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Integrating Random Shocks Into Multi-State Physics Models of Degradation Processes for Component Reliability Assessment

机译:将随机冲击整合到降解过程的多状态物理模型中以进行组件可靠性评估

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We extend a multi-state physics model (MSPM) framework for component reliability assessment by including semi-Markov and random shock processes. Two mutually exclusive types of random shocks are considered: extreme, and cumulative. Extreme shocks lead the component to immediate failure, whereas cumulative shocks simply affect the component degradation rates. General dependences between the degradation and the two types of random shocks are considered. A Monte Carlo simulation algorithm is implemented to compute component state probabilities. An illustrative example is presented, and a sensitivity analysis is conducted on the model parameters. The results show that our extended model is able to characterize the influences of different types of random shocks onto the component state probabilities and the reliability estimates.
机译:我们通过包括半马尔可夫和随机冲击过程扩展了用于零件可靠性评估的多状态物理模型(MSPM)框架。考虑了两种相互排斥的随机冲击类型:极端冲击和累积冲击。极端的冲击会导致组件立即失效,而累积的冲击只会影响组件的退化率。考虑了退化和两种随机冲击之间的一般依赖性。实施了蒙特卡罗模拟算法以计算组件状态概率。给出了一个说明性示例,并对模型参数进行了敏感性分析。结果表明,我们的扩展模型能够表征不同类型的随机冲击对部件状态概率和可靠性估计的影响。

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