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Research Article

OPC UA Application Study in Oil and Gas Pipeline Network Monitoring Data Forwarding

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  • @ARTICLE{10.4108/ew.5245,
        author={Bingqiang Mao and Guocheng Qi and Liang Mi and Feng Yan and Yulong Xian and Peng Chen and Chen Li and Xiaochuan Zhao and Yanguo Sun and Wenyu Pei},
        title={OPC UA Application Study in Oil and Gas Pipeline Network Monitoring Data Forwarding},
        journal={EAI Endorsed Transactions on Energy Web},
        volume={11},
        number={1},
        publisher={EAI},
        journal_a={EW},
        year={2024},
        month={3},
        keywords={OPC UA, oil and gas pipeline network, monitoring data, data forwarding},
        doi={10.4108/ew.5245}
    }
    
  • Bingqiang Mao
    Guocheng Qi
    Liang Mi
    Feng Yan
    Yulong Xian
    Peng Chen
    Chen Li
    Xiaochuan Zhao
    Yanguo Sun
    Wenyu Pei
    Year: 2024
    OPC UA Application Study in Oil and Gas Pipeline Network Monitoring Data Forwarding
    EW
    EAI
    DOI: 10.4108/ew.5245
Bingqiang Mao1,*, Guocheng Qi1, Liang Mi2, Feng Yan1, Yulong Xian1, Peng Chen1, Chen Li2, Xiaochuan Zhao1, Yanguo Sun1, Wenyu Pei1
  • 1: PipeChina Oil and Gas Control Center
  • 2: Kunlun Digital Technology Co Ltd
*Contact email: 823488367@qq.com

Abstract

INTRODUCTION: With the continuous development of oil and gas pipeline network monitoring and control technology, the need for data transmission and communication is becoming more and more prominent. In this context, OPC UA has attracted wide attention. This study aims to explore the application of OPC UA in data forwarding for oil and gas pipeline network monitoring in order to improve the efficiency, reliability and security of data transmission. PURPOSE: The purpose of this study is to evaluate the applicability of OPC UA in oil and gas pipeline network monitoring and to verify its performance in data forwarding through empirical studies. By gaining an in-depth understanding of the characteristics of OPC UA, it aims to provide a more advanced and efficient monitoring data transfer solution for the oil and gas industry. METHOD: The study adopts a combination of field monitoring and laboratory simulation. First, the essential characteristics and requirements of monitoring data in oil and gas pipeline networks were collected. Subsequently, a monitoring system with OPC UA as the communication protocol was established and field tested. In the laboratory environment, data transmission scenarios under different working conditions were simulated, and the performance of OPC UA under different conditions was analyzed. RESULT: The field monitoring results show that the data transmission efficiency is significantly improved by using OPC UA as the communication protocol for data forwarding in oil and gas pipeline network monitoring. Meanwhile, the system performs well in different environments with high reliability and security. The laboratory simulation results further verify the stability and adaptability of OPC UA under complex working conditions. CONCLUSION: OPC UA is an effective communication protocol that can meet the data transmission requirements for oil and gas pipeline network monitoring. Its efficient, reliable, and secure characteristics make it an ideal choice for improving the communication performance of monitoring systems in the oil and gas industry. The empirical results of this study provide reliable technical support for the oil and gas industry in the field of data transmission and a vital reference for the optimization and upgrading of monitoring systems in the future.  

Keywords
OPC UA, oil and gas pipeline network, monitoring data, data forwarding
Received
2024-02-29
Accepted
2024-03-15
Published
2024-03-19
Publisher
EAI
http://dx.doi.org/10.4108/ew.5245

Copyright © 2024 B. Mao et al., licensed to EAI. This is an open access article distributed under the terms of the CC BY-NC-SA 4.0, which permits copying, redistributing, remixing, transformation, and building upon the material in any medium so long as the original work is properly cited.

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