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Reliability evaluation of multi-component cold-standby redundant systems

机译:多部件冷备冗余系统的可靠性评估

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A new methodology for the reliability evaluation of an 1-dissimilar-unit non-repairable cold-standby redundant system is introduced in this paper. Each unit is composed of a number of independent components with generalized Erlang distributions of lifetimes, arranged in any general configuration. We also extend the proposed model to the general types of non-constant hazard functions. To evaluate the system reliability, we construct a directed stochastic network with exponentially distributed arc lengths, in which each path of this network corresponds with a particular minimal cut of the reliability graph of system. Then, we present an analytical method to solve the resulting system of differential equations and to obtain the reliability function of the standby system. The time complexity of the proposed algorithm is O(2(n)), which is much less than the standard state-space method with the complexity of O(3(n2)). Finally, we generalize the proposed methodology, in which the failure mechanisms of the components are different. (c) 2005 Elsevier Inc. All rights reserved.
机译:本文介绍了一种用于1-异种不可修复冷备用冗余系统可靠性评估的新方法。每个单元都由许多独立组件组成,这些组件具有通用的寿命Erlang分布,以任何常规配置排列。我们还将提议的模型扩展到非恒定危害函数的一般类型。为了评估系统的可靠性,我们构建了具有指数分布的弧长的有向随机网络,其中该网络的每个路径都对应于系统可靠性图的特定最小割线。然后,我们提出一种解析方法来求解所得的微分方程组并获得备用系统的可靠性函数。该算法的时间复杂度为O(2(n)),比标准状态空间方法的复杂度为O(3(n2))小得多。最后,我们概括了所提出的方法,其中组件的失效机制是不同的。 (c)2005 Elsevier Inc.保留所有权利。

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