Dynamic Fault Tree Analysis Using Input/Output Interactive Markov Chains

H. Boudali, P. Crouzen, M. Stoelinga
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引用次数: 170

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.
基于输入输出交互马尔可夫链的动态故障树分析
动态故障树(DFT)扩展了标准故障树,允许对复杂系统组件的行为和交互进行建模。DFT是一种高级模型,易于使用,在可靠性工程师中越来越受欢迎。不幸的是,在使用DFT时仍然存在一些问题。简而言之,这些问题是(1)缺乏形式(语法和语义),(2)模块化分析的局限性,从而容易受到状态空间爆炸问题的影响,以及(3)缺乏模块化模型构建。我们使用输入/输出交互马尔可夫链(I/O-IMC)形式来分析DFT。I/O-IMC具有精确的语义,是具有输入和输出动作的连续时间马尔可夫链的扩展。在本文中,使用I/ io - mc框架,我们解决了上面提到的问题(2)和(3)。我们还通过一些示例展示了如何使用I/O-IMC框架轻松扩展DFT建模功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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