An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System

To supply resident loads far from the grid, a stand-alone wind system with a small-scale wind turbine and battery storage can be used. The traditional configuration of the system has a permanent-magnet synchronous generator (PMSG). Other alternative configurations use doubly fed induction generator...

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Main Authors: Omar E. M. Youssef, Mohamed G. Hussien, Abd El-Wahab Hassan
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:International Transactions on Electrical Energy Systems
Online Access:http://dx.doi.org/10.1155/2023/5541932
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author Omar E. M. Youssef
Mohamed G. Hussien
Abd El-Wahab Hassan
author_facet Omar E. M. Youssef
Mohamed G. Hussien
Abd El-Wahab Hassan
author_sort Omar E. M. Youssef
collection DOAJ
description To supply resident loads far from the grid, a stand-alone wind system with a small-scale wind turbine and battery storage can be used. The traditional configuration of the system has a permanent-magnet synchronous generator (PMSG). Other alternative configurations use doubly fed induction generator (DFIG). The systems with DFIG have variable speed operation with a limited speed range which reduces the captured power from the wind turbine. Also, there is a rotor-side converter (RSC) which carries the reactive power of DFIG, in addition to the slip power. In this paper, an improved system configuration with DFIG is controlled by an advanced control scheme. By this advanced scheme, the speed range is increased such that maximum power operation of wind turbine is obtained for complete range of wind speed, and volt-ampere (VA) requirements of RSC are reduced by the operation at nearly zero-slip power.
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institution Kabale University
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series International Transactions on Electrical Energy Systems
spelling doaj-art-3ec691fb1d3949acb1c47891907887aa2025-02-03T06:48:30ZengWileyInternational Transactions on Electrical Energy Systems2050-70382023-01-01202310.1155/2023/5541932An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG SystemOmar E. M. Youssef0Mohamed G. Hussien1Abd El-Wahab Hassan2Electrical Engineering DepartmentDepartment of Electrical Power and Machines EngineeringDepartment of Electrical Power and Machines EngineeringTo supply resident loads far from the grid, a stand-alone wind system with a small-scale wind turbine and battery storage can be used. The traditional configuration of the system has a permanent-magnet synchronous generator (PMSG). Other alternative configurations use doubly fed induction generator (DFIG). The systems with DFIG have variable speed operation with a limited speed range which reduces the captured power from the wind turbine. Also, there is a rotor-side converter (RSC) which carries the reactive power of DFIG, in addition to the slip power. In this paper, an improved system configuration with DFIG is controlled by an advanced control scheme. By this advanced scheme, the speed range is increased such that maximum power operation of wind turbine is obtained for complete range of wind speed, and volt-ampere (VA) requirements of RSC are reduced by the operation at nearly zero-slip power.http://dx.doi.org/10.1155/2023/5541932
spellingShingle Omar E. M. Youssef
Mohamed G. Hussien
Abd El-Wahab Hassan
An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
International Transactions on Electrical Energy Systems
title An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
title_full An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
title_fullStr An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
title_full_unstemmed An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
title_short An Advanced Control Performance of a Sophisticated Stand-Alone Wind-Driven DFIG System
title_sort advanced control performance of a sophisticated stand alone wind driven dfig system
url http://dx.doi.org/10.1155/2023/5541932
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