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Towards the Automated Verification of Weibull Distributions for System Failure Rates

机译:迈向系统故障率的威布尔分布自动验证

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Weibull distributions can be used to accurately model failure behaviours of a wide range of critical systems such as on-orbit satellite subsystems. Markov chains have been used extensively to model reliability and performance of engineering systems or applications. However, the exponentially distributed sojourn time of Continuous-Time Markov Chains (CTMCs) can sometimes be unrealistic for satellite systems that exhibit Weibull failures. In this paper, we develop novel semi-Markov models that characterise failure behaviours, based on Weibull failure modes inferred from realistic data sources. We approximate and encode these new models with CTMCs and use the PRISM probabilistic model checker. The key benefit of this integration is that CTMC-based model checking tools allow us to automatically and efficiently verify reliability properties relevant to industrial critical systems.
机译:Weibull分布可用于精确模拟各种关键系统的故障行为,例如轨道卫星子系统。马尔可夫链已广泛用于建模工程系统或应用的可靠性和性能。然而,连续时间马尔可夫链(CTMC)的指数分布式索记时间有时对于展示Weibull失败的卫星系统有时可以是不现实的。在本文中,我们开发了新颖的半马尔可夫模型,其基于从现实数据源推断的Weibull失败模式的故障行为。我们用CTMCS近似和编码这些新模型,并使用棱镜概率模型检查器。这种集成的关键益处是基于CTMC的模型检查工具允许我们自动和有效地验证与工业关键系统相关的可靠性属性。

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