Enhancing Industrial Communication with Ethernet/Internet Protocol: A Study and Analysis of Real-Time Cooperative Robot Communication and Automation via Transmission Control Protocol/Internet Protocol
This study explores the important task of validating data exchange between a control box, a Programmable Logic Controller (PLC), and a robot in an industrial setting. To achieve this, we adopt a unique approach utilizing both a virtual PLC simulator and an actual PLC device. We introduce an innovati...
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| Veröffentlicht in: | Sensors (Basel, Switzerland) Jg. 23; H. 20; S. 8580 |
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| Abstract | This study explores the important task of validating data exchange between a control box, a Programmable Logic Controller (PLC), and a robot in an industrial setting. To achieve this, we adopt a unique approach utilizing both a virtual PLC simulator and an actual PLC device. We introduce an innovative industrial communication module to facilitate the efficient collection and storage of data among these interconnected entities. The main aim of this inquiry is to examine the implementation of Ethernet/IP (EIP), a relatively new addition to the industrial network scenery. It was designed using ODVA’s Common Industrial Protocol (CIP™). The Costumed real-time data communication module was programmed in C++ for the Linux Debian platform and elegantly demonstrates the impressive versatility of EIP as a means for effective data transfer in an industrial environment. The study’s findings provide valuable insights into Ethernet/IP’s functionalities and capabilities in industrial networks, bringing attention to its possible applications in industrial robotics. By connecting theoretical knowledge and practical implementation, this research makes a significant contribution to the continued development of industrial communication systems, ultimately improving the efficiency and effectiveness of automation processes. |
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| AbstractList | This study explores the important task of validating data exchange between a control box, a Programmable Logic Controller (PLC), and a robot in an industrial setting. To achieve this, we adopt a unique approach utilizing both a virtual PLC simulator and an actual PLC device. We introduce an innovative industrial communication module to facilitate the efficient collection and storage of data among these interconnected entities. The main aim of this inquiry is to examine the implementation of Ethernet/IP (EIP), a relatively new addition to the industrial network scenery. It was designed using ODVA’s Common Industrial Protocol (CIP™). The Costumed real-time data communication module was programmed in C++ for the Linux Debian platform and elegantly demonstrates the impressive versatility of EIP as a means for effective data transfer in an industrial environment. The study’s findings provide valuable insights into Ethernet/IP’s functionalities and capabilities in industrial networks, bringing attention to its possible applications in industrial robotics. By connecting theoretical knowledge and practical implementation, this research makes a significant contribution to the continued development of industrial communication systems, ultimately improving the efficiency and effectiveness of automation processes. This study explores the important task of validating data exchange between a control box, a Programmable Logic Controller (PLC), and a robot in an industrial setting. To achieve this, we adopt a unique approach utilizing both a virtual PLC simulator and an actual PLC device. We introduce an innovative industrial communication module to facilitate the efficient collection and storage of data among these interconnected entities. The main aim of this inquiry is to examine the implementation of Ethernet/IP (EIP), a relatively new addition to the industrial network scenery. It was designed using ODVA's Common Industrial Protocol (CIP™). The Costumed real-time data communication module was programmed in C++ for the Linux Debian platform and elegantly demonstrates the impressive versatility of EIP as a means for effective data transfer in an industrial environment. The study's findings provide valuable insights into Ethernet/IP's functionalities and capabilities in industrial networks, bringing attention to its possible applications in industrial robotics. By connecting theoretical knowledge and practical implementation, this research makes a significant contribution to the continued development of industrial communication systems, ultimately improving the efficiency and effectiveness of automation processes.This study explores the important task of validating data exchange between a control box, a Programmable Logic Controller (PLC), and a robot in an industrial setting. To achieve this, we adopt a unique approach utilizing both a virtual PLC simulator and an actual PLC device. We introduce an innovative industrial communication module to facilitate the efficient collection and storage of data among these interconnected entities. The main aim of this inquiry is to examine the implementation of Ethernet/IP (EIP), a relatively new addition to the industrial network scenery. It was designed using ODVA's Common Industrial Protocol (CIP™). The Costumed real-time data communication module was programmed in C++ for the Linux Debian platform and elegantly demonstrates the impressive versatility of EIP as a means for effective data transfer in an industrial environment. The study's findings provide valuable insights into Ethernet/IP's functionalities and capabilities in industrial networks, bringing attention to its possible applications in industrial robotics. By connecting theoretical knowledge and practical implementation, this research makes a significant contribution to the continued development of industrial communication systems, ultimately improving the efficiency and effectiveness of automation processes. |
| Audience | Academic |
| Author | Lee, Seungjae Seong, JuYong Lee, Sungchul Kye, Joongeup Ranjan, Rahul |
| AuthorAffiliation | 2 Department of Mechanical Engineering, Intelligent Robot Research Institute, Asan 31460, Republic of Korea; jekye@sunmoon.ac.kr 1 Division of Computer Science and Engineering, Sunmoon University, Asan 31460, Republic of Korea; humphery27@sunmoon.ac.kr (J.S.); rahulranjan@sunmoon.ac.kr (R.R.); leeko@sunmoon.ac.kr (S.L.) |
| AuthorAffiliation_xml | – name: 2 Department of Mechanical Engineering, Intelligent Robot Research Institute, Asan 31460, Republic of Korea; jekye@sunmoon.ac.kr – name: 1 Division of Computer Science and Engineering, Sunmoon University, Asan 31460, Republic of Korea; humphery27@sunmoon.ac.kr (J.S.); rahulranjan@sunmoon.ac.kr (R.R.); leeko@sunmoon.ac.kr (S.L.) |
| Author_xml | – sequence: 1 givenname: JuYong orcidid: 0009-0003-9511-5651 surname: Seong fullname: Seong, JuYong – sequence: 2 givenname: Rahul orcidid: 0000-0003-4549-5118 surname: Ranjan fullname: Ranjan, Rahul – sequence: 3 givenname: Joongeup surname: Kye fullname: Kye, Joongeup – sequence: 4 givenname: Seungjae surname: Lee fullname: Lee, Seungjae – sequence: 5 givenname: Sungchul surname: Lee fullname: Lee, Sungchul |
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| Cites_doi | 10.1016/j.iot.2023.100795 10.7873/DATE.2013.102 10.1016/j.csi.2020.103433 10.1109/TII.2023.3274224 10.1016/j.promfg.2020.10.003 10.23919/ICCAS55662.2022.10003850 10.1109/IJCNN.2006.247237 10.1109/AICI.2009.380 10.3390/s23052766 10.3182/20071107-3-FR-3907.00054 10.1109/TSC.2020.3025993 10.3390/s18113783 10.3390/machines11010048 10.3390/s22239197 10.3390/pr11030918 10.7873/DATE.2013.349 10.1016/S0893-6080(03)00129-1 10.1109/ETFA.2014.7005074 10.1109/TSMC.2019.2917149 10.3390/s23115013 10.3390/s23125694 |
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| Title | Enhancing Industrial Communication with Ethernet/Internet Protocol: A Study and Analysis of Real-Time Cooperative Robot Communication and Automation via Transmission Control Protocol/Internet Protocol |
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