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Quantitative assessment of probability of failing safely for the safety instrumented system using reliability block diagram method

机译:使用可靠性框图方法对安全仪表系统安全失效概率进行定量评估

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摘要

The spurious trip of safety instrumented system (SIS) brings great economic losses to production. How to ensure the safety instrumented system is reliable and available has been put on the schedule. But the existing models on spurious trip rate (STR) or probability of failing safely (PFS) are too simplified and not accurate, in-depth studies of availability to obtain more accurate PFS for SIS are required. Based on the analysis of factors that influence the PFS for the SIS, using reliability block diagram method (RBD), the quantitative study of PFS for the SIS is carried out, and gives some application examples. The results show that, the common cause failure will increase the PFS; degraded operation does not affect the availability of the SIS; if the equipment was tested and repaired one by one, the unavailability of the SIS can be ignored; the corresponding occurrence time of independent safe undetected failure should be the system lifecycle (SL) rather than the proof test interval and the independent safe undetected failure is the largest contribution to the PFS for the SIS.
机译:安全仪表系统(SIS)的虚假行程给生产带来了巨大的经济损失。计划如何确保安全仪表系统可靠和可用。但是,现有的关于误跳闸率(STR)或安全失败概率(PFS)的模型过于简化且不够准确,需要深入研究可用性以获取更准确的SIS PFS。在分析影响SIS PFS的因素的基础上,采用可靠性框图法(RBD)对SIS PFS进行了定量研究,并给出了一些应用实例。结果表明,共因故障会增加PFS;降级的操作不会影响SIS的可用性;如果对设备进行了逐一测试和修理,则可以忽略SIS的不可用性;独立安全未检测到故障的相应发生时间应该是系统生命周期(SL)而不是证明测试间隔,并且独立安全未检测到故障是SIS的PFS的最大贡献。

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