New Approach to SCADA System Screen Configuration Based on the Model of Oil and Gas Pipeline Network

被引:0
|
作者
Huang H. [1 ,2 ]
Li Y. [1 ]
Ma L. [3 ]
Mao B. [1 ]
Zhang L. [1 ]
Yang J. [1 ]
Wang H. [3 ]
Sun Y. [1 ]
Zhao X. [1 ]
Lv M. [1 ]
机构
[1] PipeChina Oil and Gas Control Center, Beijing
[2] School of Software, Tsinghua University, Beijing
[3] Kunlun Digital Technology Co., Ltd., Beijing
关键词
oil and gas pipeline network; pipeline network modelling; SCADA system; screen configuration;
D O I
10.4108/ew.5247
中图分类号
学科分类号
摘要
INTRODUCTION: With the continuous progress of science and technology, the monitoring and control of oil and gas pipeline networks have become more and more critical; SCADA systems, as a kind of technology widely used in industrial control, play a key role. The screen configuration of the SCADA system is the core part of its user interface, which is directly related to the operator's mastery of the status of the pipeline network. In order to improve the monitoring efficiency and reduce the operation risk, this study is devoted to exploring a new method of SCADA system screen configuration based on the oil and gas pipeline network model. PURPOSE: The purpose of this study is to develop an innovative SCADA system screen configuration method to present the operating status of the oil and gas pipeline network more intuitively and efficiently. The design based on the pipeline network model aims to enhance the operators' understanding of essential information, such as pipeline network topology, fluid flow, etc., so as to make monitoring and control more intelligent. METHODS: The study adopts a new method of SCADA system screen configuration based on the oil and gas pipeline network model. First, the topology, sensor data, and control nodes of the oil and gas pipeline network are comprehensively modelled. Then, through the design principle of human-computer interaction, the modelling results are integrated into the screen configuration of the SCADA system to realize the intuitive presentation of information. At the same time, advanced visualization technology is introduced so that the operators can understand the real-time changes in the pipe network status more clearly. RESULTS: After experimental verification, the new method shows significant advantages in oil and gas pipeline network monitoring. The operators can recognize the abnormalities of the pipeline network more quickly and accurately through the SCADA system screen configuration, which improves the efficiency of troubleshooting and treatment. The visualized interface design makes the operation more intuitive and reduces the possibility of operating errors, thus improving the safety and reliability of the pipeline network. CONCLUSION: The new method of SCADA system screen configuration based on the oil and gas pipeline network model has achieved significant results in improving monitoring efficiency and reducing operational risks. Through a more intuitive and intelligent interface design, operators can have a more comprehensive understanding of the operating status of the pipeline network, which provides practical support for rapid response and decision-making. This approach introduces new ideas to the field of oil and gas pipeline network monitoring, which is of positive significance for improving the overall performance of the system. Future work can be carried out to optimize the interface design further and expand the applicable scenarios. doi: 10.4108/ew.5247
引用
收藏
页码:1 / 12
页数:11
相关论文
共 50 条
  • [1] Log specification and intelligent analysis method based on oil and gas pipeline SCADA system
    Sun L.
    Li Y.
    Zhang J.
    Yang J.
    Mao B.
    Deng Z.
    Wang W.
    Applied Mathematics and Nonlinear Sciences, 2024, 9 (01)
  • [2] New pipeline leak monitoring system based on SCADA
    Peng, Ke
    Wang, Li-Kun
    Li, Jian
    Jin, Shi-Jiu
    Wang, Gang-Wei
    Zheng, Yue-Hao
    Huagong Zidonghua Ji Yibiao/Control and Instruments in Chemical Industry, 2004, 31 (01):
  • [3] Research on Accident Inversion and Analysis Method of the Oil and Gas Pipeline SCADA System
    Huang, He
    Zhang, Wei
    Qi, Guocheng
    Ma, Shuai
    Yang, Yi
    Yan, Feng
    Chen, Peng
    2014 SIXTH INTERNATIONAL CONFERENCE ON MEASURING TECHNOLOGY AND MECHATRONICS AUTOMATION (ICMTMA), 2014, : 492 - 496
  • [4] Judging the design of SCADA system of oil and gas pipeline from the SCADA system for Shaan-Jing gas transmission line project
    Yao, Wei
    Qi, Guocheng
    Wei, Wei
    Tianranqi Gongye/Natural Gas Industry, 2000, 20 (03): : 86 - 89
  • [5] A Security Architecture Model of Oil and Gas SCADA Network Based on Multi-Agent
    Zhang, Jian
    Yang, Li
    Liao, Haode
    INTERNATIONAL JOURNAL OF SECURITY AND ITS APPLICATIONS, 2016, 10 (01): : 449 - 460
  • [6] The Oil and Gas Pipeline Clouding SCADA System and Multiple Data Centers Storage System Design
    Liu, Miao
    Yuan, ManCang
    Wang, FuBin
    Sun, Chao
    MANUFACTURING CONSTRUCTION AND ENERGY ENGINEERING: 2016 INTERNATIONAL CONFERENCE ON MANUFACTURING CONSTRUCTION AND ENERGY ENGINEERING, 2016, : 293 - 297
  • [7] SCADA focus of Pemex Gas pipeline network upgrade
    Urencio, CF
    Paz, JM
    Acevedo, AG
    OIL & GAS JOURNAL, 2002, 100 (06) : 76 - 78
  • [8] Risk analysis of data transmission security in an oil and gas pipeline SCADA system and countermeasures
    Huang, He
    Zhang, Wei
    Qi, Guocheng
    Yan, Feng
    Chen, Peng
    Natural Gas Industry, 2013, 33 (11) : 115 - 120
  • [9] Alyeska Upgrades Pipeline With New SCADA System
    1600, Oildom Publishing Co. of Texas Inc. (231):
  • [10] Research on Simulation Platform for Security and Defense of Oil and Gas Network SCADA System
    Hu Qichao
    Cao Xiedong
    Zhang Weiwei
    Liang Peng
    Qin Yong
    INDUSTRIAL ENGINEERING, MACHINE DESIGN AND AUTOMATION (IEMDA 2014) & COMPUTER SCIENCE AND APPLICATION (CCSA 2014), 2015, : 34 - 40