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A GLM Approach to Optimal ALT Test Plans for Weibull Distribution with Type-I Censoring

机译:I型审查的威布尔分布最优ALT测试计划的GLM方法

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The aim of this paper is to derive the methodology for planning an optimal accelerated life test with the consideration of type-I censoring. In a typical industrial setting, the total duration of ALT tests must be controlled as failure times are random in nature. The generalized linear model approach allows optimal designs to be found using iteratively weighted least squares solution without directly calculating the expected Fisher information matrix, which is often intractable in the case of censoring. This approach is demonstrated with an assumed Weibull distribution. We discuss both D-optimal design, where the determinant of variance-covariance matrix of model parameters is minimized, and U_c.-optimal design, where the prediction variance of lifetime at a product's use condition is minimized.
机译:本文的目的是在考虑类型I审查的情况下,得出用于规划最佳加速寿命测试的方法。在典型的工业环境中,由于故障时间本质上是随机的,因此必须控制ALT测试的总持续时间。广义线性模型方法允许使用迭代加权最小二乘解找到最佳设计,而无需直接计算预期的Fisher信息矩阵,这在审查情况下通常很难处理。假定的威布尔分布证明了这种方法。我们讨论了D-最优设计(其中模型参数的方差-协方差矩阵的行列式最小)和U_c。最优设计(其中产品使用条件下的寿命预测方差最小)。

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