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An algorithmic approach for the dynamic reliability analysis of non-repairable multi-state weighted k-out-of-n:G system

机译:不可修复的多状态加权k:n-G系统动态可靠性分析的算法方法

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摘要

In this paper, we study a multi-state weighted k-out-of-n:G system model in a dynamic setup. In particular, we study the random time spent by the system with a minimum performance level of k. Our method is based on ordering the lifetimes of the system's components in different state subsets. Using this ordering along with the Monte-Carlo simulation algorithm, we obtain estimates of the mean and survival function of the time spent by the system in state k or above. We present illustrative computational results when the degradation in the components follows a Markov process.
机译:在本文中,我们研究了动态设置中的多状态加权k-out-n:G系统模型。特别地,我们研究系统在最低性能水平k下花费的随机时间。我们的方法基于对不同状态子集中的系统组件的生存期进行排序。使用此排序方法以及蒙特卡洛模拟算法,我们可以获得系统在状态k或更高状态下花费的时间的均值和生存函数的估计。当组件中的退化遵循马尔可夫过程时,我们将提供说明性的计算结果。

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