Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data

Abstract The single phase equivalent circuit is largely used to model the three-phase induction motors in steady-state operation and under sinusoidal balanced voltages. Depending on the desired application, the circuit may or may not represent core losses, a double cage or even the variation of para...

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Main Authors: Carlos A. C. Wengerkievicz, Ricardo de A. Elias, Nelson J. Batistela, Nelson Sadowski, Patrick Kuo-Peng, Sandro C. Lima, Pedro A. da Silva Jr., Anderson Y. Beltrame
Format: Article
Language:English
Published: Sociedade Brasileira de Microondas e Optoeletrônica; Sociedade Brasileira de Eletromagnetismo
Series:Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742017000100090&lng=en&tlng=en
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author Carlos A. C. Wengerkievicz
Ricardo de A. Elias
Nelson J. Batistela
Nelson Sadowski
Patrick Kuo-Peng
Sandro C. Lima
Pedro A. da Silva Jr.
Anderson Y. Beltrame
author_facet Carlos A. C. Wengerkievicz
Ricardo de A. Elias
Nelson J. Batistela
Nelson Sadowski
Patrick Kuo-Peng
Sandro C. Lima
Pedro A. da Silva Jr.
Anderson Y. Beltrame
author_sort Carlos A. C. Wengerkievicz
collection DOAJ
description Abstract The single phase equivalent circuit is largely used to model the three-phase induction motors in steady-state operation and under sinusoidal balanced voltages. Depending on the desired application, the circuit may or may not represent core losses, a double cage or even the variation of parameters due to skin effect and saturation. However, the determination of the circuit parameters through standard methods, such as those described in IEEE Standard 112, may not be possible in many situations given the lack of the necessary resources. This paper presents initially a survey on the determination of circuit parameters from alternative methods, i.e., non-standard tests. Special focus is given to methods which employ only data usually provided by manufacturers on catalogs and nameplates. Six analytical methodologies used in the context of efficiency estimation at steady-state operation are assessed, compared and then combined in order to improve results. The assessment is based on the closeness of the resulting parameter values to reference values and on the inexistence of absurd results, such as negative electrical resistances. The combination of methods has improved the accuracy of calculations for the studied motors.
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spelling doaj.art-b8c15202f6034693834e31bb675bb5a82022-12-21T18:25:46ZengSociedade Brasileira de Microondas e Optoeletrônica; Sociedade Brasileira de EletromagnetismoJournal of Microwaves, Optoelectronics and Electromagnetic Applications2179-10741619010710.1590/2179-10742017v16i1873S2179-10742017000100090Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog DataCarlos A. C. WengerkieviczRicardo de A. EliasNelson J. BatistelaNelson SadowskiPatrick Kuo-PengSandro C. LimaPedro A. da Silva Jr.Anderson Y. BeltrameAbstract The single phase equivalent circuit is largely used to model the three-phase induction motors in steady-state operation and under sinusoidal balanced voltages. Depending on the desired application, the circuit may or may not represent core losses, a double cage or even the variation of parameters due to skin effect and saturation. However, the determination of the circuit parameters through standard methods, such as those described in IEEE Standard 112, may not be possible in many situations given the lack of the necessary resources. This paper presents initially a survey on the determination of circuit parameters from alternative methods, i.e., non-standard tests. Special focus is given to methods which employ only data usually provided by manufacturers on catalogs and nameplates. Six analytical methodologies used in the context of efficiency estimation at steady-state operation are assessed, compared and then combined in order to improve results. The assessment is based on the closeness of the resulting parameter values to reference values and on the inexistence of absurd results, such as negative electrical resistances. The combination of methods has improved the accuracy of calculations for the studied motors.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742017000100090&lng=en&tlng=enEquivalent circuitParameter value estimationManufacturer dataThree-phase induction motor
spellingShingle Carlos A. C. Wengerkievicz
Ricardo de A. Elias
Nelson J. Batistela
Nelson Sadowski
Patrick Kuo-Peng
Sandro C. Lima
Pedro A. da Silva Jr.
Anderson Y. Beltrame
Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Equivalent circuit
Parameter value estimation
Manufacturer data
Three-phase induction motor
title Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
title_full Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
title_fullStr Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
title_full_unstemmed Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
title_short Estimation of Three-Phase Induction Motor Equivalent Circuit Parameters from Manufacturer Catalog Data
title_sort estimation of three phase induction motor equivalent circuit parameters from manufacturer catalog data
topic Equivalent circuit
Parameter value estimation
Manufacturer data
Three-phase induction motor
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742017000100090&lng=en&tlng=en
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