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Reliability evaluation based on a dependent two-stage failure process with competing failures

机译:基于相依的两阶段故障过程以及竞争性故障的可靠性评估

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This paper evaluates system reliability performance based on a dependent two-stage failure process with competing failures. The failure process of the system can be divided into two stages, i.e., the defect initialization stage, and the defect development stage. Dependence between these two stages is reflected in the fact that they share the same shock process modeled by a nonhomogeneous Poisson process. The impact of shock damage on system failure behavior is characterized by random hazard rate increments of the two stages. Based on practical failure behavior of industrial systems, we consider two typical and competing failure modes, defect-based failure and duration-based failure. Defect-based failure occurs when a defect reaches the damage threshold and duration-based failure is triggered when the duration in defective state is larger than a time threshold. We derive some results on system reliability and show that, with different parameter settings, our model reduces to several classic competing risk models. Finally, a detailed illustrative example of an oil pipeline system is given to demonstrate the applicability of the proposed model. (C) 2018 Elsevier Inc. All rights reserved.
机译:本文基于具有竞争性故障的相关两阶段故障过程评估系统可靠性性能。系统的故障过程可以分为两个阶段,即缺陷初始化阶段和缺陷发展阶段。这两个阶段之间的依赖性体现在以下事实:它们共享由非均匀泊松过程建模的相同冲击过程。冲击损坏对系统故障行为的影响以两个阶段的随机危险率增加为特征。基于工业系统的实际故障行为,我们考虑两种典型的竞争故障模式:基于缺陷的故障和基于持续时间的故障。当缺陷达到损坏阈值时,将发生基于缺陷的故障;当处于缺陷状态的持续时间大于时间阈值时,将触发基于持续时间的故障。我们得出了一些关于系统可靠性的结果,并表明,通过不同的参数设置,我们的模型可简化为几种经典的竞争风险模型。最后,给出了输油管道系统的详细说明性示例,以证明所提出模型的适用性。 (C)2018 Elsevier Inc.保留所有权利。

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