Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine

In this paper, a robust state-feedback control law is designed for rotor side converter of doubly fed induction generator to enhance both transient and steady-state performances of grid connected variable speed wind turbine. More explicitly, a disturbance observer-based control (DOBC) is designed to...

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Main Authors: Debouza, M., Errouissi, R., Al-Durra, A., Muyeen, S.M.
Format: Conference Paper
Published: 2016
Online Access:http://hdl.handle.net/20.500.11937/50755
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author Debouza, M.
Errouissi, R.
Al-Durra, A.
Muyeen, S.M.
author_facet Debouza, M.
Errouissi, R.
Al-Durra, A.
Muyeen, S.M.
author_sort Debouza, M.
building Curtin Institutional Repository
collection Online Access
description In this paper, a robust state-feedback control law is designed for rotor side converter of doubly fed induction generator to enhance both transient and steady-state performances of grid connected variable speed wind turbine. More explicitly, a disturbance observer-based control (DOBC) is designed to compensate for the offset caused by model uncertainties and unknown external disturbances which is not considered in the DFIG modeling. Moreover, the fast dynamic response is inherited from the state-feedback control law. The composite controller consisting of the state-feedback controller and the disturbance observer allows achieving a stable and accurate control of the stator active and reactive powers. The proposed control strategy is verified by simulations and experimental testbed. Various tests are conducted to demonstrate the effectiveness of the proposed control strategy, and satisfactory results are obtained.
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format Conference Paper
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institution Curtin University Malaysia
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publishDate 2016
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spelling curtin-20.500.11937-507552017-09-13T15:36:41Z Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine Debouza, M. Errouissi, R. Al-Durra, A. Muyeen, S.M. In this paper, a robust state-feedback control law is designed for rotor side converter of doubly fed induction generator to enhance both transient and steady-state performances of grid connected variable speed wind turbine. More explicitly, a disturbance observer-based control (DOBC) is designed to compensate for the offset caused by model uncertainties and unknown external disturbances which is not considered in the DFIG modeling. Moreover, the fast dynamic response is inherited from the state-feedback control law. The composite controller consisting of the state-feedback controller and the disturbance observer allows achieving a stable and accurate control of the stator active and reactive powers. The proposed control strategy is verified by simulations and experimental testbed. Various tests are conducted to demonstrate the effectiveness of the proposed control strategy, and satisfactory results are obtained. 2016 Conference Paper http://hdl.handle.net/20.500.11937/50755 10.1049/cp.2016.0568 restricted
spellingShingle Debouza, M.
Errouissi, R.
Al-Durra, A.
Muyeen, S.M.
Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title_full Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title_fullStr Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title_full_unstemmed Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title_short Design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
title_sort design and implementation of a robust state-feedback control law for a grid-connected doubly fed induction generator wind turbine
url http://hdl.handle.net/20.500.11937/50755