Analysis of Bifurcations in a Wind Turbine System Based on DFIG

This main aim of this study is investigation of the dynamic stability in a grid-connected wing turbine system based on Double Feed Induction Generator (DFIG) using the bifurcation theory. Regarding the overview of stability by Cardenas et. al. [1]. In our research, the proposed system model is simul...

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Main Authors: Saber Khosravi, Mehran Zamanifar, Pouya Derakhshan-Barjoei
Format: Article
Language:English
Published: Ital Publication 2018-03-01
Series:Emerging Science Journal
Subjects:
Online Access:https://ijournalse.org/index.php/ESJ/article/view/62
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spelling doaj-db237eadc36b4a93bd964a83df5427ba2020-11-25T01:27:36ZengItal PublicationEmerging Science Journal2610-91822018-03-0121395210.28991/esj-2018-0112632Analysis of Bifurcations in a Wind Turbine System Based on DFIGSaber Khosravi0Mehran Zamanifar1Pouya Derakhshan-Barjoei2Department of Electrical Engineering, Naein Branch, Islamic Azad University, Naein, IranDepartment of Electrical Engineering, Najafabad Branch, Islamic Azad University, Najafabad, IranDepartment of Electrical Engineering, Naein Branch, Islamic Azad University, Naein, IranThis main aim of this study is investigation of the dynamic stability in a grid-connected wing turbine system based on Double Feed Induction Generator (DFIG) using the bifurcation theory. Regarding the overview of stability by Cardenas et. al. [1]. In our research, the proposed system model is simulated based on bifurcation theory in MATLAB software. In each step, one of the controlling or non-controlling parameters is selected. Eigenvalues of system are traced permanently during simulation. According to the change of the eigenvalues of system, due to the change of bifurcation parameter, stability of the equilibrium point and special bifurcations including saddle-node and Hopf bifurcations in the system are determined.https://ijournalse.org/index.php/ESJ/article/view/62Wind Turbine SystemBifurcation TheorySaddle-Node BifurcationHopf Bifurcation.
collection DOAJ
language English
format Article
sources DOAJ
author Saber Khosravi
Mehran Zamanifar
Pouya Derakhshan-Barjoei
spellingShingle Saber Khosravi
Mehran Zamanifar
Pouya Derakhshan-Barjoei
Analysis of Bifurcations in a Wind Turbine System Based on DFIG
Emerging Science Journal
Wind Turbine System
Bifurcation Theory
Saddle-Node Bifurcation
Hopf Bifurcation.
author_facet Saber Khosravi
Mehran Zamanifar
Pouya Derakhshan-Barjoei
author_sort Saber Khosravi
title Analysis of Bifurcations in a Wind Turbine System Based on DFIG
title_short Analysis of Bifurcations in a Wind Turbine System Based on DFIG
title_full Analysis of Bifurcations in a Wind Turbine System Based on DFIG
title_fullStr Analysis of Bifurcations in a Wind Turbine System Based on DFIG
title_full_unstemmed Analysis of Bifurcations in a Wind Turbine System Based on DFIG
title_sort analysis of bifurcations in a wind turbine system based on dfig
publisher Ital Publication
series Emerging Science Journal
issn 2610-9182
publishDate 2018-03-01
description This main aim of this study is investigation of the dynamic stability in a grid-connected wing turbine system based on Double Feed Induction Generator (DFIG) using the bifurcation theory. Regarding the overview of stability by Cardenas et. al. [1]. In our research, the proposed system model is simulated based on bifurcation theory in MATLAB software. In each step, one of the controlling or non-controlling parameters is selected. Eigenvalues of system are traced permanently during simulation. According to the change of the eigenvalues of system, due to the change of bifurcation parameter, stability of the equilibrium point and special bifurcations including saddle-node and Hopf bifurcations in the system are determined.
topic Wind Turbine System
Bifurcation Theory
Saddle-Node Bifurcation
Hopf Bifurcation.
url https://ijournalse.org/index.php/ESJ/article/view/62
work_keys_str_mv AT saberkhosravi analysisofbifurcationsinawindturbinesystembasedondfig
AT mehranzamanifar analysisofbifurcationsinawindturbinesystembasedondfig
AT pouyaderakhshanbarjoei analysisofbifurcationsinawindturbinesystembasedondfig
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