Resistive leakage current based condition assessment of zinc oxide surge arrester: A review
Leakage current based condition assessment is most extensively opted method to monitor the ageing and deterioration of zinc oxide surge arresters. Particularly, the resistive component of leakage current is considered to be directly related with the arrester's degradation. Therefore, the measur...
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my.utm.980512022-11-23T07:33:18Z http://eprints.utm.my/id/eprint/98051/ Resistive leakage current based condition assessment of zinc oxide surge arrester: A review Munir, Abdullah Abdul Malek, Zulkurnain Arshad, Rai Naveed TK Electrical engineering. Electronics Nuclear engineering Leakage current based condition assessment is most extensively opted method to monitor the ageing and deterioration of zinc oxide surge arresters. Particularly, the resistive component of leakage current is considered to be directly related with the arrester's degradation. Therefore, the measurement of resistive leakage current is essential for the condition diagnostic of the surge arrester. Several techniques have been proposed to extract the resistive component of total leakage current. But, the deficiency of a comprehensive review on the existing techniques still exists. This paper is aimed to review the resistive leakage current extraction techniques with respect to their operating principles, experimental procedures, limitations, and accuracy of the results. This study will contribute to improve the accuracy of resistive leakage current based condition monitoring of surge arresters. 2021 Conference or Workshop Item PeerReviewed Munir, Abdullah and Abdul Malek, Zulkurnain and Arshad, Rai Naveed (2021) Resistive leakage current based condition assessment of zinc oxide surge arrester: A review. In: 13th IEEE International Conference on the Properties and Applications of Dielectric Materials, ICPADM 2021, 12 - 14 July 2021, Virtual, Online. http://dx.doi.org/10.1109/ICPADM49635.2021.9493979 |
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TK Electrical engineering. Electronics Nuclear engineering Munir, Abdullah Abdul Malek, Zulkurnain Arshad, Rai Naveed Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
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Leakage current based condition assessment is most extensively opted method to monitor the ageing and deterioration of zinc oxide surge arresters. Particularly, the resistive component of leakage current is considered to be directly related with the arrester's degradation. Therefore, the measurement of resistive leakage current is essential for the condition diagnostic of the surge arrester. Several techniques have been proposed to extract the resistive component of total leakage current. But, the deficiency of a comprehensive review on the existing techniques still exists. This paper is aimed to review the resistive leakage current extraction techniques with respect to their operating principles, experimental procedures, limitations, and accuracy of the results. This study will contribute to improve the accuracy of resistive leakage current based condition monitoring of surge arresters. |
format |
Conference or Workshop Item |
author |
Munir, Abdullah Abdul Malek, Zulkurnain Arshad, Rai Naveed |
author_facet |
Munir, Abdullah Abdul Malek, Zulkurnain Arshad, Rai Naveed |
author_sort |
Munir, Abdullah |
title |
Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
title_short |
Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
title_full |
Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
title_fullStr |
Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
title_full_unstemmed |
Resistive leakage current based condition assessment of zinc oxide surge arrester: A review |
title_sort |
resistive leakage current based condition assessment of zinc oxide surge arrester: a review |
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2021 |
url |
http://eprints.utm.my/id/eprint/98051/ http://dx.doi.org/10.1109/ICPADM49635.2021.9493979 |
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1751536140648710144 |
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13.209306 |