Uncovering Dynamic Fault Trees

Sebastian Junges, Dennis Guck, J. Katoen, M. Stoelinga
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引用次数: 37

Abstract

Fault tree analysis is a widespread industry standard for assessing system reliability. Standard (static) fault trees model the failure behaviour of systems in dependence of their component failures. To overcome their limited expressive power, common dependability patterns, such as spare management, functional dependencies, and sequencing are considered. A plethora of such dynamic fault trees (DFTs) have been defined in the literature. They differ in e.g., the types of gates (elements), their meaning, expressive power, the way in which failures propagate, how elements are claimed and activated, and how spare races are resolved. This paper systematically uncovers these differences and categorises existing DFT variants. As these differences may have huge impact on the reliability assessment, awareness of these impacts is important when using DFT modelling and analysis.
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揭示动态故障树
故障树分析是评估系统可靠性的一种广泛的工业标准。标准(静态)故障树根据系统组件的故障对系统的故障行为进行建模。为了克服它们有限的表达能力,需要考虑常见的可靠性模式,例如备用管理、功能依赖和排序。文献中已经定义了大量这样的动态故障树(dft)。它们的不同之处在于,例如,门(元素)的类型,它们的含义,表达能力,故障传播的方式,元素的声明和激活方式,以及备用种族的解决方式。本文系统地揭示了这些差异,并对现有的DFT变体进行了分类。由于这些差异可能对可靠性评估产生巨大影响,因此在使用DFT建模和分析时,了解这些影响非常重要。
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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