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Accelerated Degradation Models for Failure Based on Geometric Brownian Motion and Gamma Processes

机译:基于几何布朗运动和伽玛过程的故障加速退化模型

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摘要

Based on a generalized cumulative damage approach with a stochastic process describing degradation, new accelerated life test models are presented in which both observed failures and degradation measures can be considered for parametric inference of system lifetime. Incorporating an accelerated test variable, we provide several new accelerated degradation models for failure based on the geometric Brownian motion or gamma process. It is shown that in most cases, our models for failure can be approximated closely by accelerated test versions of Birnbaum-Saunders and inverse Gaussian distributions. Estimation of model parameters and a model selection procedure are discussed, and two illustrative examples using real data for carbon-film resistors and fatigue crack size are presented.
机译:基于具有描述退化的随机过程的广义累积损坏方法,提出了新的加速寿命测试模型,其中可以将观察到的故障和退化措施都考虑为系统寿命的参数推论。结合加速测试变量,我们提供了基于几何布朗运动或伽马过程的几种新的加速退化模型。结果表明,在大多数情况下,我们的故障模型可以通过Birnbaum-Saunders的加速测试版本和高斯逆分布来近似近似。讨论了模型参数的估计和模型选择过程,并给出了两个使用碳膜电阻器真实数据和疲劳裂纹尺寸的示例性例子。

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