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Optimum time-censored simple ramp-stress accelerated life test sampling plan for the log-logistic distribution

机译:对数逻辑分布的最佳时间检查简单斜坡应力加速寿命试验采样计划

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Purpose - Acceptance sampling plans are designed to decide about acceptance or rejection of a lot of products on the basis of sample drawn from it. Accelerating the life test helps in obtaining information about the lifetimes of high reliability products quickly. The purpose of this paper is to formulate an optimum time censored acceptance sampling plan based on ramp-stress accelerated life test (ALT) for items having log-logistic life distribution. The log-logistic life distribution has been found appropriate for highly reliable components such as power system components and insulating materials. Design/methodology/approach - The inverse power relationship has been used to model stress-life relationship. It is meant for analyzing data for which the accelerated stress is nonthermal in nature, and frequently used as an accelerating stress for products such as capacitors, transformers, and insulators. The method of maximum likelihood is used for estimating design parameters. The optimal test plan is obtained by minimizing variance of test-statistic that decides on acceptability or rejectibility of lot. The optimal test plan finds optimal sample size, stress rates, sample proportion allocated to each stress and lot acceptability constant such that producer's risk and consumer's risk is satisfied. Findings - Asymptotic variance plays a pivotal role in determining the sample size required for a sampling plan for deciding the acceptance/rejection of a lot. The sample size is minimized by optimally designing a ramp-stress ALT so that the asymptotic variance is minimized. Originality/value - The model suggested is of use to quality control and reliability engineers dealing with highly reliable items.
机译:目的-验收抽样计划旨在根据从中抽取的样本来决定是否接受许多产品。加速寿命测试有助于快速获得有关高可靠性产品寿命的信息。本文的目的是为具有对数逻辑寿命分布的项目制定基于斜坡应力加速寿命试验(ALT)的最佳时间检查验收抽样计划。已发现对数逻辑寿命分布适用于高度可靠的组件,例如电力系统组件和绝缘材料。设计/方法/方法-逆功率关系已用于建模应力-寿命关系。它用于分析加速应力本质上是非热的,并经常用作电容器,变压器和绝缘子等产品的加速应力的数据。最大似然法用于估计设计参数。最佳测试计划是通过最小化决定批次是否可接受的测试统计差异来获得的。最佳测试计划可以找到最佳样本量,压力率,分配给每个压力的样本比例和批次可接受性常数,从而满足生产者的风险和消费者的风险。调查结果-渐近方差在确定抽样计划所需的样本量以决定批次的接受/拒绝方面起着关键作用。通过最佳设计斜坡应力ALT可以使样本大小最小化,从而使渐近方差最小化。原创性/价值-所建议的模型适用于处理高度可靠项目的质量控制和可靠性工程师。

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