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Designing an Accelerated Degradation Experiment by Optimizing the Estimation of the Percentile

机译:通过优化百分位数估算设计加速降解实验

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摘要

Degradation tests are widely used to assess the reliability of highly reliable products which are not likely to fail under traditional life tests or accelerated life tests. However, for some highly reliable products, the degradation may be very slow and hence it is impossible to have a precise assessment within a reasonable amount of testing time. In such cases, an alternative is to use higher stresses to extrapolate the product's reliability at the design stress. This is called an accelerated degradation test (ADT). In conducting an ADT, several decision variables, such as the inspection frequency, sample size and termination time, at each stress level are influential on the experimental efficiency. An inappropriate choice of these decision variables not only wastes experimental resources but also reduces the precision of the estimation of the product's reliability at the use condition. The main purpose of this paper is to deal with the problem of designing an ADT. By using the criterion of minimizing the mean-squared error of the estimated 100 pth percentile of the product's lifetime distribution at the use condition subject to the constraint that the total experimental cost does not exceed a predetermined budget, a nonlinear integer programming problem is built to derive the optimal combination of the sample size, inspection frequency and the termination time at each stress level. A numerical example is provided to illustrate the proposed method.
机译:退化测试被广泛用于评估在传统寿命测试或加速寿命测试中不太可能失败的高度可靠产品的可靠性。但是,对于某些高度可靠的产品,降解可能会非常缓慢,因此不可能在合理的测试时间内进行精确评估。在这种情况下,一种替代方法是使用更高的应力来推断产品在设计应力下的可靠性。这称为加速降解测试(ADT)。在进行ADT时,在每个应力水平下,几个决策变量(例如检查频率,样本量和终止时间)会影响实验效率。这些决策变量的不适当选择不仅浪费实验资源,而且降低了使用条件下产品可靠性评估的准确性。本文的主要目的是解决设计ADT的问题。通过使用最小化产品寿命分布的估计百分位数的均方误差的标准,该条件在使用条件下受到总实验成本不超过预定预算的约束,从而建立了非线性整数规划问题得出每个应力水平下样本量,检查频率和终止时间的最佳组合。数值例子说明了所提出的方法。

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