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Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities

Flashover on transmission line insulators is one of the major causes of line outages due to contamination from the environment or ageing. Power utility companies practicing predictive maintenance are currently exploring novel non-contact methods to monitor insulator surface discharge activities to p...

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Autores principales: Suhaimi, Saiful Mohammad Iezham, Muhamad, Nor Asiah, Bashir, Nouruddeen, Mohd Jamil, Mohamad Kamarol, Abdul Rahman, Mohd Nazri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8838501/
https://www.ncbi.nlm.nih.gov/pubmed/35161466
http://dx.doi.org/10.3390/s22030722
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author Suhaimi, Saiful Mohammad Iezham
Muhamad, Nor Asiah
Bashir, Nouruddeen
Mohd Jamil, Mohamad Kamarol
Abdul Rahman, Mohd Nazri
author_facet Suhaimi, Saiful Mohammad Iezham
Muhamad, Nor Asiah
Bashir, Nouruddeen
Mohd Jamil, Mohamad Kamarol
Abdul Rahman, Mohd Nazri
author_sort Suhaimi, Saiful Mohammad Iezham
collection PubMed
description Flashover on transmission line insulators is one of the major causes of line outages due to contamination from the environment or ageing. Power utility companies practicing predictive maintenance are currently exploring novel non-contact methods to monitor insulator surface discharge activities to prevent flashover. This paper presents an investigation on the UV pulse signals detected using UV pulse sensor due to the discharges on the insulator surfaces under varying contamination levels and insulator ages. Unaged and naturally aged insulators (0 to >20 years) were artificially contaminated (none, light to heavy contamination). The electrical stresses on the insulator surfaces were varied to generate varying discharge intensity levels on the surfaces of the insulator. The DC and harmonic components of UV pulse signals detected during surface discharges were recorded and analysed. Results show a positive correlation between the discharge intensity level of contaminated and aged transmission insulators with the DC and harmonic components of the UV pulse signals. Furthermore, the study revealed that under dry insulator surface conditions, insulator ageing has a more profound effect during discharges than contamination level. The findings from this study suggest that the use of UV pulse sensors to monitor UV pulse signals emitted during insulator surface discharges can be another novel non-contact method of monitoring transmission line insulator surface conditions.
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spelling pubmed-88385012022-02-13 Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities Suhaimi, Saiful Mohammad Iezham Muhamad, Nor Asiah Bashir, Nouruddeen Mohd Jamil, Mohamad Kamarol Abdul Rahman, Mohd Nazri Sensors (Basel) Article Flashover on transmission line insulators is one of the major causes of line outages due to contamination from the environment or ageing. Power utility companies practicing predictive maintenance are currently exploring novel non-contact methods to monitor insulator surface discharge activities to prevent flashover. This paper presents an investigation on the UV pulse signals detected using UV pulse sensor due to the discharges on the insulator surfaces under varying contamination levels and insulator ages. Unaged and naturally aged insulators (0 to >20 years) were artificially contaminated (none, light to heavy contamination). The electrical stresses on the insulator surfaces were varied to generate varying discharge intensity levels on the surfaces of the insulator. The DC and harmonic components of UV pulse signals detected during surface discharges were recorded and analysed. Results show a positive correlation between the discharge intensity level of contaminated and aged transmission insulators with the DC and harmonic components of the UV pulse signals. Furthermore, the study revealed that under dry insulator surface conditions, insulator ageing has a more profound effect during discharges than contamination level. The findings from this study suggest that the use of UV pulse sensors to monitor UV pulse signals emitted during insulator surface discharges can be another novel non-contact method of monitoring transmission line insulator surface conditions. MDPI 2022-01-18 /pmc/articles/PMC8838501/ /pubmed/35161466 http://dx.doi.org/10.3390/s22030722 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Suhaimi, Saiful Mohammad Iezham
Muhamad, Nor Asiah
Bashir, Nouruddeen
Mohd Jamil, Mohamad Kamarol
Abdul Rahman, Mohd Nazri
Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title_full Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title_fullStr Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title_full_unstemmed Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title_short Harmonic Components Analysis of Emitted Ultraviolet Signals of Aged Transmission Line Insulators under Different Surface Discharge Intensities
title_sort harmonic components analysis of emitted ultraviolet signals of aged transmission line insulators under different surface discharge intensities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8838501/
https://www.ncbi.nlm.nih.gov/pubmed/35161466
http://dx.doi.org/10.3390/s22030722
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