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Condition-based fault tree analysis (CBFTA): A new method for improved fault tree analysis (FTA), reliability and safety calculations

机译:基于状态的故障树分析(CBFTA):一种改进故障树分析(FTA),可靠性和安全性计算的新方法

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摘要

Condition-based maintenance methods have changed systems reliability in general and individual systems in particular. Yet, this change does not affect system reliability analysis. System fault tree analysis (FTA) is performed during the design phase. It uses components failure rates derived from available sources as handbooks, etc. Condition-based fault tree analysis (CBFTA) starts with the known FTA. Condition monitoring (CM) methods applied to systems (e.g. vibration analysis, oil analysis, electric current analysis, bearing CM, electric motor CM, and so forth) are used to determine updated failure rate values of sensitive components. The CBFTA method accepts updated failure rates and applies them to the FTA. The CBFTA recalculates periodically the top event (TE) failure rate (λ_(TE)) thus determining the probability of system failure and the probability of successful system operation-i.e. the system's reliability. FTA is a tool for enhancing system reliability during the design stages. But, it has disadvantages, mainly it does not relate to a specific system undergoing maintenance. CBFTA is tool for updating reliability values of a specific system and for calculating the residual life according to the system's monitored conditions. Using CBFTA, the original FTA is ameliorated to a practical tool for use during the system's field life phase, not just during system design phase. This paper describes the CBFTA method and its advantages are demonstrated by an example.
机译:基于条件的维护方法已经改变了整个系统的可靠性,尤其是单个系统的可靠性。但是,此更改不会影响系统可靠性分析。在设计阶段执行系统故障树分析(FTA)。它使用从可用资源(如手册等)中得出的组件故障率。基于条件的故障树分析(CBFTA)从已知的FTA开始。应用于系统的状态监视(CM)方法(例如振动分析,机油分析,电流分析,轴承CM,电动机CM等)用于确定敏感组件的更新故障率值。 CBFTA方法接受更新的故障率并将其应用于FTA。 CBFTA定期重新计算最高事件(TE)故障率(λ_(TE)),从而确定系统故障的可能性和系统成功运行的概率,即系统的可靠性。 FTA是在设计阶段增强系统可靠性的工具。但是,它有缺点,主要是它与正在维护的特定系统无关。 CBFTA是用于更新特定系统的可靠性值并根据系统的监视条件计算剩余寿命的工具。使用CBFTA,可以将原始FTA改进为一种实用工具,以便在系统的现场生命周期阶段中使用,而不仅仅是在系统设计阶段中使用。本文介绍了CBFTA方法,并通过实例演示了其优点。

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