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Assessing the structural complexity of manufacturing systems configurations

机译:评估制造系统配置的结构复杂性

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摘要

Modern manufacturing systems are increasingly required to be flexible and adaptable to changing market demands, which adds to their structural and operational complexity. One of the major challenges at the early design stages is to select a manufacturing system configuration that both satisfies the production functional requirements and is easy to operate and manage. A new metric for assessing the structural complexity of manufacturing system configurations is presented in this paper. The proposed complexity metric incorporates the quantity of information using an entropy approach. It accounts for the complexity inherent in the various modules in the manufacturing system through the use of an index derived from a newly developed manufacturing systems classification code. The code captures the effect of various component types and technologies used in a manufacturing system on the system's structural complexity. The presented metric would be helpful in selecting the least complex manufacturing system configuration that meets the requirements. An engine cylinder head production system is used to illustrate the application of the proposed methodology in comparing feasible but different manufacturing system configurations capable of producing the cylinder head based on their structurally inherent complexity.
机译:现代制造系统日益需要具有灵活性,并适应不断变化的市场需求,这增加了它们的结构和操作复杂性。在早期设计阶段的主要挑战之一是选择既满足生产功能要求又易于操作和管理的制造系统配置。本文提出了一种用于评估制造系统配置的结构复杂性的新指标。拟议的复杂性度量使用熵方法合并了信息量。通过使用从新开发的制造系统分类代码得出的索引,它解决了制造系统中各个模块固有的复杂性。该代码捕获了制造系统中使用的各种组件类型和技术对系统结构复杂性的影响。提出的度量标准将有助于选择满足要求的最不复杂的制造系统配置。发动机汽缸盖生产系统用于说明所提出的方法在基于结构固有的复杂性比较可行但不同的能够制造汽缸盖的制造系统配置方面的应用。

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