Accurate modeling of shared components in high reliability applications

J. Bukowski, Chris O'Brien
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Abstract

This paper addresses how to model and evaluate the risk reduction factor (RRF) of safety instrumented systems (SIS) when one or more of the components in the SIS can cause the dangerous condition or hazard that the SIS is designed to protect against. Generally a failure that can cause a hazard is referred to as an initiating event (IE). International standards for SIS safety evaluation require that shared components either be prohibited or accurately modeled. Current practice generally falls into one of two extremes, ignoring any degradation of system reliability due to shared components or completely discounting any improvements in reliability as a result of redundancy created by the shared component. This paper shows how to accurately model shared components in an SIS and proposes a methodology for simplified modeling techniques when certain criteria are met. Ignoring the interaction of shared components can result in estimates of reliability being optimistic by a factor of 2 or more. Conversely, taking no credit for the redundancy created by the shared component results in estimates of reliability that can be overly pessimistic. Several examples modeling shared components with varying degrees of independence illustrate the impact on overall system reliability.
高可靠性应用中共享组件的精确建模
本文讨论了当安全仪表系统(SIS)中的一个或多个组件可能导致SIS设计用于防止的危险情况或危害时,如何建模和评估安全仪表系统(SIS)的风险降低系数(RRF)。通常,可以引起危险的故障被称为启动事件(IE)。SIS安全评估的国际标准要求禁止共享组件或精确建模。当前的实践通常落入两个极端之一,要么忽略由于共享组件而导致的系统可靠性的任何降低,要么完全忽略由于共享组件创建的冗余而导致的可靠性的任何改进。本文展示了如何在SIS中准确地建模共享组件,并提出了当满足某些标准时简化建模技术的方法。忽略共享组件之间的相互作用可能会导致可靠性的估计被乐观了2倍或更多。相反,不承认共享组件所产生的冗余会导致对可靠性的估计过于悲观。对具有不同独立程度的共享组件进行建模的几个示例说明了对整个系统可靠性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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