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Reliability analysis of hierarchical computer-based systems subject to common-cause failures

机译:受常见原因故障影响的分层计算机系统的可靠性分析

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The results from reliability modeling and analysis are key contributors to design and tuning activities for computer-based systems. Each architecture style, however, poses different challenges for which analytical approaches must be developed or modified. The challenge we address in this paper is the reliability analysis of hierarchical computer-based systems (HS) with common-cause failures (CCF). The dependencies among components introduced by CCF complicate the reliability analysis of HS, especially when components affected by a common cause exist on different hierarchical levels. We propose an efficient decomposition and aggregation (EDA) approach for incorporating CCF into the reliability evaluation of HS. Our approach is to decompose an original HS reliability analysis problem with CCF into a number of reduced reliability problems freed from the CCF concerns. The approach is represented in a dynamic fault tree by a proposed CCF gate modeled after the functional dependency gate. We present the basics of the EDA approach by working through a hypothetical analysis of a HS subject to CCF and show how it can be extended to an analysis of a hierarchical phased-mission system subject to different CCF depending on mission phases.
机译:可靠性建模和分析的结果是基于计算机的系统的设计和调整活动的关键因素。但是,每种体系结构样式都带来了不同的挑战,必须开发或修改分析方法。我们在本文中解决的挑战是具有常见原因故障(CCF)的基于分层计算机系统(HS)的可靠性分析。 CCF引入的组件之间的依赖性使HS的可靠性分析变得复杂,尤其是当受共同原因影响的组件存在于不同的层次级别时。我们提出了一种有效的分解和聚合(EDA)方法,将CCF纳入HS的可靠性评估中。我们的方法是使用CCF将原始的HS可靠性分析问题分解为许多降低的CCF可靠性问题。在动态故障树中,该方法由在功能依赖门之后建模的拟议CCF门表示。通过对受CCF约束的HS进行假设分析,我们介绍了EDA方法的基础,并展示了如何将其扩展到根据任务阶段受不同CCF约束的分级分阶段任务系统的分析。

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