自适应简单阶跃应力部分加速寿命试验下的贝叶斯可靠性验收抽样计划

Rathin Das, Biswabrata Pradhan
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引用次数: 0

摘要

在传统的简单阶跃应力局部加速寿命试验(SSSPALT)中,物品在正常工作条件下工作到一定时间,然后增加应力,以便尽早获得失效时间信息。然而,当应力增加时,会产生额外的成本,从而增加寿命测试的成本。在这种情况下,我们考虑采用自适应 SSSPALT,即在一定时间后,如果到该时间为止的失效次数少于预先指定的失效次数,则增加应力。我们考虑通过在 I 类剔除条件下进行的自适应 SSSALT 确定贝叶斯可靠性验收抽样计划(BSP)。自适应 SSSPALT 下的 BSP 称为 BSPAA。在一般损失函数下,可以得到贝叶斯决策函数和贝叶斯风险。通过最小化贝叶斯风险,得到了二次损失函数的最优 BSPAA。为计算最优 BSPAA 提供了一种算法。比较了所提出的 BSPAA 与通过非加速寿命测试的传统 BSP(CBSP)和通过 SSSPALT 的传统 BSP(CBSPA)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bayesian reliability acceptance sampling plans under adaptive simple step stress partial accelerated life test
In the traditional simple step-stress partial accelerated life test (SSSPALT), the items are put on normal operating conditions up to a certain time and after that the stress is increased to get the failure time information early. However, when the stress increases, an additional cost is incorporated that increases the cost of the life test. In this context, an adaptive SSSPALT is considered where the stress is increased after a certain time if the number of failures up to that point is less than a pre-specified number of failures. We consider determination of Bayesian reliability acceptance sampling plans (BSP) through adaptive SSSALT conducted under Type I censoring. The BSP under adaptive SSSPALT is called BSPAA. The Bayes decision function and Bayes risk are obtained for the general loss function. Optimal BSPAAs are obtained for the quadratic loss function by minimizing Bayes risk. An algorithm is provided for computation of optimum BSPAA. Comparisons between the proposed BSPAA and the conventional BSP through non-accelerated life test (CBSP) and conventional BSP through SSSPALT (CBSPA) are carried out.
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