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Planning gamma accelerated degradation tests with two accelerating variables

机译:规划具有两个加速变量的伽马加速降解测试

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摘要

Gamma accelerated degradation tests (ADT) are widely used to assess timely lifetime information of highly reliable products with degradation paths that follow a gamma process. In the existing literature, there is interest in addressing the problem of deciding how to conduct an efficient, ADT that includes determinations of higher stress-testing levels and their corresponding sample-size allocations. The existing results mainly focused on the case of a single accelerating variable. However, this may not be practical when the quality characteristics of the product have slow degradation rates. To overcome this difficulty, we propose an analytical approach to address this decision-making problem using the case of two accelerating variables. Specifically, based on the criterion of minimizing the asymptotic variance of the estimated q quantile of lifetime distribution of the product, we analytically show that the optimal stress levels and sample-size allocations can be simultaneously obtained via a general equivalence theorem. In addition, we use a practical example to illustrate the proposed procedure.
机译:伽玛加速降解测试(ADT)被广泛用于评估具有遵循伽玛过程降解路径的高度可靠产品的及时使用寿命信息。在现有文献中,有兴趣解决决定如何进行有效的ADT的问题,其中包括确定更高的压力测试水平及其相应的样本量分配。现有结果主要集中在单个加速变量的情况下。但是,当产品的质量特性降解速度较慢时,这可能不切实际。为了克服这一困难,我们提出了一种使用两个加速变量的情况来解决该决策问题的分析方法。具体而言,基于最小化产品寿命分布的估计q分位数的渐近方差的标准,我们通过分析表明,可以通过一般的等价定理同时获得最佳应力水平和样本大小分配。此外,我们使用一个实际示例来说明建议的过程。

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