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Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin

In high-voltage (HV) insulation, electrical trees are an important degradation phenomenon strongly linked to partial discharge (PD) activity. Their initiation and development have attracted the attention of the research community and better understanding and characterization of the phenomenon are ne...

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Autores principales: Mas’ud, Abdullahi Abubakar, Sundaram, Arunachalam, Ardila-Rey, Jorge Alfredo, Schurch, Roger, Muhammad-Sukki, Firdaus, Bani, Nurul Aini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038711/
https://www.ncbi.nlm.nih.gov/pubmed/33917472
http://dx.doi.org/10.3390/s21072562
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author Mas’ud, Abdullahi Abubakar
Sundaram, Arunachalam
Ardila-Rey, Jorge Alfredo
Schurch, Roger
Muhammad-Sukki, Firdaus
Bani, Nurul Aini
author_facet Mas’ud, Abdullahi Abubakar
Sundaram, Arunachalam
Ardila-Rey, Jorge Alfredo
Schurch, Roger
Muhammad-Sukki, Firdaus
Bani, Nurul Aini
author_sort Mas’ud, Abdullahi Abubakar
collection PubMed
description In high-voltage (HV) insulation, electrical trees are an important degradation phenomenon strongly linked to partial discharge (PD) activity. Their initiation and development have attracted the attention of the research community and better understanding and characterization of the phenomenon are needed. They are very damaging and develop through the insulation material forming a discharge conduction path. Therefore, it is important to adequately measure and characterize tree growth before it can lead to complete failure of the system. In this paper, the Gaussian mixture model (GMM) has been applied to cluster and classify the different growth stages of electrical trees in epoxy resin insulation. First, tree growth experiments were conducted, and PD data captured from the initial to breakdown stage of the tree growth in epoxy resin insulation. Second, the GMM was applied to categorize the different electrical tree stages into clusters. The results show that PD dynamics vary with different stress voltages and tree growth stages. The electrical tree patterns with shorter breakdown times had identical clusters throughout the degradation stages. The breakdown time can be a key factor in determining the degradation levels of PD patterns emanating from trees in epoxy resin. This is important in order to determine the severity of electrical treeing degradation, and, therefore, to perform efficient asset management. The novelty of the work presented in this paper is that for the first time the GMM has been applied for electrical tree growth classification and the optimal values for the hyperparameters, i.e., the number of clusters and the appropriate covariance structure, have been determined for the different electrical tree clusters.
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spelling pubmed-80387112021-04-12 Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin Mas’ud, Abdullahi Abubakar Sundaram, Arunachalam Ardila-Rey, Jorge Alfredo Schurch, Roger Muhammad-Sukki, Firdaus Bani, Nurul Aini Sensors (Basel) Article In high-voltage (HV) insulation, electrical trees are an important degradation phenomenon strongly linked to partial discharge (PD) activity. Their initiation and development have attracted the attention of the research community and better understanding and characterization of the phenomenon are needed. They are very damaging and develop through the insulation material forming a discharge conduction path. Therefore, it is important to adequately measure and characterize tree growth before it can lead to complete failure of the system. In this paper, the Gaussian mixture model (GMM) has been applied to cluster and classify the different growth stages of electrical trees in epoxy resin insulation. First, tree growth experiments were conducted, and PD data captured from the initial to breakdown stage of the tree growth in epoxy resin insulation. Second, the GMM was applied to categorize the different electrical tree stages into clusters. The results show that PD dynamics vary with different stress voltages and tree growth stages. The electrical tree patterns with shorter breakdown times had identical clusters throughout the degradation stages. The breakdown time can be a key factor in determining the degradation levels of PD patterns emanating from trees in epoxy resin. This is important in order to determine the severity of electrical treeing degradation, and, therefore, to perform efficient asset management. The novelty of the work presented in this paper is that for the first time the GMM has been applied for electrical tree growth classification and the optimal values for the hyperparameters, i.e., the number of clusters and the appropriate covariance structure, have been determined for the different electrical tree clusters. MDPI 2021-04-06 /pmc/articles/PMC8038711/ /pubmed/33917472 http://dx.doi.org/10.3390/s21072562 Text en © 2021 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
Mas’ud, Abdullahi Abubakar
Sundaram, Arunachalam
Ardila-Rey, Jorge Alfredo
Schurch, Roger
Muhammad-Sukki, Firdaus
Bani, Nurul Aini
Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title_full Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title_fullStr Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title_full_unstemmed Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title_short Application of the Gaussian Mixture Model to Classify Stages of Electrical Tree Growth in Epoxy Resin
title_sort application of the gaussian mixture model to classify stages of electrical tree growth in epoxy resin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038711/
https://www.ncbi.nlm.nih.gov/pubmed/33917472
http://dx.doi.org/10.3390/s21072562
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