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Robust Design Of Adaptive Control Chartsfor Manual Manufacturing/inspection workstations

机译:手动制造/检查工作站的自适应控制图的鲁棒设计

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Often the manufacturing and the inspection workstations in a manufacturing process can coincide: thus, in these workstations the statistical process control (SPC) procedure of collecting sample statistics related to a critical-to-quality parameter is a task required to be done by the same worker who has to complete the working operations on a part. The aim of this study is to design a local SPC inspection procedure implementing an adaptive Shewhart control chart locally managed by the worker within the manufacturing workstation: the economic design of the inspection procedure is constrained by the expected number of false alarms issued and is restricted to those designs feasible with respect to the available shared labour resource. Furthermore, a robust approach that models the shift of the controlled parameter mean as a random variable is taken into account. The numerical analysis allows the most influencing environmental process factors to be captured and commented upon. The obtained results show that a few process operating parameters drive the choice of performing a robust optimization and the selection of the optimal SPC adaptive procedure.
机译:通常,制造过程中的制造工作站和检查工作站可能会重合:因此,在这些工作站中,收集与质量关键参数有关的样本统计数据的统计过程控制(SPC)程序是由同一工作人员完成的任务必须完成一部分工作的工人。这项研究的目的是设计一种本地SPC检查程序,该程序实施由制造工作站内的工人在本地管理的自适应Shewhart控制图:检查程序的经济设计受到预期的错误警报数量的限制,并且仅限于就可用的共享劳力而言,这些设计是可行的。此外,考虑了将受控参数均值的变化建模为随机变量的鲁棒方法。数值分析可以捕获和评论影响最大的环境过程因素。获得的结果表明,一些过程操作参数驱动着执行鲁棒性优化的选择和最佳SPC自适应程序的选择。

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