OPC UA节点集本体作为表示制造资源语义数字孪生的支柱

A. Perzylo, Stefan Profanter, Markus Rickert, A. Knoll
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引用次数: 22

摘要

在敏捷生产环境中,认知制造系统的有效性在很大程度上依赖于对制造资源之间各种级别互操作性的自动评估。为了做出明智的决策,需要对工作单元或生产线中的所有资源进行语义丰富的表示。OPC UA为这种分布式设置中的通信和信息交换提供了手段。本文提出了一种资源属性的语义表示,其中我们使用OWL本体对OPC UA NodeSet规范中可以找到的信息模型进行编码。我们进一步将这些模型与基于owl的资源几何描述以及(如果适用的话)其运动学模型结合起来。这导致了制造资源的硬件和软件特征的综合语义表示,我们称之为语义数字孪生。除此之外,它还通过虚拟原型降低了成本,并支持在生产线中自动部署制造任务。因此,小批量组装在经济上是可行的。为了尽量减少创建基于owl的UA NodeSet描述的工作量,我们提供了一个软件工具,用于自动转换遵循OPC基金会NodeSet2 XML模式的基于XML的NodeSet规范。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OPC UA NodeSet Ontologies as a Pillar of Representing Semantic Digital Twins of Manufacturing Resources
The effectiveness of cognitive manufacturing systems in agile production environments heavily depend on the automatic assessment of various levels of interoperability between manufacturing resources. For taking informed decisions, a semantically rich representation of all resources in a workcell or production line is required. OPC UA provides means for communication and information exchange in such distributed settings.This paper proposes a semantic representation of a resource’s properties, in which we use OWL ontologies to encode the information models that can be found in OPC UA NodeSet specifications. We further combine these models with an OWL-based description of the resource’s geometry and – if applicable – its kinematic model. This leads to a comprehensive semantic representation of hardware and software features of a manufacturing resource, which we call semantic digital twin. Among other things, it reduces costs through virtual prototyping and enables the automatic deployment of manufacturing tasks in production lines. As a result, small-batch assemblies become financially viable.In order to minimize the effort of creating OWL-based UA NodeSet descriptions, we provide a software tool for the automatic transformation of XML-based NodeSet specifications that adhere to the OPC Foundation’s NodeSet2 XML schema.
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