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Spurious activation and operational integrity evaluation of redundant safety instrumented systems

机译:冗余安全仪表系统的虚假激活和操作完整性评估

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Safety instrumented systems (SISs) used in various industries are designed to perform specific safety functions to prevent possible accident scenarios. However, spurious activation occurs when a SIS is activated in an untimely manner, potentially resulting in production interruption, economic loss as well as risk to present during the system restoration. Therefore, it is necessary to quantify the spurious activation rate to reduce the number of spurious activations and achieve the highest overall level of risk reduction. This study analyzes possible scenarios leading to a spurious trip in SIS subsystems and presents a further development of existing analytical formulas to calculate the spurious trip rate (STR) for any KooN configuration. The proposed formulas are compared to the existing ones to evidence the improvements and are applied in numerical calculations to investigate the operational integrity of SIS subsystems. Results indicate that common cause failure contributes to most of the STR in input elements and logic solvers, and optimal configurations with both lower PFDavg and lower STR are identified in each subsystem. The overall approach is illustrated via a simple case study and some conclusions are drawn.
机译:在各个行业中使用的安全仪表系统(SIS)旨在执行特定的安全功能,以防止可能发生的事故情况。但是,当SIS以不及时的方式激活时,会发生虚假激活,这可能会导致生产中断,经济损失以及在系统恢复期间存在风险。因此,有必要对虚假激活率进行量化以减少虚假激活的次数并实现最高的总体风险降低水平。这项研究分析了可能导致SIS子系统中发生虚假跳闸的情况,并提出了现有分析公式的进一步发展,以计算任何KooN配置的虚假跳闸率(STR)。将所提出的公式与现有公式进行比较以证明改进,并将其应用于数值计算中以研究SIS子系统的运行完整性。结果表明,共因故障是输入元件和逻辑求解器中大部分STR的原因,并且在每个子系统中均确定了具有较低PFDavg和STR的最佳配置。通过一个简单的案例研究说明了整个方法,并得出了一些结论。

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