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Optimal design of accelerated degradation tests based on Wiener process models

机译:基于维纳过程模型的加速降解测试的优化设计

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Optimal accelerated degradation test (ADT) plans are developed assuming that the constant-stress loading method is employed and the degradation characteristic follows a Wiener process. Unlike the previous works on planning ADTs based on stochastic process models, this article determines the test stress levels and the proportion of test units allocated to each stress level such that the asymptotic variance of the maximum-likelihood estimator of the qth quantile of the lifetime distribution at the use condition is minimized. In addition, compromise plans are also developed for checking the validity of the relationship between the model parameters and the stress variable. Finally, using an example, sensitivity analysis procedures are presented for evaluating the robustness of optimal and compromise plans against the uncertainty in the pre-estimated parameter value, and the importance of optimally determining test stress levels and the proportion of units allocated to each stress level are illustrated.
机译:假设采用恒应力加载方法且降解特性遵循维纳过程,则可以制定最佳加速降解试验(ADT)计划。与先前基于随机过程模型计划ADT的工作不同,本文确定了测试应力水平和分配给每个应力水平的测试单元的比例,以使寿命分布的第q个分位数的最大似然估计量的渐近方差使用条件最小化。此外,还制定了折衷计划,以检查模型参数与应力变量之间关系的有效性。最后,通过一个例子,给出了灵敏度分析程序,以评估最优和折衷计划的鲁棒性,以对抗预先估计的参数值的不确定性,以及优化确定测试应力水平和分配给每个应力水平的单元比例的重要性被说明。

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