A Meta-Model for Representing Consistency as Extension to the Formal Process Description

Lukas Kathrein, Kristof Meixner, D. Winkler, A. Lüder, S. Biffl
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引用次数: 4

Abstract

In discrete manufacturing, basic and detail engineering workgroups need to collaborate to design highly automated cyber-physical production systems. Product/ion-awareness describes views and requirements coming from product and production process design, which are relevant to engineer production resources. These requirements imply strong dependencies between the product, the production process, and production resources (PPR). The Formal Process Description (FPD) provides basic concepts for modeling PPR knowledge, which support discrete manufacturing to some extent. In this paper, we introduce a meta-model that describes the structure of the FPD including a set of proposed extensions, focusing on expressing consistency dependencies on PPR relations, as a foundation for making design decisions traceable in the engineering process. In addition, the meta-model provides a clear description of how to model parallel or alternative process flows, a common use case in discrete manufacturing. The meta-model provides stakeholders with a clear description of the PPR modeling language (PPR-ML) and a rule set to check the validity of a model
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作为形式化过程描述扩展的一致性表示元模型
在离散制造中,基础和细节工程工作组需要协作设计高度自动化的网络物理生产系统。产品/离子意识描述了来自产品和生产过程设计的观点和要求,这与工程生产资源相关。这些需求意味着产品、生产过程和生产资源(PPR)之间有很强的依赖性。正式过程描述(FPD)为PPR知识的建模提供了基本概念,在一定程度上支持离散制造。在本文中,我们引入了一个元模型,该模型描述了FPD的结构,包括一组建议的扩展,重点是表达PPR关系的一致性依赖,作为在工程过程中使设计决策可追溯的基础。此外,元模型提供了如何对并行或可选流程流建模的清晰描述,这是离散制造中的常见用例。元模型为涉众提供了对PPR建模语言(PPR- ml)的清晰描述和用于检查模型有效性的规则集
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