Persistence of relevance: A missing issue in imperfect coverage models

Jianwen Xiang, F. Machida, Kumiko Tadano, Y. Maeno
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Abstract

In traditional imperfect fault coverage models, simply coverage models (CMs), the coverage (including identification and isolation) is typically limited to the faulty components regardless of their relevance. The relevance is typically defined in the context of perfect fault coverage, and a component is called irrelevant if its (covered) failure does not affect the system state, otherwise it is relevant. Although it is generally assumed that all components are initially relevant in these models, such an assumption does not consider the fact that an initially relevant component could become irrelevant afterwards due to the failures of other components, and we call it a non-persistent component. A system with only persistent components is called persistent, otherwise it is called non-persistent. For a non-persistent system, it is important to cover (identify and isolate) the non-persistent components in time whenever they become irrelevant, such that their future uncovered failures will not affect the system anymore. This paper formalizes the concept of persistence and analyzes its impact on reliability of the systems subjected to imperfect fault coverage. It is demonstrated that with the coverage of irrelevant components (in addition to the faulty components), the reliability of a non-persistent system can be (significantly) improved without increasing redundancy.
相关性的持久性:在不完善的覆盖模型中缺失的一个问题
在传统的不完全故障覆盖模型中,即简单的覆盖模型(CMs),覆盖(包括识别和隔离)通常局限于有故障的组件,而不考虑它们的相关性。相关性通常是在完全故障覆盖的上下文中定义的,如果组件的(覆盖的)故障不影响系统状态,则称为无关组件,否则它是相关的。尽管通常假设所有组件在这些模型中最初都是相关的,但这种假设没有考虑到这样一个事实,即最初相关的组件可能会由于其他组件的故障而变得无关紧要,我们称之为非持久性组件。只有持久组件的系统称为持久组件,否则称为非持久组件。对于非持久化系统,重要的是在非持久化组件变得无关紧要时及时覆盖(识别和隔离)它们,这样它们未来未发现的故障就不会再影响系统了。本文形式化了持久性的概念,并分析了不完全故障覆盖下持久性对系统可靠性的影响。通过对不相关组件(除了故障组件)的覆盖,可以在不增加冗余的情况下(显着)提高非持久性系统的可靠性。
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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