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PFDavg generalized formulas for SIS subject to partial and full periodic tests based on multi-phase Markov models

机译:基于多相马尔可夫模型的SIS的PFDavg通用公式经过部分和全部定期测试

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摘要

IEC 61508 is a standard on design and operation of safety-instrumented systems (SISs) which has been adapted by many national regulations as the recommended way to achieve high-reliability systems. Many decisions about the design of SIS rely on the results from reliability assessments. It is therefore important that the reliability assessments are able to capture key properties of the system, such as the consideration of regular partial and full proof tests. IEC 61508 has proposed analytical formulas for commonly used architectures. Unfortunately, these formulas do not explicitly include the contribution of partial tests and consequently their use is mainly restricted to full proof tests. In addition, the already existing formulas dealing with partial tests disregard the different repair times. The aim of this paper is to (i) extend the PFDavg formulas given in IEC 61508 by including partial tests impact and, (ii) investigate their consistency based on multi-phase Markov models related to 1001 and 1002 architectures and (iii) to establish new generalized formulations in light of the results related to the investigation process, which account for the different repair times. Different comparisons are performed throughout the paper in order to validate the set of the derived formulations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:IEC 61508是安全仪表系统(SIS)设计和操作的标准,已被许多国家法规修改为实现高可靠性系统的推荐方法。有关SIS设计的许多决策都依赖于可靠性评估的结果。因此,重要的一点是,可靠性评估必须能够捕获系统的关键属性,例如考虑定期进行部分和完全验证测试。 IEC 61508提出了常用体系结构的分析公式。不幸的是,这些公式未明确包括部分测试的内容,因此,它们的使用主要限于完全证明测试。另外,已经存在的涉及部分测试的公式忽略了不同的维修时间。本文的目的是(i)通过包括部分测试影响来扩展IEC 61508中给出的PFDavg公式,(ii)基于与1001和1002体系结构相关的多相马尔可夫模型研究其一致性,以及(iii)建立根据与调查过程相关的结果,使用新的广义公式,说明维修时间不同。在整个论文中进行了不同的比较,以验证一组衍生配方。 (C)2016 Elsevier Ltd.保留所有权利。

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