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Modelling and implementation of manufacturing direct labour allocation: a case study in semiconductor production operations

机译:制造直接劳动力分配的建模与实施:半导体生产运营中的案例研究

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摘要

In many current semiconductor manufacturing operations, headcount is manually allocated periodically based on man-machine ratio. Attributed to non-optimised allocation of direct labour to operations/machines, considerable productivity loss occurs. The problem is further complicated by some dynamic and uncertain factors such as constantly changing production targets and work in progress, overlapped labour skills, and variability in manufacturing operations and labour absenteeism rates. Motivated by the needs in real practice, this study aims to develop a model for allocating a direct workforce among semiconductor manufacturing operations to meet production targets and maximise labour productivity. This paper presents a two-stage goal programming model for the headcount allocation problem. To enhance the model's pragmatic use, a queueing module is introduced to account for the interferences among the multi-machine operations. Computational experiments are carried out to evaluate the performances of the proposed algorithms and pilot runs are implemented in a factory. Finally, a prototype system is developed and has been proved to be useful in practice.
机译:在许多当前的半导体制造操作中,根据人机比率定期手动分配人员。由于对工作/机器的直接人工分配未进行优化,因此导致了相当大的生产率损失。由于一些动态和不确定的因素(例如不断变化的生产目标和在建工程,劳动技能重叠,制造操作和劳动缺勤率的差异),问题变得更加复杂。出于实际实践中的需求的激励,本研究旨在开发一种模型,用于在半导体制造业务之间分配直接劳动力,以实现生产目标并最大限度地提高劳动生产率。本文提出了一个用于人员分配问题的两阶段目标规划模型。为了增强模型的实际使用,引入了一个排队模块来解决多机操作之间的干扰。进行计算实验以评估所提出算法的性能,并在工厂中进行试运行。最后,开发了原型系统,并已被证明在实践中很有用。

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