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FAULT TREE ANALYSIS BASED ON DYNAMIC UNCERTAIN CAUSALITY GRAPH

机译:基于动态不确定因果图的故障树分析

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Fault Tree Analysis (FTA) has been widely applied to large, complex industrial systems like nuclear power plants, chemical systems, and weapon systems. Events in classical FTA are assumed binary-state and s-independent but multi-state, dependencies and logic cycles may exist within FTs. Moreover, causalities in FTA are assumed deterministic, while sometimes they may be uncertain. This paper applies Dynamic Uncertain Causality Graph (DUCG) in FTA to overcome aforementioned issues. This paper shows that any FT can be mapped into a DUCG graph. And with DUCG representation model and algorithm, additional modeling and analytical power are obtained. Multi-value, dependencies, logic cycles, and non-deterministic causalities in FTA are solved. This paper also depicts how to calculate the importance measurement, predict failure, and diagnose fault. The results reveal the effectiveness and feasibility of this methodology.
机译:故障树分析(FTA)已广泛应用于大型复杂的工业系统,例如核电站,化学系统和武器系统。假设经典FTA中的事件是二进制状态和s独立的,但FT中可能存在多状态,相关性和逻辑周期。此外,FTA中的因果关系被认为是确定性的,尽管有时它们可​​能不确定。本文应用FTA中的动态不确定因果图(DUCG)来克服上述问题。本文表明,任何FT都可以映射到DUCG图中。并借助DUCG表示模型和算法,获得了附加的建模和分析能力。解决了FTA中的多值,依赖关系,逻辑周期和不确定性因果关系。本文还描述了如何计算重要性度量,预测故障和诊断故障。结果揭示了该方法的有效性和可行性。

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