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Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling

This paper proposes an alternative approach to extract transformer’s winding parameters of resistance (R), inductance (L), capacitance (C) and conductance (G) based on Finite Element Method (FEM). The capacitance and conductance were computed based on Fast Multiple Method (FMM) and Method of Moment...

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Autores principales: Srikanta Murthy, Avinash, Azis, Norhafiz, Jasni, Jasronita, Othman, Mohammad Lutfi, Mohd Yousof, Mohd Fairouz, Talib, Mohd Aizam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7451644/
https://www.ncbi.nlm.nih.gov/pubmed/32853253
http://dx.doi.org/10.1371/journal.pone.0236409
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author Srikanta Murthy, Avinash
Azis, Norhafiz
Jasni, Jasronita
Othman, Mohammad Lutfi
Mohd Yousof, Mohd Fairouz
Talib, Mohd Aizam
author_facet Srikanta Murthy, Avinash
Azis, Norhafiz
Jasni, Jasronita
Othman, Mohammad Lutfi
Mohd Yousof, Mohd Fairouz
Talib, Mohd Aizam
author_sort Srikanta Murthy, Avinash
collection PubMed
description This paper proposes an alternative approach to extract transformer’s winding parameters of resistance (R), inductance (L), capacitance (C) and conductance (G) based on Finite Element Method (FEM). The capacitance and conductance were computed based on Fast Multiple Method (FMM) and Method of Moment (MoM) through quasi-electrostatics approach. The AC resistances and inductances were computed based on MoM through quasi-magnetostatics approach. Maxwell's equations were used to compute the DC resistances and inductances. Based on the FEM computed parameters, the frequency response of the winding was obtained through the Bode plot function. The simulated frequency response by FEM model was compared with the simulated frequency response based on the Multi-conductor Transmission Line (MTL) model and the measured frequency response of a 33/11 kV, 30 MVA transformer. The statistical indices such as Root Mean Square Error (RMSE) and Absolute Sum of Logarithmic Error (ASLE) were used to analyze the performance of the proposed FEM model. It is found that the simulated frequency response by FEM model is quite close to measured frequency response at low and mid frequency regions as compared to simulated frequency response by MTL model based on RMSE and ASLE analysis.
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spelling pubmed-74516442020-09-02 Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling Srikanta Murthy, Avinash Azis, Norhafiz Jasni, Jasronita Othman, Mohammad Lutfi Mohd Yousof, Mohd Fairouz Talib, Mohd Aizam PLoS One Research Article This paper proposes an alternative approach to extract transformer’s winding parameters of resistance (R), inductance (L), capacitance (C) and conductance (G) based on Finite Element Method (FEM). The capacitance and conductance were computed based on Fast Multiple Method (FMM) and Method of Moment (MoM) through quasi-electrostatics approach. The AC resistances and inductances were computed based on MoM through quasi-magnetostatics approach. Maxwell's equations were used to compute the DC resistances and inductances. Based on the FEM computed parameters, the frequency response of the winding was obtained through the Bode plot function. The simulated frequency response by FEM model was compared with the simulated frequency response based on the Multi-conductor Transmission Line (MTL) model and the measured frequency response of a 33/11 kV, 30 MVA transformer. The statistical indices such as Root Mean Square Error (RMSE) and Absolute Sum of Logarithmic Error (ASLE) were used to analyze the performance of the proposed FEM model. It is found that the simulated frequency response by FEM model is quite close to measured frequency response at low and mid frequency regions as compared to simulated frequency response by MTL model based on RMSE and ASLE analysis. Public Library of Science 2020-08-27 /pmc/articles/PMC7451644/ /pubmed/32853253 http://dx.doi.org/10.1371/journal.pone.0236409 Text en © 2020 Srikanta Murthy et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Srikanta Murthy, Avinash
Azis, Norhafiz
Jasni, Jasronita
Othman, Mohammad Lutfi
Mohd Yousof, Mohd Fairouz
Talib, Mohd Aizam
Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title_full Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title_fullStr Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title_full_unstemmed Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title_short Extraction of winding parameters for 33/11 kV, 30 MVA transformer based on finite element method for frequency response modelling
title_sort extraction of winding parameters for 33/11 kv, 30 mva transformer based on finite element method for frequency response modelling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7451644/
https://www.ncbi.nlm.nih.gov/pubmed/32853253
http://dx.doi.org/10.1371/journal.pone.0236409
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