OPC UA integration for field devices

A. Veichtlbauer, Martin Ortmayer, T. Heistracher
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引用次数: 41

Abstract

In industrial automation systems, deploying the well-established automation pyramid model is best practice. However, the trend to massively distributed systems, which are foreseen to co-operate using standardized protocols and common semantics, shows the limits of these traditional approaches. In order to enable for Industry 4.0 compliant solutions, appropriate means for scalable internetworking have to be developed and utilized. New modelling technologies have been developed to represent such distributed automation systems, incorporating a multidimensional layered approach. At higher hierarchy levels of these automation models, standardization approaches are quite common. However, at the field layer there are still many different field busses, which in most cases do not allow common semantics, but come along with their own object models. In contrast, the use of OPC UA at the field level, with its standardized protocol stack and semantic annotations, would allow for enabling field devives to fully participate in large scaled systems as Industry 4.0 components. This paper evaluates the potentials and limits of integrating OPC UA into legacy field devices with limited communication and calculation resources and provides quantitative measurement results of selected test scenarios.
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现场设备的OPC UA集成
在工业自动化系统中,部署成熟的自动化金字塔模型是最佳实践。然而,大规模分布式系统的趋势显示了这些传统方法的局限性,这些系统预计将使用标准化协议和通用语义进行协作。为了实现符合工业4.0的解决方案,必须开发和利用适当的可扩展互连网络手段。新的建模技术已经被开发出来,以表示这样的分布式自动化系统,并结合了多维层次的方法。在这些自动化模型的更高层次上,标准化方法是相当普遍的。然而,在字段层仍然有许多不同的字段总线,它们在大多数情况下不支持通用的语义,而是伴随着它们自己的对象模型。相比之下,在现场级使用OPC UA,以及其标准化的协议栈和语义注释,将允许现场设备作为工业4.0组件完全参与大型系统。本文评估了在通信和计算资源有限的情况下,将OPC UA集成到传统现场设备中的潜力和局限性,并提供了选定测试场景的定量测量结果。
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