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Reasoning on Engineering Knowledge: Applications and Desired Features

机译:工程知识推理:应用程序和所需功能

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The development and operation of highly flexible automated systems for discrete manufacturing, which can quickly adapt to changing products, has become a major research field in industrial automation. Adapting a manufacturing system to a new product for instance requires comparing the systems functionality against the requirements imposed by the changed product. With an increasing frequency of product changes, this comparison should be automated. Unfortunately, there is no standard way to model the functionality of a manufacturing system, which is an obstacle to automation. The engineer still has to analyze all documents provided by engineering tools like 3D-CAD data, electrical CAD data or controller code. In order to support this time consuming process, it is necessary to model the so-called skills of a manufacturing system. A skill represents certain features an engineer has to check during the adaption of a manufacturing system, e.g. the kinematic of an assembly or the maximum load for a gripper. Semantic Web Technologies (SWT) provide a feasible solution for modeling and reasoning on the knowledge of these features. This paper provides the results of a project that focused on modeling the kinematic skills of assemblies. The overall approach as well as further requirements are shown. Since not all expectations on reasoning functionality could be met by available reasoners, the paper focuses on desired reasoning features that would support the further use of SWT in the engineering domain.
机译:用于离散制造的高度灵活的自动化系统的开发和运行,可以快速适应不断变化的产品,已成为工业自动化的主要研究领域。例如,要使制造系统适应新产品,就需要将系统功能与更改后的产品所施加的要求进行比较。随着产品更换频率的增加,这种比较应该是自动化的。不幸的是,没有标准的方法可以对制造系统的功能进行建模,这是自动化的障碍。工程师仍然必须分析工程工具提供的所有文档,例如3D-CAD数据,电气CAD数据或控制器代码。为了支持此耗时的过程,必须对制造系统的所谓技能进行建模。技能代表工程师在制造系统适应期间必须检查的某些功能。组件的运动学或夹具的最大负载。语义Web技术(SWT)为基于这些功能的知识进行建模和推理提供了一种可行的解决方案。本文提供了一个项目的结果,该项目专注于对装配体的运动学技能进行建模。显示了总体方法以及进一步的要求。由于可用的推理程序无法满足所有对推理功能的期望,因此本文重点介绍了所需的推理功能,这些功能将支持在工程领域进一步使用SWT。

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