A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions

This paper proposes a novel vector-based hysteresis current regulator (VBHCR) in the rotor-side converter of doubly-fed induction generator (DFIG) based wind turbine to enhance its operation under non-ideal supply voltage conditions. First, the induction generator is modelled using the 'gamma-f...

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Main Authors: Mohseni, Mansour, Mesbah, Mohsen, Islam, Syed, Masoum, Mohammad Sherkat
Format: Journal Article
Published: Engineers Media Pty Ltd. 2011
Online Access:http://search.informit.com.au/documentSummary;dn=876589113990378;res=IELENG
http://hdl.handle.net/20.500.11937/34825
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author Mohseni, Mansour
Mesbah, Mohsen
Islam, Syed
Masoum, Mohammad Sherkat
author_facet Mohseni, Mansour
Mesbah, Mohsen
Islam, Syed
Masoum, Mohammad Sherkat
author_sort Mohseni, Mansour
building Curtin Institutional Repository
collection Online Access
description This paper proposes a novel vector-based hysteresis current regulator (VBHCR) in the rotor-side converter of doubly-fed induction generator (DFIG) based wind turbine to enhance its operation under non-ideal supply voltage conditions. First, the induction generator is modelled using the 'gamma-form' equivalent circuit and the stator-voltage-oriented vector control of DFIG is introduced. Then, the principle and practical implementation of the proposed VBHCR in the rotor-side converter of DFIG is presented. This current regulator employs two sets of hysteresis comparators working in three-phase and rotor reference frames, integrated with a switching table. Compared to the commonly-used proportional-integral current regulators, it reveals very fast transient response with a simple control structure. Simulation results, obtained for a 1.5 MW DFIG, show the validity of the proposed control scheme under normal operation conditions, as well as its desirable steady-state performance. Furthermore, the advantages of the proposed current regulator under non-ideal supply voltage conditions (including unbalance and harmonic distortions) are illustrated.
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institution Curtin University Malaysia
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spelling curtin-20.500.11937-348252017-01-30T13:45:53Z A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions Mohseni, Mansour Mesbah, Mohsen Islam, Syed Masoum, Mohammad Sherkat This paper proposes a novel vector-based hysteresis current regulator (VBHCR) in the rotor-side converter of doubly-fed induction generator (DFIG) based wind turbine to enhance its operation under non-ideal supply voltage conditions. First, the induction generator is modelled using the 'gamma-form' equivalent circuit and the stator-voltage-oriented vector control of DFIG is introduced. Then, the principle and practical implementation of the proposed VBHCR in the rotor-side converter of DFIG is presented. This current regulator employs two sets of hysteresis comparators working in three-phase and rotor reference frames, integrated with a switching table. Compared to the commonly-used proportional-integral current regulators, it reveals very fast transient response with a simple control structure. Simulation results, obtained for a 1.5 MW DFIG, show the validity of the proposed control scheme under normal operation conditions, as well as its desirable steady-state performance. Furthermore, the advantages of the proposed current regulator under non-ideal supply voltage conditions (including unbalance and harmonic distortions) are illustrated. 2011 Journal Article http://hdl.handle.net/20.500.11937/34825 http://search.informit.com.au/documentSummary;dn=876589113990378;res=IELENG Engineers Media Pty Ltd. restricted
spellingShingle Mohseni, Mansour
Mesbah, Mohsen
Islam, Syed
Masoum, Mohammad Sherkat
A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title_full A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title_fullStr A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title_full_unstemmed A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title_short A Novel Vector-based Hysteresis Current Regulator for Doubly-fed Induction Generator Wind Turbines under Non-ideal Supply Conditions
title_sort novel vector-based hysteresis current regulator for doubly-fed induction generator wind turbines under non-ideal supply conditions
url http://search.informit.com.au/documentSummary;dn=876589113990378;res=IELENG
http://hdl.handle.net/20.500.11937/34825