Double salient switched reluctance generator for wind energy application

A modeling method of switched reluctance generator (SRG) for wind energy applications based on the nonlinear inductance model and electromagnetic field finite element analysis (FEA) has been proposed in Matlab/Simulink environment, the power inverter, excitation source and loads are modeled on Simul...

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Main Authors: F. Messai, M. Makhlouf, H. Benalla, A. Messai
Format: Article
Language:English
Published: Renewable Energy Development Center (CDER) 2014-03-01
Series:Revue des Énergies Renouvelables
Subjects:
Online Access:https://revue.cder.dz/index.php/rer/article/view/424
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author F. Messai
M. Makhlouf
H. Benalla
A. Messai
author_facet F. Messai
M. Makhlouf
H. Benalla
A. Messai
author_sort F. Messai
collection DOAJ
description A modeling method of switched reluctance generator (SRG) for wind energy applications based on the nonlinear inductance model and electromagnetic field finite element analysis (FEA) has been proposed in Matlab/Simulink environment, the power inverter, excitation source and loads are modeled on Simulink/Simpower system in order to analyze both static and dynamic state. The nonlinear inductance model allows us to develop a control strategy that gives high performance controller with a closed loop was designed on PI controller. Simulation results show the efficiency of the modeling method and validate the applicability of the model.
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spelling doaj.art-e49b2c14330b409ab9df942ce43d2a892022-12-21T20:13:27ZengRenewable Energy Development Center (CDER)Revue des Énergies Renouvelables1112-22422716-82472014-03-0117171 – 8271 – 82424Double salient switched reluctance generator for wind energy applicationF. Messai0M. Makhlouf1H. Benalla2A. Messai3Department of Electrical Engineering, Faculty of Engineering Sciences Université Constantine 1, Route d’Ain El Bey, Constantine, AlgeriaDepartment of Electrical Engineering, Faculty of Engineering Sciences Université Constantine 1, Route d’Ain El Bey, Constantine, AlgeriaDepartment of Electrical Engineering, Faculty of Engineering Sciences Université Constantine 1, Route d’Ain El Bey, Constantine, AlgeriaLaboratory of electromagnetism and telecommunications Université Constantine 1, Route d’Ain El Bey, Constantine, AlgeriaA modeling method of switched reluctance generator (SRG) for wind energy applications based on the nonlinear inductance model and electromagnetic field finite element analysis (FEA) has been proposed in Matlab/Simulink environment, the power inverter, excitation source and loads are modeled on Simulink/Simpower system in order to analyze both static and dynamic state. The nonlinear inductance model allows us to develop a control strategy that gives high performance controller with a closed loop was designed on PI controller. Simulation results show the efficiency of the modeling method and validate the applicability of the model.https://revue.cder.dz/index.php/rer/article/view/424switched reluctance generatorwind energyproportional integratorcurrent controlfinite element analysis
spellingShingle F. Messai
M. Makhlouf
H. Benalla
A. Messai
Double salient switched reluctance generator for wind energy application
Revue des Énergies Renouvelables
switched reluctance generator
wind energy
proportional integrator
current control
finite element analysis
title Double salient switched reluctance generator for wind energy application
title_full Double salient switched reluctance generator for wind energy application
title_fullStr Double salient switched reluctance generator for wind energy application
title_full_unstemmed Double salient switched reluctance generator for wind energy application
title_short Double salient switched reluctance generator for wind energy application
title_sort double salient switched reluctance generator for wind energy application
topic switched reluctance generator
wind energy
proportional integrator
current control
finite element analysis
url https://revue.cder.dz/index.php/rer/article/view/424
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