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Design an Optimal Accelerated-Stress Reliability Acceptance Test Plan Based on Acceleration Factor

机译:基于加速因子设计最佳加速应力可靠性验收测试计划

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摘要

A reliability acceptance test is used to investigate the reliability of products delivered by producer before buyer accepts them. However, the traditional reliability acceptance test based on lifetime data, which is conducted under a comparative low stress level, is time consuming. It is an interesting and useful issue to study how to design an optimal accelerated-stress reliability acceptance test (ASRAT) to improve test efficiency. An inverse Gaussian process was applied to model degradation data of products. Acceleration factor constant principle was applied to derive the expression of acceleration factor for the inverse Gaussian degradation model, so the termination time of ASRAT was obtained through acceleration factor. The asymptotic variance of termination time was selected as an objective function to establish the optimization model of the ASRAT plan. The decision variables, including accelerated stress level, sample size, and the number of measurement were optimized by minimizing the asymptotic variance of termination time under a total cost constraint. Then, an automatic algorithm based on MATLAB procedure was developed to help efficiently design optimal ASRAT plans. Finally, the proposed method was used to design an optimal ASRAT plan for a type of electric connector. Sensitivity analysis indicates that the optimal ASRAT plan is robust to small bias of parameter estimation. Moreover, simulation tests were conducted to demonstrate the usefulness of ASRAT and investigate the impact of degradation model misspecification on designing an optimal ASRAT plan.
机译:可靠性验收测试用于调查生产者在买方接受它们之前由生产者提供的产品的可靠性。然而,基于寿命数据的传统可靠性验收测试在比较低应力水平下进行的寿命数据是耗时的。研究如何设计如何设计最佳加速应力可靠性验收测试(ASRAT)是一种有趣和有用的问题,以提高测试效率。逆高斯过程应用于产品的模型降级数据。加速因子恒定原理应用于导出逆高斯降解模型的加速因子的表达,因此通过加速因子获得了ASRAT的终止时间。选择终止时间的渐近方差被选为建立ASRAT计划的优化模型的目标函数。通过在总成本约束下最小化终止时间的渐近方差来优化决策变量,包括加速应力水平,样本量和测量次数。然后,开发了一种基于MATLAB程序的自动算法,以帮助有效地设计最佳ASRAT计划。最后,该方法用于设计一种电连接器的最佳ASRAT计划。敏感性分析表明,最佳ASRAT计划对参数估计的小偏差稳健。此外,进行了仿真试验以证明ASRAT的有用性,并调查降解模型误操作对设计最佳ASRAT计划的影响。

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