Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions
As XLPE cables age, partial discharge (PD) testing on the cables has gained a lot of attention in the power utilities. This is because PD has been found to be a good indicator of the insulation health. In this research work, an experiment has been carried out in order to acquire electrical PD signal...
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my.uniten.dspace-309702023-12-29T15:56:58Z Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions Md Thayoob Y.H. Ghosh P.S. Ghani A.B.A. 6505876050 55427760300 24469638000 Partial discharge Soil thermal resistivity XLPE Cable Cables Fast Fourier transforms Frequency domain analysis Partial discharges Soils Spectrum analysis Spectrum analyzers Thermal conductivity Time domain analysis Core temperatures Fixed temperatures Frequency domains Frequency spectrums Operating conditions Partial discharge signals PD measurements Power utilities Signal patterns Soil conditions Spectral analysis Spectral contents Time domains Two parameters XLPE Cable Electric network analysis As XLPE cables age, partial discharge (PD) testing on the cables has gained a lot of attention in the power utilities. This is because PD has been found to be a good indicator of the insulation health. In this research work, an experiment has been carried out in order to acquire electrical PD signals from an 11KV, single-core 240mm2 XLPE cable. The operating conditions are varied using two parameters which are the soil thermal resistivity and cable loading in terms of core temperature. The analysis of PD signals has been commonly carried out in the time domain. However, in this paper, the analysis of PD signal patterns in an XLPE cable due to various soil conditions is performed in the frequency domain. As such, the timedomain electrical PD signals from the PD measurement system are first transformed into frequency spectrum using fast Fourier transform (FFT). Then, the variations in the spectral content due to the changes in the soil condition at a fixed temperature of the cable are analyzed. From the results obtained, it is clearly evident that the changes in the soil thermal resistivity have significant effect on the spectral content of the PD signals. � 2008 IEEE. Final 2023-12-29T07:56:58Z 2023-12-29T07:56:58Z 2008 Conference paper 10.1109/PECON.2008.4762713 2-s2.0-63049135081 https://www.scopus.com/inward/record.uri?eid=2-s2.0-63049135081&doi=10.1109%2fPECON.2008.4762713&partnerID=40&md5=a3dd185caf990e579f4c3147f62858c5 https://irepository.uniten.edu.my/handle/123456789/30970 4762713 1528 1531 Scopus |
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Partial discharge Soil thermal resistivity XLPE Cable Cables Fast Fourier transforms Frequency domain analysis Partial discharges Soils Spectrum analysis Spectrum analyzers Thermal conductivity Time domain analysis Core temperatures Fixed temperatures Frequency domains Frequency spectrums Operating conditions Partial discharge signals PD measurements Power utilities Signal patterns Soil conditions Spectral analysis Spectral contents Time domains Two parameters XLPE Cable Electric network analysis |
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Partial discharge Soil thermal resistivity XLPE Cable Cables Fast Fourier transforms Frequency domain analysis Partial discharges Soils Spectrum analysis Spectrum analyzers Thermal conductivity Time domain analysis Core temperatures Fixed temperatures Frequency domains Frequency spectrums Operating conditions Partial discharge signals PD measurements Power utilities Signal patterns Soil conditions Spectral analysis Spectral contents Time domains Two parameters XLPE Cable Electric network analysis Md Thayoob Y.H. Ghosh P.S. Ghani A.B.A. Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
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As XLPE cables age, partial discharge (PD) testing on the cables has gained a lot of attention in the power utilities. This is because PD has been found to be a good indicator of the insulation health. In this research work, an experiment has been carried out in order to acquire electrical PD signals from an 11KV, single-core 240mm2 XLPE cable. The operating conditions are varied using two parameters which are the soil thermal resistivity and cable loading in terms of core temperature. The analysis of PD signals has been commonly carried out in the time domain. However, in this paper, the analysis of PD signal patterns in an XLPE cable due to various soil conditions is performed in the frequency domain. As such, the timedomain electrical PD signals from the PD measurement system are first transformed into frequency spectrum using fast Fourier transform (FFT). Then, the variations in the spectral content due to the changes in the soil condition at a fixed temperature of the cable are analyzed. From the results obtained, it is clearly evident that the changes in the soil thermal resistivity have significant effect on the spectral content of the PD signals. � 2008 IEEE. |
author2 |
6505876050 |
author_facet |
6505876050 Md Thayoob Y.H. Ghosh P.S. Ghani A.B.A. |
format |
Conference paper |
author |
Md Thayoob Y.H. Ghosh P.S. Ghani A.B.A. |
author_sort |
Md Thayoob Y.H. |
title |
Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
title_short |
Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
title_full |
Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
title_fullStr |
Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
title_full_unstemmed |
Frequency spectral analysis of electrical partial discharge signals in XLPE cable under various soil conditions |
title_sort |
frequency spectral analysis of electrical partial discharge signals in xlpe cable under various soil conditions |
publishDate |
2023 |
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1806423466398711808 |
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13.214268 |