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首页> 外文期刊>Reliability Engineering & System Safety >Method for evaluating an extended Fault Tree to analyse the dependability of complex systems: Application to a satellite-based railway system
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Method for evaluating an extended Fault Tree to analyse the dependability of complex systems: Application to a satellite-based railway system

机译:评估扩展故障树以分析复杂系统的可靠性的方法:在基于卫星的铁路系统中的应用

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摘要

Evaluating dependability of complex systems requires the evolution of the system states over time to be analysed. The problem is to develop modelling approaches that take adequately the evolution of the different operating and failed states of the system components into account. The Fault Tree (FT) is a well-known method that efficiently analyse the failure causes of a system and serves for reliability and availability evaluations. As FT is not adapted to dynamic systems with repairable multi-state components, extensions of FT (eFT) have been developed. However efficient quantitative evaluation processes of eFT are missing. Petri nets have the advantage of allowing such evaluation but their construction is difficult to manage and their simulation performances are unsatisfactory. Therefore, we propose in this paper a new powerful process to analyse quantitatively eFT. This is based on the use of PN method, which relies on the failed states highlighted by the eFT, combined with a new analytical modelling approach for critical events that depend on time duration. The performances of the new process are demonstrated through a theoretical example of eFT and the practical use of the method is shown on a satellite-based railway system.
机译:评估复杂系统的可靠性需要分析系统状态随时间的变化。问题是要开发建模方法,以充分考虑系统组件的不同运行状态和故障状态的演变。故障树(FT)是一种众所周知的方法,可以有效地分析系统的故障原因,并用于可靠性和可用性评估。由于FT不适合具有可修复多状态组件的动态系统,因此已开发了FT(eFT)的扩展。但是,缺少有效的eFT定量评估过程。 Petri网具有允许进行这种评估的优点,但是其构造难以管理,并且其仿真性能也不尽人意。因此,我们在本文中提出了一种新的强大的过程来对eFT进行定量分析。这是基于PN方法的使用,该方法依赖于eFT突出显示的失败状态,并结合了一种新的分析建模方法,用于处理取决于持续时间的关键事件。通过eFT的理论实例证明了该新工艺的性能,并在基于卫星的铁路系统上展示了该方法的实际应用。

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