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System Reactivity Components in Cellular Manufacturing Subjected to Frequent Unavailability of Physical and Human Resources

机译:蜂窝制造中的系统反应性分量经受身体和人力资源的频繁不可用

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In manufacturing systems, different types of disturbances influence system's performance. In this paper those components within a manufacturing cell contributing to maintain a higher performance, despite the influence of internal disturbances such as machine breakdowns and operator unavailability, are investigated. Discrete event simulation is used to model the processing and material handling subsystems within a cellular manufacturing. Experimentation is conducted using a full factorial design and data analysis is performed using analysis of variance. The results indicated that, in terms of systems reactivity, processing subsystems aspects such as the skills of the operators, the capacity of the buffers and the duration of machine set-ups are more efficient in coping with work-in-progress (WIP) resulting from the effect of disturbances than aspects related to the material handling sub system.
机译:在制造系统中,不同类型的干扰影响系统的性能。 在本文中,在制造单元中的那些组件有助于保持更高的性能,尽管内部干扰的影响如机器击穿和操作员不可用。 离散事件仿真用于在蜂窝制造中模拟处理和材料处理子系统。 使用完整的因素设计进行实验,并使用方差分析进行数据分析。 结果表明,在系统反应性方面,处理子系统的方面,例如运营商的技能,缓冲区的能力和机器设置的持续时间在应对过程中更有效(WIP)所产生的 从扰动的影响而不是物料处理子系统相关的方面。

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