A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms

In this paper, a design fuzzy logic controller for a variable speed permanent magnet wind generator connected to a grid system through a LC-filter is proposed. A new current control method of grid side conversion is developed by integrating the fuzzy controller, in which both active and reactive pow...

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Main Authors: Marwan Rosyadi, S. M. Muyeen, Rion Takahashi, Junji Tamura
Format: Article
Language:English
Published: MDPI AG 2012-11-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/2/4/780
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spelling doaj-7d15eee1256f40349d4434fd858efb9f2020-11-25T00:38:54ZengMDPI AGApplied Sciences2076-34172012-11-012478080010.3390/app2040780A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind FarmsMarwan RosyadiS. M. MuyeenRion TakahashiJunji TamuraIn this paper, a design fuzzy logic controller for a variable speed permanent magnet wind generator connected to a grid system through a LC-filter is proposed. A new current control method of grid side conversion is developed by integrating the fuzzy controller, in which both active and reactive power, delivered to a power grid system, is controlled effectively. The fuzzy logic controller is designed to adjust the gain parameters of the PI controllers under any operating conditions, so that the dynamic stability is enhanced. A new simple method, based on frequency response of the bode diagram, is proposed in the design of the fuzzy logic controller. To evaluate the controller system capabilities, simulation analyses are performed on a small wind farm model system including an induction wind generator connected to an infinite bus. The simulations have been performed using PSCAD/EMTDC. Simulation results show that the proposed control scheme is more effective for enhancing the stability of wind farms during temporary and permanent network disturbances and randomly fluctuating wind speed, compared with that of a conventional PI controller.http://www.mdpi.com/2076-3417/2/4/780wind farmfuzzy logic controlpermanent magnet synchronous generatorAC/DC/AC converterLC filterdynamic stability
collection DOAJ
language English
format Article
sources DOAJ
author Marwan Rosyadi
S. M. Muyeen
Rion Takahashi
Junji Tamura
spellingShingle Marwan Rosyadi
S. M. Muyeen
Rion Takahashi
Junji Tamura
A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
Applied Sciences
wind farm
fuzzy logic control
permanent magnet synchronous generator
AC/DC/AC converter
LC filter
dynamic stability
author_facet Marwan Rosyadi
S. M. Muyeen
Rion Takahashi
Junji Tamura
author_sort Marwan Rosyadi
title A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
title_short A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
title_full A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
title_fullStr A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
title_full_unstemmed A Design Fuzzy Logic Controller for a Permanent Magnet Wind Generator to Enhance the Dynamic Stability of Wind Farms
title_sort design fuzzy logic controller for a permanent magnet wind generator to enhance the dynamic stability of wind farms
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2012-11-01
description In this paper, a design fuzzy logic controller for a variable speed permanent magnet wind generator connected to a grid system through a LC-filter is proposed. A new current control method of grid side conversion is developed by integrating the fuzzy controller, in which both active and reactive power, delivered to a power grid system, is controlled effectively. The fuzzy logic controller is designed to adjust the gain parameters of the PI controllers under any operating conditions, so that the dynamic stability is enhanced. A new simple method, based on frequency response of the bode diagram, is proposed in the design of the fuzzy logic controller. To evaluate the controller system capabilities, simulation analyses are performed on a small wind farm model system including an induction wind generator connected to an infinite bus. The simulations have been performed using PSCAD/EMTDC. Simulation results show that the proposed control scheme is more effective for enhancing the stability of wind farms during temporary and permanent network disturbances and randomly fluctuating wind speed, compared with that of a conventional PI controller.
topic wind farm
fuzzy logic control
permanent magnet synchronous generator
AC/DC/AC converter
LC filter
dynamic stability
url http://www.mdpi.com/2076-3417/2/4/780
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