Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime

A model to generate the hysteresis loop starting from the fundamental magnetization curve is proposed in this paper. This was imposed by the necessity to improve the results returned by authors' previous studies about the periodical acswitching mode of single-phase transformers. The hysteresis...

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Main Authors: STRIMBU, C., CONSTANTINESCU, C. G, PEARSICA, M., MIRON, L.
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2007-04-01
Series:Advances in Electrical and Computer Engineering
Subjects:
Online Access:http://dx.doi.org/10.4316/AECE.2007.01010
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spelling doaj-aa9d2e32028e4aeca6ecbe5100e19a232020-11-24T22:57:51ZengStefan cel Mare University of SuceavaAdvances in Electrical and Computer Engineering1582-74451844-76002007-04-01714449Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching RegimeSTRIMBU, C.CONSTANTINESCU, C. GPEARSICA, M.MIRON, L.A model to generate the hysteresis loop starting from the fundamental magnetization curve is proposed in this paper. This was imposed by the necessity to improve the results returned by authors' previous studies about the periodical acswitching mode of single-phase transformers. The hysteresis loop generation and tracing procedures are presented in the paper, the last one dealing with a transformer working in acswitching mode, RL and RC loaded (with current or voltage rectifiers in secondary winding). Comparisons between experimentally and theoretically determined primary current waveforms are included in the paper, to prove the correctness of the proposed hysteresis loop model. MathCAD 6.0 was used as mathematical support.http://dx.doi.org/10.4316/AECE.2007.01010hysteresis loopmagnetisation curveperiodical ac-switchingsingle-phase transformervoltage rectifiers
collection DOAJ
language English
format Article
sources DOAJ
author STRIMBU, C.
CONSTANTINESCU, C. G
PEARSICA, M.
MIRON, L.
spellingShingle STRIMBU, C.
CONSTANTINESCU, C. G
PEARSICA, M.
MIRON, L.
Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
Advances in Electrical and Computer Engineering
hysteresis loop
magnetisation curve
periodical ac-switching
single-phase transformer
voltage rectifiers
author_facet STRIMBU, C.
CONSTANTINESCU, C. G
PEARSICA, M.
MIRON, L.
author_sort STRIMBU, C.
title Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
title_short Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
title_full Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
title_fullStr Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
title_full_unstemmed Using the Hysteresis Loop to Study a Single-Phase Transformer Working in AC-Switching Regime
title_sort using the hysteresis loop to study a single-phase transformer working in ac-switching regime
publisher Stefan cel Mare University of Suceava
series Advances in Electrical and Computer Engineering
issn 1582-7445
1844-7600
publishDate 2007-04-01
description A model to generate the hysteresis loop starting from the fundamental magnetization curve is proposed in this paper. This was imposed by the necessity to improve the results returned by authors' previous studies about the periodical acswitching mode of single-phase transformers. The hysteresis loop generation and tracing procedures are presented in the paper, the last one dealing with a transformer working in acswitching mode, RL and RC loaded (with current or voltage rectifiers in secondary winding). Comparisons between experimentally and theoretically determined primary current waveforms are included in the paper, to prove the correctness of the proposed hysteresis loop model. MathCAD 6.0 was used as mathematical support.
topic hysteresis loop
magnetisation curve
periodical ac-switching
single-phase transformer
voltage rectifiers
url http://dx.doi.org/10.4316/AECE.2007.01010
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