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Reliability Model and Sensitivity Analysis for General Electronic Systems with Failure Types based on Non-identical Correlated Components

机译:基于非相同相关组分的故障类型的通用电子系统可靠性模型及敏感性分析

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摘要

Reliability is the most important qualitative properties of products and industrial electronic systems. Today, industrial electronic systems need to produce products with maximum reliability. In every industry, when a system fails, it becomes harmful in various aspects such as economic, human and political; therefore, accurate estimation of system reliability is very important. Previous methods to calculate system reliability assumed that a large number of components failures are statistically independent. Considering such a hypothesis makes it possible to calculate probability and mathematical computation, but it does not provide perfect system reliability. This paper presents a simple and new technique for reliability analysis by considering unequal reliability and non-identical distribution of correlated components for k-out-of-n and coherent systems. The efficiency of our proposed method is demonstrated by computing the reliability of Bridge system. The results show that the function of existing components correlation has a major impact, and that ignoring it has a significant effect on system safety.
机译:可靠性是产品和工业电子系统最重要的定性特性。如今,工业电子系统需要生产具有最高可靠性的产品。在每个行业中,当系统失败时,它在经济,人类和政治等各个方面都变得有害;因此,精确估计系统可靠性非常重要。以前计算系统可靠性的方法假设大量组件故障在统计上独立。考虑到这样的假设使得可以计算概率和数学计算,但它不提供完美的系统可靠性。本文通过考虑K-Out-N和连贯系统的相关组分的不相等的可靠性和非相同分布,提出了一种简单而新的技术。通过计算桥系统的可靠性来证明我们所提出的方法的效率。结果表明,现有元件相关的功能具有重大影响,忽略它对系统安全有重大影响。

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