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Article

Partial Discharge Signal Denoising for Gas-Insulated Switchgear Using Spearman Coefficient-Optimized VMD and Combined Filtering Algorithm

1
School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
2
Chengdu DirectechX Technology Co., Ltd., Chengdu 610041, China
3
Chengdu Qingrong Shentong Technology Co., Ltd., Chengdu 610041, China
*
Author to whom correspondence should be addressed.
Energies 2026, 19(12), 2805; https://doi.org/10.3390/en19122805
Submission received: 24 April 2026 / Revised: 1 June 2026 / Accepted: 2 June 2026 / Published: 11 June 2026

Abstract

Partial discharge (PD) signals acquired from gas-insulated switchgear (GIS) are often severely contaminated by discrete-spectrum interference and periodic narrowband noise, which impairs the accuracy of subsequent fault diagnosis. This paper proposes a hybrid denoising method that integrates Spearman coefficient-optimized variational mode decomposition (S_VMD), spatially related recursive sample entropy (Sdr_SampEn) for intrinsic mode function (IMF) classification, an improved wavelet threshold function, and Savitzky–Golay (SG) filtering. First, the Spearman correlation coefficient between the original signal and the reconstructed signal is used to adaptively determine the optimal mode number K of VMD, avoiding the over- and under-decomposition problems of conventional VMD. Second, Sdr_SampEn, which characterizes signal irregularity along both the Chebyshev distance and spatial direction of a recurrence plot, is employed to classify the obtained IMFs into noise-dominant and PD-dominant components, with the discrimination threshold calibrated as p = 1.94 at 0 dB. Third, an improved wavelet threshold function—continuous at the threshold and asymptotically unbiased—is applied to the noise-dominant components, while SG filtering is applied to the PD-dominant components, after which the denoised signal is reconstructed. The results demonstrate that the proposed method effectively suppresses both white and narrowband noise while preserving the detailed morphology of PD pulses.
Keywords: gas-insulated switchgear; partial discharge; signal denoising; improved wavelet threshold gas-insulated switchgear; partial discharge; signal denoising; improved wavelet threshold

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MDPI and ACS Style

Xia, C.; Xie, W.; Deng, C.; Hao, C. Partial Discharge Signal Denoising for Gas-Insulated Switchgear Using Spearman Coefficient-Optimized VMD and Combined Filtering Algorithm. Energies 2026, 19, 2805. https://doi.org/10.3390/en19122805

AMA Style

Xia C, Xie W, Deng C, Hao C. Partial Discharge Signal Denoising for Gas-Insulated Switchgear Using Spearman Coefficient-Optimized VMD and Combined Filtering Algorithm. Energies. 2026; 19(12):2805. https://doi.org/10.3390/en19122805

Chicago/Turabian Style

Xia, Changxiong, Wei Xie, Changfei Deng, and Changjin Hao. 2026. "Partial Discharge Signal Denoising for Gas-Insulated Switchgear Using Spearman Coefficient-Optimized VMD and Combined Filtering Algorithm" Energies 19, no. 12: 2805. https://doi.org/10.3390/en19122805

APA Style

Xia, C., Xie, W., Deng, C., & Hao, C. (2026). Partial Discharge Signal Denoising for Gas-Insulated Switchgear Using Spearman Coefficient-Optimized VMD and Combined Filtering Algorithm. Energies, 19(12), 2805. https://doi.org/10.3390/en19122805

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