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Planning of Step-Stress Accelerated Degradation Test with Stress Optimization

机译:压力加速降解试验规划,应力优化

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For highly-reliable products, Accelerated Degradation Testing (ADT) data can provide useful reliability information. Moreover, Step-Stress Accelerated Degradation Testing (SSADT) usually requires a less sample size, shorter time and less cost than Constant-Stress Accelerated Degradation Testing (CSADT). However, in designing an efficient SSADT, the issue about how to choose accelerated stress level was seldom discussed. In this study, first we use drift Brownian motion to model a typical SSADT performance degradation process. Then, under the situation that total experiment cost is not given while the sample size, total test time and the interval of performance inspection are specified, our objective is to minimize the asymptotic variance of the estimation of the reliability of the pth quantile of product's lifetime under use condition. Form the derivation of our objective, we find a way to improve the speed of optimal algorithm for SSADT. The optimal plan can give the stress levels and test time at each stress level. Finally a simulation example is used to illustrate the proposed method.
机译:对于高度可靠的产品,加速降级测试(ADT)数据可以提供有用的可靠性信息。此外,步进应力加速降解测试(SSADT)通常需要更少的样本尺寸,比恒定应力加速降解测试(CSADT)更短的时间和较低的成本。然而,在设计高效的SSADT时,关于如何选择加速压力水平的问题很少讨论。在这项研究中,首先我们使用漂移布朗运动来模拟典型的SSADT性能下降过程。因此,在规定了样本大小的总实验成本的情况下,指定了总实验成本的情况下,我们的目的是最大限度地减少估计产品寿命的Pth分位数的可靠性的渐近方差在使用条件下。形成我们目标的推导,我们找到了提高SSADT最佳算法速度的方法。最佳计划可以在每个应力水平下给出应力水平和测试时间。最后,使用仿真示例来说明所提出的方法。

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