RESEARCH ON KEY TECHNOLOGY OF CONDITION MONITORING SYSTEM OF SUBSTATION EQUIPMENT

Guowei Zhao, Junwei Tan, and Naijun Sun

References

  1. [1] Q. Xie, S. Ji, and X. Zhang, Application of digital technologyin state assessment of power transmission and transformationequipment, Transactions of China Electrotechnical Society,38(1), 2019, 13–14.
  2. [2] Q. Xie, X. Zhang, and C. Wang, Application status andprospect of new generation artificial intelligence technology inpower transmission and transformation equipment conditionevaluation, High Voltage Electrical Apparatus, 58(11), 2022,1–16.
  3. [3] B. Qi, M. Ji, Y.P. Zheng, K.H. Zhu, S.Y. Pan, L.J. Zhao,and C.R. Li, Application status and development prospect ofPower Internet of Things technology in condition evaluationof power transmission and transformation equipment, HighVoltage Technology, 48(8), 2022, 3012–3031.
  4. [4] K. Jiang, Q. Xia, L. Ma, X. Xu, and Z. Shao, Insulatorfault feature extraction system of substation equipment basedon machine vision, IET Networks, 2022 (Early view). DOI:https://doi.org/10.1049/ntw2.12058
  5. [5] J. He, X. Huang, and Y. Yang, Research on smart substationequipment condition monitoring system based on wirelesssensor networks, in Proceeding International Conf. on WirelessCommunications and Applications, Berlin, 2011, 75–89. DOI:https://doi.org/10.1007/978-3-642-29157-9 8.7
  6. [6] M.N. Azari and M. Samami, A flux-based transformer modelwith inter-turn fault considering saturation effect, InternationalJournal of Power and Energy Systems, 40(1), 2020, 1–8, DOI:https://doi.org/10.2316/J.2020.203-0108.
  7. [7] B. Qi, P. Zhang, and S.Q. Zhang, Application Statusand development prospect of digital twin technology incondition evaluation of power transmission and transfor-mation equipment, High Voltage Technology, 47(5), 2021,1522–1538.
  8. [8] J. Shang and L. Xu, High voltage power transmission andtransformation equipment condition monitoring based on DSPtechnology research, Journal of Electronic Design Engineering,30(8), 2022, 143–146 + 151.
  9. [9] R.M. Prasad and M.A. Mulla, Direct torque control of rotor-tied DFIG without rotor position sensor, International Journalof Power and Energy Systems, 40(1), 2020, 29–35, DOI:https://doi.org/10.2316/J.2020.203-0149.
  10. [10] B. Hu, B. Mao, J. Yu, and Y. Lu, Unified stiffness model oflower mobility parallel manipulators with linear active legs,International Journal of Robotics and Automation, 29(1), 2014,206–3807, https://doi.org/10.2316/Journal.206.2014.1.
  11. [11] H. Chen, O. Lou, and Q. Gong, Spring MVC developmenttechnology guide, Journal of Computer Education, (7), 2021,194.
  12. [12] L. Dai, H. Dong, and J. Zhang, Application of integratedproduction management system of hydropower station inXiaolangdi, Yellow River, 42(2), 2019, 248–250.

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