失效模式推理

H. Jahanian
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引用次数: 8

摘要

安全仪表系统(SIS)保护重大危险设施免受灾难性事故的影响。SIS由硬件部分和软件部分——程序组成。失效模式推理(FMR)是一种基于SIS程序分析的SIS硬件部件失效模式识别和量化的新型抽象技术。在FMR中,程序被分成更小的部分,对每个部分进行局部失效模式分析,以根据部分的功能和其输出的给定失效模式来识别输入失效模式。然后将局部分析的结果合并并简化为全局输入失效模式的简短列表。本文阐述了FMR的概念,并通过实例说明了FMR的应用。并与故障树分析等方法进行了比较,以突出FMR在加强SIS安全分析中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Failure Mode Reasoning
Safety Instrumented Systems (SIS) protect major hazard facilities against catastrophic accidents. A SIS consists of hardware components and a software part - the program. Failure Mode Reasoning (FMR) is a novel abstraction technique for identifying and quantifying failure modes of SIS hardware components based on an analysis of the SIS program. In FMR, the program is divided into smaller segments, for each of which a local analysis of failure modes is carried out to identify input failure modes based on the function of the segment and a given failure mode at its output. The results of local analyses are then combined and simplified into a short list of global input failure modes. This paper explains the concepts of FMR and demonstrates its application through a real-life example. A comparison with other methods, such as Fault Tree Analysis is given in order to highlight the role of FMR in enhancing safety analysis of SIS.
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