Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress

There are many factors, which influence the behaviours of partial discharge (PD) within a void located in a solid dielectric material. One of the important factors is the waveform of the applied voltage on the electrode of a system, such as its amplitude and frequency. In this study, a two-dimension...

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Main Authors: Illias, H.A., Tunio, M.A., Bakar, A.H.A., Mokhlis, H., Chen, G.
Format: Article
Published: Institution of Engineering and Technology (IET) 2014
Subjects:
Online Access:http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6748462
http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6748462
id um-11784
recordtype eprints
spelling um-117842017-11-13T08:17:50Z Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress Illias, H.A. Tunio, M.A. Bakar, A.H.A. Mokhlis, H. Chen, G. TA Engineering (General). Civil engineering (General) There are many factors, which influence the behaviours of partial discharge (PD) within a void located in a solid dielectric material. One of the important factors is the waveform of the applied voltage on the electrode of a system, such as its amplitude and frequency. In this study, a two-dimensional axial-symmetric model of a cylindrical void in polyethylene layers has been developed using finite element analysis software. The model was used to simulate PD activity in the void under square waveform applied voltage under different amplitudes of the voltage. The model has considered the effect of charge propagation along the void surface during a PD occurrence. The obtained simulation results were compared with the measurement results reported from previous literature to validate the PD model that has been developed in this work. It was found that the simulation and measurement results are within reasonable agreement with only slight disagreement. From the comparison, critical parameters from the model that affect PD behaviours under square waveform applied voltage were found to be the electron generation rate and the inception, extinction and critical charge propagation fields. These findings may increase an understanding of PD behaviours within a void in a dielectric material under square waveform applied voltage, which is important for insulation diagnosis. Institution of Engineering and Technology (IET) 2014-03 Article PeerReviewed http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6748462 Illias, H.A.; Tunio, M.A.; Bakar, A.H.A.; Mokhlis, H.; Chen, G. (2014) Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress. IET Science Measurement and Technology <http://eprints.um.edu.my/view/publication/IET_Science_Measurement_and_Technology.html>, 8 (2). pp. 81-88. ISSN 1751-8822 http://eprints.um.edu.my/11784/
repository_type Digital Repository
institution_category Local University
institution University Malaya
building UM Research Repository
collection Online Access
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Illias, H.A.
Tunio, M.A.
Bakar, A.H.A.
Mokhlis, H.
Chen, G.
Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
description There are many factors, which influence the behaviours of partial discharge (PD) within a void located in a solid dielectric material. One of the important factors is the waveform of the applied voltage on the electrode of a system, such as its amplitude and frequency. In this study, a two-dimensional axial-symmetric model of a cylindrical void in polyethylene layers has been developed using finite element analysis software. The model was used to simulate PD activity in the void under square waveform applied voltage under different amplitudes of the voltage. The model has considered the effect of charge propagation along the void surface during a PD occurrence. The obtained simulation results were compared with the measurement results reported from previous literature to validate the PD model that has been developed in this work. It was found that the simulation and measurement results are within reasonable agreement with only slight disagreement. From the comparison, critical parameters from the model that affect PD behaviours under square waveform applied voltage were found to be the electron generation rate and the inception, extinction and critical charge propagation fields. These findings may increase an understanding of PD behaviours within a void in a dielectric material under square waveform applied voltage, which is important for insulation diagnosis.
format Article
author Illias, H.A.
Tunio, M.A.
Bakar, A.H.A.
Mokhlis, H.
Chen, G.
author_facet Illias, H.A.
Tunio, M.A.
Bakar, A.H.A.
Mokhlis, H.
Chen, G.
author_sort Illias, H.A.
title Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
title_short Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
title_full Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
title_fullStr Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
title_full_unstemmed Partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
title_sort partial discharge behaviours within a void-dielectric system under square waveform applied voltage stress
publisher Institution of Engineering and Technology (IET)
publishDate 2014
url http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6748462
http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6748462
first_indexed 2018-09-06T06:01:26Z
last_indexed 2018-09-06T06:01:26Z
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