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Economic design under gamma shock model of the control chart for sustainable operations

机译:可持续业务控制图伽马冲击模型下的经济设计

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The non-uniform sampling scheme and economic statistical design approaches have been successfully applied to determine three parameters of x-bar control charts to monitor a manufacturing process with increasing hazard functions for the last three decades. Nevertheless, a primary assumption for these cost models is that measurements within a sample are independent. However, the conventional supposition may significantly underestimate the type I error probability for the x-bar control chart. Hence, we develop a cost model that combines different researches with the multivariate normal distribution model that given the maximum probability of type I error and the minimum value of power. The optimal parameters of non-uniform sampling interval x-bar control charts are used for the measurements within a sample being correlated. In addition, an industrial example is applied to indicate the solution procedure. Sensitivity analysis is accompanied with input parameters including correlated coefficients as well as process and cost parameters of the model are performed. The genetic algorithm is adopted to reveal the optimal solution of the economic design. The method proposed can be used on related industries to achieve the ability of production monitoring and cost reducing. The human resource consuming and the amount of scraps will be avoided toward the conclusive goals of economic benefit, environmental benefit and social benefit.
机译:已经成功地应用了非均匀采样方案和经济统计设计方法以确定X-Bar控制图的三个参数,以监测过去三十年的危险功能增加的制造过程。然而,这些成本模型的主要假设是样品中的测量是独立的。然而,传统假设可以显着低估X杆控制图表的I误差概率。因此,我们开发了一种成本模型,该模型将不同的研究与多元正常分布模型相结合,给出了I型误差的最大概率和功率最小值的最大概率。非均匀采样间隔X-Bar控制图的最佳参数用于样本中的测量值相关。此外,应用工业实例以指示解决方案程序。敏感性分析伴随着输入参数,包括相关系数以及模型的过程和成本参数。采用遗传算法揭示了经济设计的最佳解决方案。所提出的方法可用于相关行业,以实现生产监测和降低成本的能力。对经济利益,环境效益和社会利益的确凿目标,将避免人力资源消耗和废料量。

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