智能可靠性分析

J. Barnett, T. Verma
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引用次数: 11

摘要

理想的自动化可靠性分析系统应以CAD模型为输入,识别关键部件并输出故障概率。不幸的是,目前使用的实际系统需要故障树/spl - /一种和/或图/spl - /作为输入。由于CAD模型与其相关故障树之间的认知距离较大,人工翻译步骤是许多错误的来源。此外,故障树的使用使得处理系统组件之间自然发生的周期性依赖关系变得困难。描述了介于CAD模型和故障树之间的功能依赖图,并开发了自动化可靠性和诊断分析的方法。当使用结果技术时,知识负担在用户和计算机之间更平均地分担。此外,更复杂的系统可以被正确地分析,因为循环依赖关系可以被表示出来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent reliability analysis
An ideal automated reliability analysis system would take a CAD model as input, then identify critical components and output failure probabilities. Unfortunately, the practical systems in use today require a fault tree/spl minus/a kind of and/or graph/spl minus/as their input. Since the cognitive distance between the CAD model and its associated fault tree is large, the manual translation step is a source of many mistakes. Furthermore, the use of fault trees makes it difficult to handle the cyclical dependencies that naturally occur among system components. The functional dependency graph, a representation midway between CAD models and fault trees, is described and methodology that automates reliability and diagnostic analyses is developed. When the resultant technology is employed, the knowledge burden is more equally shared between the user and the computer. In addition, more complicated systems can be properly analyzed because cyclical dependencies can be represented.<>
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