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A Fast and Accurate Reliability Approximation Method for Heterogeneous Cold Standby Sparing Systems

机译:一种快速准确的可靠性近似方法,用于异构冷备用备用系统

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摘要

Cold standby sparing is a widely-used fault-tolerant technique where spare units are unpowered and nonoperational before being activated to replace a malfunctioned on-line unit. The dynamic failure rate behavior of cold standby units poses unique challenges to the reliability analysis of cold standby systems (CSSs). The existing reliability analysis methods developed for CSSs have various limitations, such as being applicable to only the exponential component time-to-failure distribution, CSSs with identical components, and small-scale systems due to high computational complexity. In this paper, we advance the state of the art by proposing a fast and accurate reliability approximation method based on the Lyapunov central limit theorem for heterogeneous 1-out-of-n cold standby systems with non-identical components. The Lyapunov's conditions are proved for CSSs with exponential, Weibull, normal, and mixed component time-to-failure distributions. The accuracy and efficiency of the proposed method are verified and compared with the existing methods through comprehensive case studies on CSSs with different sizes and different types of distributions. The results show that the proposed method can estimate the reliability of large-scale CSSs efficiently and accurately.
机译:冷待备用是一种广泛使用的容错技术,在激活以更换故障的在线单元之前,备用装置是无力的,并且在线单元。冷备单位的动态故障率行为对冷备系统(CSSS)的可靠性分析构成了独特的挑战。为CSSS开发的现有的可靠性分析方法具有各种限制,例如仅适用于指数组件到故障分布,具有相同组件的CSS,并且由于高计算复杂性而具有小规模系统。在本文中,我们通过提出基于Lyapunov中央极限定理的快速准确的可靠性近似方法来推进本领域,该技术基于Lyapunov中央极限定理,具有非相同部件的异构1外冷备用系统。 Lyapunov的条件是针对指数,威布尔,正常和混合组件到故障分布的CSSS。通过对不同尺寸和不同类型分布的CSSS的综合案例研究,验证了所提出的方法的准确性和效率,并与现有方法进行比较。结果表明,该方法可以有效准确地估算大规模CSSS的可靠性。

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