Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions

This paper proposes an improved control of rotor side and load side converters with repetitive control in order to compensate the harmonic components in the stator voltage and current of the doubly-fed induction generator (DFIG) when connected with non-linear loads. The non-linear loads results in d...

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Main Authors: Wei, F., Vilathgamuwa, D., Choi, San Shing, Zhang, X.
Format: Conference Paper
Published: 2013
Online Access:http://hdl.handle.net/20.500.11937/56318
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author Wei, F.
Vilathgamuwa, D.
Choi, San Shing
Zhang, X.
author_facet Wei, F.
Vilathgamuwa, D.
Choi, San Shing
Zhang, X.
author_sort Wei, F.
building Curtin Institutional Repository
collection Online Access
description This paper proposes an improved control of rotor side and load side converters with repetitive control in order to compensate the harmonic components in the stator voltage and current of the doubly-fed induction generator (DFIG) when connected with non-linear loads. The non-linear loads results in distorted stator voltage and current with subsequent power quality degradation and electromagnetic torque pulsations of DFIGs. The distorted stator voltage and current are compensated by the proposed hybrid control scheme with repetitive control (RC) based PI controller (PIRC). The harmonic components of different orders and negative sequence component of the stator voltage can be rejected using a single PIRC while most of the other alternative harmonic compensators require separate controllers for damping these components. The PIRC is applied in rotor side converter (RSC) for the purpose of stator voltage compensation and in line side converter (LSC) for stator current compensation, respectively. The simulation results are given and they show that the PIRC control scheme can eliminate stator voltage and current harmonic of stand-alone DFIG effectively. © 2013 IEEE.
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institution Curtin University Malaysia
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spelling curtin-20.500.11937-563182017-09-13T16:10:29Z Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions Wei, F. Vilathgamuwa, D. Choi, San Shing Zhang, X. This paper proposes an improved control of rotor side and load side converters with repetitive control in order to compensate the harmonic components in the stator voltage and current of the doubly-fed induction generator (DFIG) when connected with non-linear loads. The non-linear loads results in distorted stator voltage and current with subsequent power quality degradation and electromagnetic torque pulsations of DFIGs. The distorted stator voltage and current are compensated by the proposed hybrid control scheme with repetitive control (RC) based PI controller (PIRC). The harmonic components of different orders and negative sequence component of the stator voltage can be rejected using a single PIRC while most of the other alternative harmonic compensators require separate controllers for damping these components. The PIRC is applied in rotor side converter (RSC) for the purpose of stator voltage compensation and in line side converter (LSC) for stator current compensation, respectively. The simulation results are given and they show that the PIRC control scheme can eliminate stator voltage and current harmonic of stand-alone DFIG effectively. © 2013 IEEE. 2013 Conference Paper http://hdl.handle.net/20.500.11937/56318 10.1109/ECCE-Asia.2013.6579175 restricted
spellingShingle Wei, F.
Vilathgamuwa, D.
Choi, San Shing
Zhang, X.
Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title_full Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title_fullStr Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title_full_unstemmed Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title_short Improved control of rotor- and load-side converters of stand-alone DFIGs under nonlinear loads conditions
title_sort improved control of rotor- and load-side converters of stand-alone dfigs under nonlinear loads conditions
url http://hdl.handle.net/20.500.11937/56318