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Probabilistic Assessments In Relationship With Safety Integrity Levels By Using Fault Trees

机译:通过使用故障树与安全完整性级别相关的概率评估

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In this article, we study the assessment of safety integrity levels of safety-instrumented system by means of Fault Trees. We focus on functions with a low demand rate. For these functions, the appropriate measure of performance is the so-called probability of failure on demand (PFD) or probability of not functioning on demand. In order to calculate accurately the average PFD as per IEC 61508 standard, we introduce distributions for periodically tested components into Fault Tree models. We point out the specific problems raised by the assessment of safety integrity levels (SILs), which restrict the use of the formulae proposed in the standard. Among these problems there is the fact that SIL should be assessed by considering the time-dependent behavior of the system unavailability in addition to its average value. We check, on a simple pressure protection system, the results obtained by means of the Fault Tree approach against those obtained by means of stochastic Petri nets with predicates.
机译:在本文中,我们研究通过故障树评估安全仪表系统的安全完整性等级。我们专注于低需求率的功能。对于这些功能,适当的性能度量是所谓的按需故障概率(PFD)或按需不运行的概率。为了根据IEC 61508标准准确计算平均PFD,我们将定期测试的组件的分布引入故障树模型。我们指出了通过评估安全完整性等级(SIL)提出的特定问题,这些问题限制了该标准中提议的公式的使用。在这些问题中,有一个事实,即除其平均值外,还应通过考虑系统不可用性的时间依赖性行为来评估SIL。我们在简单的压力保护系统上检查通过故障树方法获得的结果与通过带有谓词的随机Petri网获得的结果。

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