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Optimal design of step stress accelerated degradation test and reliability assessment for quartz flexible accelerometers

机译:石英柔性加速度计的阶梯应力加速退化测试和可靠性评估的优化设计

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This paper presents a optimal design approach of step stress accelerated degradation test (SSADT) for quartz flexible accelerometers under the assumption that the degradation of each accelerometer follows a Wiener process and the degradation rate at different stress levels satisfies an Arrhenius function. The asymptotic variance of the pth percentile of lifetime is adopted as optimization objective and its expression formula is provided using the maximum likelihood estimate (MLE) method. The total experimental cost is chosen as a constraint with its expression formula provided. An algorithm is stated to solve the optimal design problem and a Monte Carlo simulation optimization program is developed based on the algorithm. Then, the optimal test plan is obtained after determining the optimization parameters and the SSADT is conducted based on the optimal test plan. At the end of this paper, using SSADT result data, the reliability of quartz flexible accelerometers is assessed by statistical analysis technique of Wiener process and inverse Gaussian distribution (IGD).
机译:本文假设石英加速度计的退化遵循维纳过程并且在不同应力水平下的退化率满足Arrhenius函数,提出了一种针对石英柔性加速度计的逐步应力加速退化测试(SSADT)的最佳设计方法。以寿命的第p 个百分位数的渐近方差作为优化目标,并使用最大似然估计(MLE)方法提供其表达公式。选择总的实验费用作为约束条件,并提供其表达公式。提出了解决最优设计问题的算法,并基于该算法开发了蒙特卡罗仿真优化程序。然后,在确定优化参数后获得最佳测试计划,并根据最佳测试计划进行SSADT。最后,利用SSADT结果数据,通过维纳过程和高斯逆分布(IGD)的统计分析技术,对石英柔性加速度计的可靠性进行了评估。

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