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A conceptual framework for large-scale ecosystem interoperability and industrial product lifecycles

机译:大规模生态系统互操作性和工业产品生命周期的概念框架

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摘要

One of the most significant challenges in information system design is the constant and increasing need to establish interoperability between heterogeneous software systems at increasing scale. The automated translation of data between the data models and languages used by information ecosystems built around official or de facto standards is best addressed using model-driven engineering techniques, but requires handling both data and multiple levels of metadata within a single model. Standard modelling approaches are generally not built for this, compromising modelling outcomes. We establish the SLICER conceptual framework built on multilevel modelling principles and the differentiation of basic semantic relations (such as specialisation, instantiation, specification and categorisation) that dynamically structure the model. Moreover, it provides a natural propagation of constraints over multiple levels of instantiation. The presented framework is novel in its flexibility towards identifying the multilevel structure, the differentiation of relations often combined in other frameworks, and a natural propagation of constraints over multiple levels of instantiation.
机译:信息系统设计中最重大的挑战之一是不断增加建立异构软件系统之间的互操作性的需求。使用模型驱动的工程技术可以最好地解决围绕官方或事实上的标准构建的信息生态系统所使用的数据模型和语言之间的数据自动转换,但需要在单个模型中处理数据和元数据的多个级别。通常没有为此建立标准的建模方法,从而损害了建模结果。我们建立基于多级建模原理以及动态语义化模型的基本语义关系(例如专业化,实例化,规范和分类)的区分的SLICER概念框架。而且,它在多个实例化级别上提供约束的自然传播。提出的框架具有新颖性,可以灵活地识别多级结构,通常在其他框架中组合的关系差异以及约束在多个实例化级别上的自然传播。

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