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Integration of Sensors Controllers and Instruments Using a Novel OPC Architecture

机译:使用新型OPC架构集成传感器控制器和仪器

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摘要

The interconnection between sensors, controllers and instruments through a communication network plays a vital role in the performance and effectiveness of a control system. Since its inception in the 90s, the Object Linking and Embedding for Process Control (OPC) protocol has provided open connectivity for monitoring and automation systems. It has been widely used in several environments such as industrial facilities, building and energy automation, engineering education and many others. This paper presents a novel OPC-based architecture to implement automation systems devoted to R&D and educational activities. The proposal is a novel conceptual framework, structured into four functional layers where the diverse components are categorized aiming to foster the systematic design and implementation of automation systems involving OPC communication. Due to the benefits of OPC, the proposed architecture provides features like open connectivity, reliability, scalability, and flexibility. Furthermore, four successful experimental applications of such an architecture, developed at the University of Extremadura (UEX), are reported. These cases are a proof of concept of the ability of this architecture to support interoperability for different domains. Namely, the automation of energy systems like a smart microgrid and photobioreactor facilities, the implementation of a network-accessible industrial laboratory and the development of an educational hardware-in-the-loop platform are described. All cases include a Programmable Logic Controller (PLC) to automate and control the plant behavior, which exchanges operative data (measurements and signals) with a multiplicity of sensors, instruments and supervisory systems under the structure of the novel OPC architecture. Finally, the main conclusions and open research directions are highlighted.
机译:传感器,控制器和仪器之间通过通信网络的互连对于控制系统的性能和有效性至关重要。自从90年代问世以来,过程控制的对象链接和嵌入(OPC)协议为监视和自动化系统提供了开放的连接性。它已广泛用于多种环境中,例如工业设施,建筑和能源自动化,工程教育等。本文提出了一种新颖的基于OPC的体系结构,以实现专门用于研发和教育活动的自动化系统。该提案是一个新颖的概念框架,分为四个功能层,其中对各个组件进行了分类,旨在促进涉及OPC通讯的自动化系统的系统设计和实施。由于OPC的优势,所提出的体系结构提供了开放式连接,可靠性,可伸缩性和灵活性等功能。此外,据报道,埃斯特雷马杜拉大学(UEX)开发了这种架构的四个成功的实验应用。这些情况证明了该体系结构支持不同域的互操作性的能力的概念。即,描述了诸如智能微电网和光生物反应器设施之类的能源系统的自动化,可访问网络的工业实验室的实现以及教育性硬件在环平台的开发。所有情况都包括一个可编程逻辑控制器(PLC),用于自动化和控制工厂行为,在新型OPC架构的结构下,它与多种传感器,仪器和监控系统交换操作​​数据(测量和信号)。最后,重点介绍了主要结论和开放的研究方向。

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