Developing Open Source Cyber-Physical Systems for Service-Oriented Architectures Using OPC UA

被引:0
|
作者
Muller, Marcel [1 ]
Wings, Elmar [1 ]
Bergmann, Lars [1 ]
机构
[1] Univ Appl Sci Emden Leer, Emden, Germany
关键词
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
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.
引用
收藏
页码:83 / 88
页数:6
相关论文
共 50 条
  • [21] Simulation-Enhanced Development of Industrial Cyber-Physical Systems Using OPC-UA and IEC 61499
    Metsala, Samuli
    Gulzar, Kashif
    Vyatkin, Valeriy
    Grohn, Laura
    Vaananen, Eero
    Saikko, Lauri
    Nyholm, Magnus
    INDUSTRIAL APPLICATIONS OF HOLONIC AND MULTI-AGENT SYSTEMS, 2017, 10444 : 125 - 139
  • [22] Enabling Plug&Play Cyber-Physical Systems Using Knowledge-Driven OPC UA Discovery
    Jirkovsky, Vaclav
    Kadera, Petr
    Obitko, Marek
    2019 IEEE 5TH WORLD FORUM ON INTERNET OF THINGS (WF-IOT), 2019, : 149 - 153
  • [23] Service-oriented Architecture Design Aspects of OPC UA for Industrial Applications
    Stopper, Markus
    Katalinic, Branko
    IMECS 2009: INTERNATIONAL MULTI-CONFERENCE OF ENGINEERS AND COMPUTER SCIENTISTS, VOLS I AND II, 2009, : 1809 - +
  • [24] A Service-Oriented Architecture of Cyber-Physical System and Study on Two Key Issues
    王鹏
    向阳
    张骐
    Journal of Donghua University(English Edition), 2012, 29 (04) : 299 - 304
  • [25] Modeling Architectures of Cyber-Physical Systems
    Kusmenko, Evgeny
    Roth, Alexander
    Rumpe, Bernhard
    von Wenckstern, Michael
    MODELLING FOUNDATIONS AND APPLICATIONS, ECMFA 2017, 2017, 10376 : 34 - 50
  • [26] Service-oriented communication model for cyber-physical-production-systems
    Faller, Clemens
    Hoeftmann, Max
    11TH CIRP CONFERENCE ON INTELLIGENT COMPUTATION IN MANUFACTURING ENGINEERING, 2018, 67 : 156 - 161
  • [27] Cyber-physical systems alter automation architectures
    Riedl, Matthias
    Zipper, Holger
    Meier, Marco
    Diedrich, Christian
    ANNUAL REVIEWS IN CONTROL, 2014, 38 (01) : 123 - 133
  • [28] View Consistency in Architectures for Cyber-Physical Systems
    Bhave, Ajinkya
    Krogh, Bruce H.
    Garlan, David
    Schmerl, Bradley
    2011 ACM/IEEE SECOND INTERNATIONAL CONFERENCE ON CYBER-PHYSICAL SYSTEMS (ICCPS 2011), 2011, : 151 - 160
  • [29] Supporting Heterogeneity in Cyber-Physical Systems Architectures
    Rajhans, Akshay
    Bhave, Ajinkya
    Ruchkin, Ivan
    Krogh, Bruce H.
    Garlan, David
    Platzer, Andre
    Schmerl, Bradley
    IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 2014, 59 (12) : 3178 - 3193
  • [30] Deployment Architectures for Cyber-Physical Control Systems
    Tseng, Shih-Hao
    Anderson, James
    2020 AMERICAN CONTROL CONFERENCE (ACC), 2020, : 5287 - 5294