Developing open source cyber-physical systems for service-oriented architectures using OPC UA

M. Müller, Elmar Wings, L. Bergmann
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引用次数: 23

Abstract

Cyber-physical systems (CPS) are key enabling technologies for the fourth industrial revolution, referred to as Industrie 4.0 or Industry 4.0. The Reference Architecture Model Industrie 4.0 (RAMI4.0) has recently been standardized and OPC Unified Architecture (OPC UA) is listed as the sole recommendation for implementation of a communication layer. Many automation and control systems offer already implementations of OPC UA but no satisfying implementation of OPC UA was found for Arduino, a popular platform for engineering physical computing systems. This paper presents open source integration and application of a customizable OPC UA server on an Arduino Yun board using open62541, an open source and free implementation of OPC UA. The Arduino board discussed in this paper offers hot-end closed-loop temperature control for a 3D printer but the temperature set value and control parameters can be manipulated and requested via OPC UA using OPC UA clients. The application is verified using Prosys OPC UA Client and UaExpert. The results of our research can be used for developing open source cyber-physical systems without specialized knowledge in microcontroller programming, bringing Industry 4.0 applications into classrooms without effort.
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使用OPC UA为面向服务的体系结构开发开源网络物理系统
信息物理系统(CPS)是第四次工业革命的关键使能技术,被称为工业4.0或工业4.0。参考体系结构模型工业4.0 (RAMI4.0)最近已经标准化,OPC统一体系结构(OPC UA)被列为实现通信层的唯一建议。许多自动化和控制系统已经提供了OPC UA的实现,但对于工程物理计算系统的流行平台Arduino,没有发现令人满意的OPC UA实现。本文介绍了一个可定制的OPC UA服务器在Arduino Yun板上使用open62541的开源集成和应用,open62541是OPC UA的开源和免费实现。本文讨论的Arduino板为3D打印机提供热端闭环温度控制,但温度设定值和控制参数可以通过OPC UA客户端通过OPC UA进行操作和请求。该应用程序使用Prosys OPC UA Client和UaExpert进行验证。我们的研究结果可用于开发开源网络物理系统,无需微控制器编程专业知识,将工业4.0应用程序轻松带入教室。
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