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Integrating heterogeneous engineering knowledge and tools for efficient industrial simulation model support

机译:集成异构工程知识和工具,以提供有效的工业仿真模型支持

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摘要

Design of simulation models and their integration into industrial automation systems require knowledge from several heterogeneous data sources and tools. Due to the heterogeneity of engineering data, the integration of the tools and data are time-consuming and error-prone tasks nowadays. The key goal of this article is to provide an effective and efficient integration of heterogeneous data sources and tools as a knowledge basis to support dynamic simulation for industrial plants. The integrated knowledge is utilized both (i) in the design phase of simulation models for defining structure and interfaces of the models and (ii) in the runtime phase of industrial systems for model-driven configuration of the integrated environment. Reaching such goals with a manual approach or point-to-point integration is not beneficial as it may be possible for a few tools and data sources, but quickly gets very complex. A growing number of elements increases the risk of errors and the effort needed for integration. The proposed solution is based on a specification of a common data model to represent engineering knowledge and a service-oriented tool integration with the Engineering Service Bus. Engineering knowledge is integrated in a knowledge base implemented with ontologies in Web Ontology Language-Description Logic (OWL-DL). The proposed approach is demonstrated and evaluated on an educational hydraulic system. Major results of the article are: (ⅰ) a data model to represent engineering knowledge for dynamic industrial systems, (ⅱ) the integration platform that, based on this model, integrates the tools for system design and runtime, and (ⅲ) basic design-time and runtime processes for the integrated industrial simulations.
机译:仿真模型的设计及其与工业自动化系统的集成需要来自多种异构数据源和工具的知识。由于工程数据的异构性,当今工具和数据的集成是耗时且容易出错的任务。本文的主要目标是提供有效和高效的异构数据源和工具集成,作为支持工业工厂动态仿真的知识基础。 (i)在仿真模型的设计阶段用于定义模型的结构和接口,以及(ii)在工业系统的运行阶段用于集成环境的模型驱动的配置。用手动方法或点对点集成来达到这样的目标是无益的,因为可能有一些工具和数据源,但是很快变得非常复杂。越来越多的元素会增加错误的风险和集成所需的工作量。提出的解决方案基于表示工程知识的通用数据模型规范以及与工程服务总线的面向服务的工具集成。工程知识被集成到使用Web本体语言描述逻辑(OWL-DL)的本体实现的知识库中。在教育液压系统上对所提出的方法进行了演示和评估。本文的主要结果是:(ⅰ)表示动态工业系统的工程知识的数据模型;(ⅱ)基于该模型的集成平台,该平台集成了用于系统设计和运行时的工具;以及(ⅲ)基本设计集成工业仿真的实时和运行时过程。

著录项

  • 来源
    《Advanced engineering informatics》 |2015年第3期|575-590|共16页
  • 作者单位

    Czech Technical University in Prague, Zikova 4, 166 36 Prague 6, Czech Republic,Christian Doppler Laboratory for Software Engineering Integration for Flexible Automation Systems, Vienna University of Technology, Favoritenstrasse 9-11/188,1040 Vienna, Austria;

    Research Centre for Management Informatics, KU Leuven, Naamsestraat 69, 3000 Leuven, Belgium;

    Christian Doppler Laboratory for Software Engineering Integration for Flexible Automation Systems, Vienna University of Technology, Favoritenstrasse 9-11/188,1040 Vienna, Austria;

    Christian Doppler Laboratory for Software Engineering Integration for Flexible Automation Systems, Vienna University of Technology, Favoritenstrasse 9-11/188,1040 Vienna, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Knowledge modeling; Data transformation; Ontology design; Integrated environment; System integration and implementation;

    机译:知识建模;数据转换;本体设计;综合环境;系统集成与实施;

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