Improvement of DFIG-based WECS performance using SMES unit

Doubly Fed Induction Generators (DFIGs) are widely used in variable speed wind turbine owing to its superior advantages that include ability to extract more energy from turbine, capability to control activeand reactive power independently and the usage ofreduced converter rating that reduces its ove...

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Main Authors: Khamaira, Mahmoud, Yunus, A.M. Shiddiq, Abu-Siada, Ahmed
Other Authors: Michael Negnevitsky
Format: Conference Paper
Published: AUPEC 2013
Online Access:http://hdl.handle.net/20.500.11937/25410
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author Khamaira, Mahmoud
Yunus, A.M. Shiddiq
Abu-Siada, Ahmed
author2 Michael Negnevitsky
author_facet Michael Negnevitsky
Khamaira, Mahmoud
Yunus, A.M. Shiddiq
Abu-Siada, Ahmed
author_sort Khamaira, Mahmoud
building Curtin Institutional Repository
collection Online Access
description Doubly Fed Induction Generators (DFIGs) are widely used in variable speed wind turbine owing to its superior advantages that include ability to extract more energy from turbine, capability to control activeand reactive power independently and the usage ofreduced converter rating that reduces its overall cost.The application of DFIG in large wind energyconversion systems (WECS) has reached 55% of theworldwide total wind capacity during the year 2012. Onthe other side fluctuating output power, weak fault ridethrough capability and high sensitivity to griddisturbances are the main issues that affect DFIGperformance. In this paper, superconducting magneticenergy storage (SMES) unit is proposed to improve theoverall performance of a DFIG-based WECS duringvoltage sag disturbance in the grid side. A new controlapproach for SMES unit using hysteresis currentcontroller (HCC) along with proportional integral (PI) controller is introduced. Simulations results reveal the effectiveness of the proposed SMES controller in improving the overall performance of the WECS system under study.
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format Conference Paper
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:56:53Z
publishDate 2013
publisher AUPEC
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-254102017-10-02T02:27:39Z Improvement of DFIG-based WECS performance using SMES unit Khamaira, Mahmoud Yunus, A.M. Shiddiq Abu-Siada, Ahmed Michael Negnevitsky Doubly Fed Induction Generators (DFIGs) are widely used in variable speed wind turbine owing to its superior advantages that include ability to extract more energy from turbine, capability to control activeand reactive power independently and the usage ofreduced converter rating that reduces its overall cost.The application of DFIG in large wind energyconversion systems (WECS) has reached 55% of theworldwide total wind capacity during the year 2012. Onthe other side fluctuating output power, weak fault ridethrough capability and high sensitivity to griddisturbances are the main issues that affect DFIGperformance. In this paper, superconducting magneticenergy storage (SMES) unit is proposed to improve theoverall performance of a DFIG-based WECS duringvoltage sag disturbance in the grid side. A new controlapproach for SMES unit using hysteresis currentcontroller (HCC) along with proportional integral (PI) controller is introduced. Simulations results reveal the effectiveness of the proposed SMES controller in improving the overall performance of the WECS system under study. 2013 Conference Paper http://hdl.handle.net/20.500.11937/25410 AUPEC fulltext
spellingShingle Khamaira, Mahmoud
Yunus, A.M. Shiddiq
Abu-Siada, Ahmed
Improvement of DFIG-based WECS performance using SMES unit
title Improvement of DFIG-based WECS performance using SMES unit
title_full Improvement of DFIG-based WECS performance using SMES unit
title_fullStr Improvement of DFIG-based WECS performance using SMES unit
title_full_unstemmed Improvement of DFIG-based WECS performance using SMES unit
title_short Improvement of DFIG-based WECS performance using SMES unit
title_sort improvement of dfig-based wecs performance using smes unit
url http://hdl.handle.net/20.500.11937/25410