Direct power control for grid-connected doubly fed induction generator using disturbance observer based control

A disturbance observer based control method for a grid-connected doubly fed induction generator is presented in this study. The proposed control method consists of a state-feedback controller and a disturbance observer (DO). The DO is used to compensate for model uncertainties with the aim of removi...

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Main Authors: Debouza, M., Al-Durra, A., Errouissi, R., Muyeen, S.M.
Format: Journal Article
Published: Elsevier 2018
Online Access:http://hdl.handle.net/20.500.11937/67785
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author Debouza, M.
Al-Durra, A.
Errouissi, R.
Muyeen, S.M.
author_facet Debouza, M.
Al-Durra, A.
Errouissi, R.
Muyeen, S.M.
author_sort Debouza, M.
building Curtin Institutional Repository
collection Online Access
description A disturbance observer based control method for a grid-connected doubly fed induction generator is presented in this study. The proposed control method consists of a state-feedback controller and a disturbance observer (DO). The DO is used to compensate for model uncertainties with the aim of removing the steady-state error. The control objective consists of regulating the stator currents instead of the rotor currents in order to achieve direct control of the stator active and reactive powers. Such a control scheme removes the need for an exact knowledge of the machine parameters to achieve accurate control of the stator active and reactive powers. The main advantage of this control method is ensuring a good transient performance as per the controller design specifications, while guaranteeing zero steady-state error. Moreover, the proposed control method was experimentally validated on a small scale DFIG setup.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:35:09Z
publishDate 2018
publisher Elsevier
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-677852020-03-06T03:30:44Z Direct power control for grid-connected doubly fed induction generator using disturbance observer based control Debouza, M. Al-Durra, A. Errouissi, R. Muyeen, S.M. A disturbance observer based control method for a grid-connected doubly fed induction generator is presented in this study. The proposed control method consists of a state-feedback controller and a disturbance observer (DO). The DO is used to compensate for model uncertainties with the aim of removing the steady-state error. The control objective consists of regulating the stator currents instead of the rotor currents in order to achieve direct control of the stator active and reactive powers. Such a control scheme removes the need for an exact knowledge of the machine parameters to achieve accurate control of the stator active and reactive powers. The main advantage of this control method is ensuring a good transient performance as per the controller design specifications, while guaranteeing zero steady-state error. Moreover, the proposed control method was experimentally validated on a small scale DFIG setup. 2018 Journal Article http://hdl.handle.net/20.500.11937/67785 10.1016/j.renene.2018.02.121 Elsevier fulltext
spellingShingle Debouza, M.
Al-Durra, A.
Errouissi, R.
Muyeen, S.M.
Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title_full Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title_fullStr Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title_full_unstemmed Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title_short Direct power control for grid-connected doubly fed induction generator using disturbance observer based control
title_sort direct power control for grid-connected doubly fed induction generator using disturbance observer based control
url http://hdl.handle.net/20.500.11937/67785