Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer

The design parameters errors of the power transformer in idle mode can reach 15-20%. or more, because engineering techniques disregard the all factors. To reduce the error of engineering techniques modifying the circuit-analytical model. However, their field of application is limited. Therefore, the...

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Main Authors: Yarymbash D.S., Kotsur M.I., Yarymbash S.T., Divchuk T.Ye.
Format: Article
Language:English
Published: Academy of Sciences of Moldova 2019-04-01
Series:Problems of the Regional Energetics
Subjects:
Online Access:http://journal.ie.asm.md/assets/files/02_01_39_2019.pdf
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author Yarymbash D.S.
Kotsur M.I.
Yarymbash S.T.
Divchuk T.Ye.
author_facet Yarymbash D.S.
Kotsur M.I.
Yarymbash S.T.
Divchuk T.Ye.
author_sort Yarymbash D.S.
collection DOAJ
description The design parameters errors of the power transformer in idle mode can reach 15-20%. or more, because engineering techniques disregard the all factors. To reduce the error of engineering techniques modifying the circuit-analytical model. However, their field of application is limited. Therefore, the aim of the work is to develop interconnected circuit and field models that ensure high accuracy of idling parameters by allow for the parameters of the external network, transformer design features and nonlinear magnetic properties of electrical steel, asymmetry and non-sinusoidal idling currents. To achieve this aim, an improved approach is proposed. The scientific novelty of this approach provides conjugation of the external network objects, represented by the elements of the circuit model, with the testing transformer. For idle mode, it is represented as a spatial magnetic field model. The reduction of the computational time was performed by doubling cancellation of the volume of 3D three-phase transformer domain and the conformal transition to the 2D geometric domain. Determination of the effective magnetic characteristics of electrical steel according to single-phase idling experiment data, allows taking into account the combined effect of hysteresis and eddy currents, design and technological factors on the specific losses and magnetization power. This ensures high accuracy of the description of the interrelation between magnetic flux density and magnetic field strength, reducing of current error and relative errors in the calculation of idling losses up to 1.41% and 1.2% for the 3D model and up to 5.18% and 3.2% for the 2D model.
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spelling doaj.art-9ce0e43b4f54440dba1edbec40dfe9ac2022-12-22T03:36:31ZengAcademy of Sciences of MoldovaProblems of the Regional Energetics1857-00702019-04-01391122110.5281/zenodo.2650413Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the TransformerYarymbash D.S.0Kotsur M.I.1Yarymbash S.T.2Divchuk T.Ye.3Zaporizhzhia National Technical University Zaporizhzhia, UkraineZaporizhzhia National Technical University Zaporizhzhia, UkraineZaporizhzhia National Technical University Zaporizhzhia, UkraineZaporizhzhia National Technical University Zaporizhzhia, UkraineThe design parameters errors of the power transformer in idle mode can reach 15-20%. or more, because engineering techniques disregard the all factors. To reduce the error of engineering techniques modifying the circuit-analytical model. However, their field of application is limited. Therefore, the aim of the work is to develop interconnected circuit and field models that ensure high accuracy of idling parameters by allow for the parameters of the external network, transformer design features and nonlinear magnetic properties of electrical steel, asymmetry and non-sinusoidal idling currents. To achieve this aim, an improved approach is proposed. The scientific novelty of this approach provides conjugation of the external network objects, represented by the elements of the circuit model, with the testing transformer. For idle mode, it is represented as a spatial magnetic field model. The reduction of the computational time was performed by doubling cancellation of the volume of 3D three-phase transformer domain and the conformal transition to the 2D geometric domain. Determination of the effective magnetic characteristics of electrical steel according to single-phase idling experiment data, allows taking into account the combined effect of hysteresis and eddy currents, design and technological factors on the specific losses and magnetization power. This ensures high accuracy of the description of the interrelation between magnetic flux density and magnetic field strength, reducing of current error and relative errors in the calculation of idling losses up to 1.41% and 1.2% for the 3D model and up to 5.18% and 3.2% for the 2D model.http://journal.ie.asm.md/assets/files/02_01_39_2019.pdfcircuit field modelathree phase transformer
spellingShingle Yarymbash D.S.
Kotsur M.I.
Yarymbash S.T.
Divchuk T.Ye.
Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
Problems of the Regional Energetics
circuit field model
a
three phase transformer
title Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
title_full Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
title_fullStr Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
title_full_unstemmed Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
title_short Hysteresis and Eddy Currents Effects Simulation in Idling Mode of the Transformer
title_sort hysteresis and eddy currents effects simulation in idling mode of the transformer
topic circuit field model
a
three phase transformer
url http://journal.ie.asm.md/assets/files/02_01_39_2019.pdf
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AT kotsurmi hysteresisandeddycurrentseffectssimulationinidlingmodeofthetransformer
AT yarymbashst hysteresisandeddycurrentseffectssimulationinidlingmodeofthetransformer
AT divchuktye hysteresisandeddycurrentseffectssimulationinidlingmodeofthetransformer