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Toward Process Control from Formal Models of Transformable Manufacturing Systems

机译:从可变形制造系统的正式模型转向过程控制

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The automation and flexibility of production systems is a key step towards improved profitability and competitiveness in high labour cost areas, when producing high-complexity, low-volume products. In the Evolvable Assembly Systems (EAS) project, the ‘manufacturability’ (or ‘realisability’) and ‘control’ algorithms were introduced to accommodate the batch-size-of-one production of highly customisable products. These algorithms enable checking whether a production line can manufacture a given product with its available set of resources, and how the product should be manufactured, e.g. which resources to use, and when. To this end, the authors formally define production recipes, which represent products, and manufacturing resources which make up a manufacturing facility. This paper re-defines these notions in the ISO-standard EBNF (Extended Backus-Naur Form) notation, and adapts the the manufacturability and control algorithms to accommodate the new definitions. The new algorithms and data structures reflect more closely the ones that are used in an implemented software tool. This paper also reports a method by which recipes and resources could be used to generate manufacturing process controllers in the Business to Manufacturing Markup Language (B2MML) standard. In doing so, this paper takes a step toward a complete path from the formal specification of a manufacturing facility and the products to be manufactured, to the automatic generation of executable process plans.
机译:生产高复杂度,小批量产品时,生产系统的自动化和灵活性是提高高人工成本领域的盈利能力和竞争力的关键一步。在可进化装配系统(EAS)项目中,引入了“可制造性”(或“可靠性”)和“控制”算法,以适应高度可定制产品的批量生产。这些算法使得能够检查生产线是否可以利用其可用资源集来制造给定的产品,以及应该如何制造该产品,例如,制造商。使用哪些资源,何时使用。为此,作者正式定义了代表产品的生产配方,以及构成制造工厂的制造资源。本文以ISO标准EBNF(扩展Backus-Naur形式)表示法重新定义了这些概念,并调整了可制造性和控制算法以适应新的定义。新的算法和数据结构更紧密地反映了已实现的软件工具中使用的算法和数据结构。本文还报告了一种方法,通过该方法,可以使用配方和资源来生成企业对制造标记语言(B2MML)标准中的制造过程控制器。为此,本文迈出了从制造厂和要制造的产品的正式规范到自动生成可执行工艺计划的完整路径。

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