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2024 | OriginalPaper | Chapter

Research on Identification Method of Subsynchronous Oscillation Parameters Based on FSST and STD

Authors : XiaoBiao Fu, Peng Zhang, XiaoZhe Song, Changjiang Wang, Hao Ding

Published in: The Proceedings of the 18th Annual Conference of China Electrotechnical Society

Publisher: Springer Nature Singapore

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Abstract

With the aim of double carbon in China, the incorporation of a significant quantity of novel energy devices and dynamic compensation devices and dynamic compensation devices into the grid has caused many instances of sub-synchronous oscillation (SSO) incidents, which have a considerable impact on the secure and stable operation of the power system. Rapid identification of SSO parameters can provide characteristic parameters for suppression measures, real-time warning, and analysis of SSO. Therefore, this paper proposes a time-frequency analysis approach based on the Short-Time Fourier Transform (STFT) and incorporates it with the Sparse Time Domain (STD) technique for the identification of sub-synchronous oscillation parameters. The proposed method first applies the SST time-frequency domain transformation to the oscillation data collected by Phasor Measurement Unit (PMU) at key nodes in the power grid, decomposing a set of signals with multiple modes into different modal components. Subsequently, an improved ridge extraction method is employed to reconstruct the time-frequency domain signals of each mode. The STD method is subsequently employed to precisely identify the modal parameters of SSO. Finally, through the analysis and verification of ideal examples and real-world power grid data, the identification results demonstrate the accuracy, robustness, and computational efficiency of the proposed method, thus satisfying practical engineering applications.

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Literature
1.
go back to reference Cheng, Y., Fan, L., Rose, J., et al.: Real-World sub-synchronous oscillation events in power grids with high penetrations of inverter-based resources. IEEE Trans. Power Syst. 38(1), 316–330 (2023)CrossRef Cheng, Y., Fan, L., Rose, J., et al.: Real-World sub-synchronous oscillation events in power grids with high penetrations of inverter-based resources. IEEE Trans. Power Syst. 38(1), 316–330 (2023)CrossRef
2.
go back to reference Ma, N., Xie, X., He, J., et al.: Review of wide-band oscillation in renewable and power electronics highly integrated power systems. Proc. CSEE 40(15), 4720–4732 (2022) Ma, N., Xie, X., He, J., et al.: Review of wide-band oscillation in renewable and power electronics highly integrated power systems. Proc. CSEE 40(15), 4720–4732 (2022)
3.
go back to reference Li, Y., Fan, L., Miao, Z.: Wind in weak grids: low-frequency oscillations, subsynchronous oscillations, and torsional interactions. IEEE Trans. Power Syst. 35(1), 109–118 (2022)CrossRef Li, Y., Fan, L., Miao, Z.: Wind in weak grids: low-frequency oscillations, subsynchronous oscillations, and torsional interactions. IEEE Trans. Power Syst. 35(1), 109–118 (2022)CrossRef
4.
go back to reference Fan, L., Miao, Z., Shah, S., et al.: Real-world 20-Hz IBR subsynchronous oscillations: signatures and mechanism analysis. IEEE Trans. Energy Convers. 37(4), 2863–2873 (2022)CrossRef Fan, L., Miao, Z., Shah, S., et al.: Real-world 20-Hz IBR subsynchronous oscillations: signatures and mechanism analysis. IEEE Trans. Energy Convers. 37(4), 2863–2873 (2022)CrossRef
5.
go back to reference Shair, J., Xie, X., Yang, J., et al.: Adaptive damping control of subsynchronous oscillation in DFIG-based wind farms connected to series-compensated network. IEEE Trans. Power Delivery 37(2), 1036–1049 (2022)CrossRef Shair, J., Xie, X., Yang, J., et al.: Adaptive damping control of subsynchronous oscillation in DFIG-based wind farms connected to series-compensated network. IEEE Trans. Power Delivery 37(2), 1036–1049 (2022)CrossRef
6.
go back to reference Xu, Y., Cheng, Y., Liu, H., et al.: Subsynchronous oscillation frequency extraction and oscillation source identification method based on instantaneous power. Trans. Chin. Electrotechnical Soc. 38(11), 2894–2907 (2023). (in Chinese) Xu, Y., Cheng, Y., Liu, H., et al.: Subsynchronous oscillation frequency extraction and oscillation source identification method based on instantaneous power. Trans. Chin. Electrotechnical Soc. 38(11), 2894–2907 (2023). (in Chinese)
7.
go back to reference Wu, X., Chen, X., Lu, W., et al.: Review of detection and online localization technology of sub-synchronous oscillation in power system. Electr. Power Autom. Equip. 40(9), 129–141 (2020). (in Chinese) Wu, X., Chen, X., Lu, W., et al.: Review of detection and online localization technology of sub-synchronous oscillation in power system. Electr. Power Autom. Equip. 40(9), 129–141 (2020). (in Chinese)
8.
go back to reference Estevez, P.G., Marchi, P., Galarza, C., et al.: Non-stationary power system forced oscillation analysis using synchrosqueezing transform. IEEE Trans. Power Syst. 36(2), 1583–1593 (2021)CrossRef Estevez, P.G., Marchi, P., Galarza, C., et al.: Non-stationary power system forced oscillation analysis using synchrosqueezing transform. IEEE Trans. Power Syst. 36(2), 1583–1593 (2021)CrossRef
9.
go back to reference Ma, J., Liu, F., Wu, M., et al.: Wind farm sub-synchronous oscillation mode identification based on wavelet decomposition of ambient noise signals. Power Syst. Technol. 43(4), 1294–1300 (2019). (in Chinese) Ma, J., Liu, F., Wu, M., et al.: Wind farm sub-synchronous oscillation mode identification based on wavelet decomposition of ambient noise signals. Power Syst. Technol. 43(4), 1294–1300 (2019). (in Chinese)
10.
go back to reference Yu, G., Wang, Z., Zhao, P.: Multisynchrosqueezing transform. IEEE Trans. Industr. Electron. 66(7), 5441–5455 (2019)CrossRef Yu, G., Wang, Z., Zhao, P.: Multisynchrosqueezing transform. IEEE Trans. Industr. Electron. 66(7), 5441–5455 (2019)CrossRef
11.
go back to reference Meignen, S., Pham, D.-H., McLaughlin, S.: On demodulation, ridge detection, and synchrosqueezing for multicomponent signals. IEEE Trans. Sig. Process. 65(8), 2093–2103 (2017)MathSciNetCrossRef Meignen, S., Pham, D.-H., McLaughlin, S.: On demodulation, ridge detection, and synchrosqueezing for multicomponent signals. IEEE Trans. Sig. Process. 65(8), 2093–2103 (2017)MathSciNetCrossRef
Metadata
Title
Research on Identification Method of Subsynchronous Oscillation Parameters Based on FSST and STD
Authors
XiaoBiao Fu
Peng Zhang
XiaoZhe Song
Changjiang Wang
Hao Ding
Copyright Year
2024
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-1064-5_43