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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Accelerated Degradation Tests Modeling Based on the Nonlinear Wiener Process with Random Effects
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Accelerated Degradation Tests Modeling Based on the Nonlinear Wiener Process with Random Effects

机译:基于随机效应的非线性维纳过程的加速降解试验建模

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Accelerated degradation tests (ADT) modeling is an important issue in lifetime assessment to the products with high reliability and long lifetime. Among the literature about the accelerated nonlinear degradation process modeling, the current methods did not consider the product-to-product variation of the products with the same type. Therefore, this paper proposes an accelerated degradation process modeling method with random effects for the nonlinear Wiener process. Firstly, we derive the lifetime distribution of the nonlinear Wiener process with random effects. Secondly, the nonlinear Wiener process is used to model the degradation process of a single stress, and the drift coefficient is considered as a random variable to describe the product-to-product variation. Using the random acceleration model, the random effects are incorporated into the constant stress ADT models and the step stress ADT models. Then, a two-step maximum likelihood estimation (MLE) method is presented to estimate the unknown parameters in the degradation models. Finally, a simulation study and a case study are provided to demonstrate the application and superiority of the proposed model.
机译:加速降级测试(ADT)建模是对具有高可靠性和长寿命的产品进行寿命评估的重要问题。在有关加速非线性降解过程建模的文献中,当前的方法没有考虑相同类型产品的产品间差异。因此,本文提出了一种针对非线性维纳过程的具有随机效应的加速退化过程建模方法。首先,我们推导了具有随机效应的非线性维纳过程的寿命分布。其次,非线性维纳过程用于模拟单个应力的退化过程,漂移系数被视为描述产品间差异的随机变量。使用随机加速度模型,将随机效应合并到恒定应力ADT模型和阶跃应力ADT模型中。然后,提出了两步最大似然估计(MLE)方法来估计退化模型中的未知参数。最后,提供了仿真研究和案例研究,以证明所提出模型的应用和优越性。

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