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Optimum inspection policies of reliability analysis for quantal-response product with Weibull lifetime components

机译:具有威布尔寿命组件的定量响应产品可靠性分析的最佳检查策略

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Purpose - The purpose of the paper is to show that modern markets are characterized by rapidly changing environments and numerous external forces. Under these conditions, product lifetimes are rapidly reducing. Therefore, products require optimum inspection policies to maintain high quality and reduce costs in the competitive market. This study aims to establish optimal inspection policies of reliability analysis for quantal-response product with Weibull lifetime components. Design/methodology/approach - This study considers a product consisting of m different components in series with lifetimes that follow Weibull distributions, and applies a competing failure model to examine the proposed series system for quantal-response products. The maximum likelihood estimators of parameters of the Weibull distribution are derived based on the quantal-response data in the proposed series system. The statistical features of the model are illustrated through a numerical example of two-component series products, and the properties of the maximum likelihood estimators were studied via Monte Carlo simulation under a two-stage inspected scheme for various sampling sizes and inspection time conditions. Findings - Simulation results demonstrate not only that the optimum inspection condition is the inspection times at T_1 = 0.2 and T_2 = 0.5 for the two-stage inspected scheme, but also that the economical sampling size is 150 for both cases. Originality/value - This research results can be applied to the analysis of one-shot products, e.g. firework, ammunition, airbag, injector, with Weibull components lifetime distribution or the stockpile storage test.
机译:目的-本文的目的是表明现代市场的特征是环境瞬息万变,外来力量众多。在这些条件下,产品的寿命正在迅速减少。因此,产品需要最佳的检查策略以在竞争激烈的市场中保持高质量并降低成本。这项研究旨在建立具有威布尔寿命组件的定量响应产品可靠性分析的最佳检查策略。设计/方法/方法-这项研究考虑了一个由m个不同组件组成的产品,这些组件的寿命遵循Weibull分布,并应用竞争性失效模型来检验拟议的定量响应产品系列系统。基于提出的串联系统中的量子响应数据,推导了威布尔分布参数的最大似然估计。通过两分量系列乘积的数值示例来说明模型的统计特征,并通过蒙特卡罗模拟在两阶段检查方案下针对各种采样大小和检查时间条件研究了最大似然估计量的性质。结果-仿真结果表明,最佳检查条件不仅是两阶段检查方案的T_1 = 0.2和T_2 = 0.5时的检查时间,而且两种情况下的经济抽样量均为150。原创性/价值-此研究结果可用于一次性产品的分析,例如烟火,弹药,安全气囊,喷油器,以及Weibull组件的使用寿命分布或库存存储测试。

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