependable Systems and Networks, 2007. DSN '07. 37th Annual IEEE/IFIP International Conference on
  • Conference_Location
    Edinburgh
  • Print_ISBN
    0-7695-2855-4
  • Type

    conf

  • DOI
    10.1109/DSN.2007.37
  • Filename
    4273022