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Task-driven e-manufacturing resource configurable model

机译:任务驱动的电子制造资源可配置模型

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摘要

Manufacturing resource configuration (MRC) plays a very important role in an e-Manufacturing system. Higher requirements for optimal configuration under online resource visibility and traceability have led to two main challenges. One is that more features of manufacturing tasks affecting the optimization results should be taken into consideration when establishing the MRC mathematical model for a manufacturing cell. The other is that manufacturing information should be given equal attention as MRC to realize real-time visibility and traceability of the resulting manufacturing cells. This paper presents a comprehensive mathematical model which considers more practical features of manufacturing tasks (e.g. batch volume and alternative processing routes) for manufacturing cell formation. This model adopts a fuzzy clustering method to group the manufacturing tasks and machines. Moreover, it is enabled by a smart equipment model to realize the configurable model of real-time manufacturing information and corresponding visualization and tracing methods. A case study is given to demonstrate the proposed models and methods.
机译:制造资源配置(MRC)在电子制造系统中扮演着非常重要的角色。在线资源可见性和可追踪性下对最佳配置的更高要求导致了两个主要挑战。一是在建立制造单元的MRC数学模型时,应考虑影响优化结果的制造任务的更多特征。另一个是制造信息应与MRC一样受到重视,以实现生成的制造单元的实时可见性和可追溯性。本文提出了一个综合的数学模型,该模型考虑了制造任务的更多实际功能(例如批处理量和替代加工路线)以制造细胞。该模型采用模糊聚类方法对制造任务和机器进行分组。此外,它还可以通过智能设备模型来实现实时制造信息的可配置模型以及相应的可视化和跟踪方法。案例研究证明了所提出的模型和方法。

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