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Combinatorial Reliability Analysis of Warm-Standby Systems with Imperfect Fault Coverage

机译:故障覆盖率不理想的热备份系统的组合可靠性分析

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Warm Standby redundancies are used for improving the reliability in various applications requiring a fast system restoration and minimal energy consumption. Warm-standby redundancies introduce sequential dependent failure behavior between the online unit and the standby units; in particular, failure rates of the standby units change after replacing the on-line faulty unit. Moreover, when the system components are subject to uncovered/undetected fault, the entire system fails despite the presence of remaining redundancies. This paper models the reliability of 1-out-n warm-standby sparing systems subject to imperfect fault coverage based on Sequential Multistate Decision Diagrams (SMDD). The proposed method can overcome some limitations of existing works on warm-standby systems with imperfect fault coverage, such as assuming exponential time-to-failure distribution for all the system components or considering only one warm standby unit. An illustrative example is given to show advantages and applications of the proposed SMDD-based method.
机译:暖备用冗余用于提高需要快速系统恢复和最小能耗的各种应用中的可靠性。热备份冗余在在线单元和备用单元之间引入了顺序相关的故障行为。特别是,备用单元的故障率在更换在线故障单元后会发生变化。而且,当系统组件遭受未发现/未发现的故障时,即使存在剩余的冗余,整个系统也会发生故障。本文基于连续多状态决策图(SMDD),对故障覆盖率不理想的1-out-n备用系统的可靠性进行了建模。所提出的方法可以克服故障覆盖范围不完善的热备用系统上现有工作的一些局限性,例如假设所有系统组件的指数故障时间分布或仅考虑一个热备用单元。给出了一个说明性示例,以显示所提出的基于SMDD的方法的优点和应用。

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