Review on partial discharge and time domain reflectometry using finite element analysis
In this paper, the concept of Partial Discharge (PD) and Time Domain Reflectometry (TDR) are discussed as they are among the most commonly used technique by utility company to enhance the fault characterization during routine based maintenance or failure in the system. The aim of this paper to revie...
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World Academy of Research in Science and Engineering
2023
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my.uniten.dspace-256632023-05-29T16:12:24Z Review on partial discharge and time domain reflectometry using finite element analysis Hatta N.H.S.M. Kuan T.M. Ariffin A.M. Raymond W.J.K. 57219421984 49561583600 16400722400 55193255600 In this paper, the concept of Partial Discharge (PD) and Time Domain Reflectometry (TDR) are discussed as they are among the most commonly used technique by utility company to enhance the fault characterization during routine based maintenance or failure in the system. The aim of this paper to review a technique that is able to shorten the period of cable fault diagnosis so that the replacement of cable can take place more efficiently. Correspondingly, this paper will investigate the ability of combining both techniques (PD and TDR) to reduce the cable replacement cost and subsequently prolong the lifespan of the cable. The proposed technique combination of PD, water tree and TDR with finite element analysis has been discussed in this paper. It can be seen, for future development the technique combination could be improve to monitor the cable health efficiently. � 2020, World Academy of Research in Science and Engineering. All rights reserved. Final 2023-05-29T08:12:24Z 2023-05-29T08:12:24Z 2020 Article 10.30534/ijeter/2020/2881.12020 2-s2.0-85092649877 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85092649877&doi=10.30534%2fijeter%2f2020%2f2881.12020&partnerID=40&md5=5d04909be543a849a1b534020d604f21 https://irepository.uniten.edu.my/handle/123456789/25663 8 1 Special Issue 1 179 186 All Open Access, Bronze World Academy of Research in Science and Engineering Scopus |
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In this paper, the concept of Partial Discharge (PD) and Time Domain Reflectometry (TDR) are discussed as they are among the most commonly used technique by utility company to enhance the fault characterization during routine based maintenance or failure in the system. The aim of this paper to review a technique that is able to shorten the period of cable fault diagnosis so that the replacement of cable can take place more efficiently. Correspondingly, this paper will investigate the ability of combining both techniques (PD and TDR) to reduce the cable replacement cost and subsequently prolong the lifespan of the cable. The proposed technique combination of PD, water tree and TDR with finite element analysis has been discussed in this paper. It can be seen, for future development the technique combination could be improve to monitor the cable health efficiently. � 2020, World Academy of Research in Science and Engineering. All rights reserved. |
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57219421984 |
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57219421984 Hatta N.H.S.M. Kuan T.M. Ariffin A.M. Raymond W.J.K. |
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Article |
author |
Hatta N.H.S.M. Kuan T.M. Ariffin A.M. Raymond W.J.K. |
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Hatta N.H.S.M. Kuan T.M. Ariffin A.M. Raymond W.J.K. Review on partial discharge and time domain reflectometry using finite element analysis |
author_sort |
Hatta N.H.S.M. |
title |
Review on partial discharge and time domain reflectometry using finite element analysis |
title_short |
Review on partial discharge and time domain reflectometry using finite element analysis |
title_full |
Review on partial discharge and time domain reflectometry using finite element analysis |
title_fullStr |
Review on partial discharge and time domain reflectometry using finite element analysis |
title_full_unstemmed |
Review on partial discharge and time domain reflectometry using finite element analysis |
title_sort |
review on partial discharge and time domain reflectometry using finite element analysis |
publisher |
World Academy of Research in Science and Engineering |
publishDate |
2023 |
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1806423500368379904 |