An Intelligent Location Method for Power System Oscillation Sources Based on a Digital Twin
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Published:2023-08-25
Issue:17
Volume:12
Page:3603
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ISSN:2079-9292
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Container-title:Electronics
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language:en
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Short-container-title:Electronics
Author:
Yang Luojia1, Wang Yuhong1ORCID, Gao Shilin1, Zheng Zongsheng1, Jiang Qiliang1, Zhou Chenyu1
Affiliation:
1. College of Electrical Engineering, Sichuan University, Chengdu 610065, China
Abstract
Aiming at the difficult problem of broadband oscillation localization in power systems, the intelligent localization method of an oscillation source based on a digital twin is proposed, and the oscillation source localization system is thus constructed. Firstly, a digital twin-based oscillation source localization method and its system architecture are proposed. Furthermore, an intelligent positioning method of the oscillation source, based on data-driven and mechanism fusion, is proposed. It includes three steps: oscillation signal preprocessing, oscillation modal analysis and oscillation source localization. For the oscillation signal preprocessing, the generative adversarial imputation network is used to repair the missing samples, and the super-resolution technique is used to realize the super-resolution measurement of broadband oscillation. In the oscillation modal analysis, the spectrum of the oscillation signal is extracted using the fast Fourier transform. To accurately locate the oscillation source, branch potential energy is used as the input to the data-driven model, such as LSTM and CNN. Finally, an oscillation source localization system is developed based on the digital twin workshop CloudPSS-XStudio, which can locate the oscillation source quickly and accurately.
Funder
the National Natural Science Foundation of China the Fundamental Research Funds for the Central University
Subject
Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering
Reference28 articles.
1. Lin, S., Liu, F., and Dreglea, A. (2020, January 27–29). Mode Identification of Broad-band Oscillation Signal Based on Improved VMD Method. Proceedings of the 2020 39th Chinese Control Conference (CCC), Shenyang, China. 2. Ma, N., Xie, X., Sun, Y., Zhang, Y., Li, Y., and Liu, P. (2022, January 7–8). Wide-area Monitoring and Analysis of Wide-band Oscillation in New-type Power Systems. Proceedings of the 2022 China International Conference on Electricity Distribution (CICED), Changsha, China. 3. Zhai, W., Jia, Q., and Yan, G. (2022). Analysis of sub synchronous oscillation characteristics from a direct drive wind farm based on the complex torque coefficient method. CSEE J. Power Energy Systems, early access. 4. Shen, J., Liu, C., Su, C., Li, H., and Wei, W. (2021, January 28). Deepening Research on State Space Analytical Model of HVDC Transmission System. Proceedings of the 2021 IEEE 4th International Electrical and Energy Conference (CIEEC), Wuhan, China. 5. Shi, J., Yang, L., and Zhu, M. (202, January 28). Impedance Modeling and Interaction Stability Analysis of Grid-Connected Voltage Source Converter Considering Multiple Frequency Coupling Factors. Proceedings of the 2021 IEEE 4th International Electrical and Energy Conference (CIEEC), Wuhan, China.
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