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Common cause failure probabilities in standby safety system fault tree analysis with testing―scheme and timing dependencies

机译:备用安全系统故障树分析中的常见原因故障概率,具有测试方案和时序相关性

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Modelling and quantification of common cause failures (CCFs) in redundant standby safety systems can be implemented by implicit or explicit fault tree techniques. Common cause event probabilities are derived for both methods for systems with time-related CCFs modelled by general multiple failure rates. The probabilities are determined so that the correct time-average risk can be obtained by a single computation. The impacts of test intervals and test staggering are included. Staggered testing is best with a certain extra-testing rule, although extra testing is not important for 1-out-of-n : G systems. An economic model provides insights into the impacts of various parameters: the optimal test interval increases with increasing redundancy and testing cost, and it decreases with increasing accident cost and initiating event rate. Staggered testing with extra tests allows for the longest optimal test intervals. A practical technique is outlined for incorporating assessment uncertainties in the estimation of multiple failure rates based on data from many plants or systems.
机译:冗余备用安全系统中常见原因故障(CCF)的建模和量化可以通过隐式或显式故障树技术来实现。对于具有与时间相关的CCF的系统,这两种方法都可以得出通用原因事件的概率,该系统由一般的多故障率建模。确定概率,以便可以通过一次计算获得正确的时间平均风险。测试间隔和测试交错的影响也包括在内。交错测试最好使用一定的额外测试规则,尽管额外测试对于n分之一的G系统并不重要。经济模型可以洞悉各种参数的影响:最佳测试间隔随着冗余和测试成本的增加而增加,而随着事故成本和事件发生率的增加而减小。交错测试与额外测试可以实现最长的最佳测试间隔。概述了一种实用技术,用于基于来自许多工厂或系统的数据将评估不确定性纳入多个故障率的估计中。

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