A comparative study based on proportional integral and backstepping controllers for doubly fed induction generator used in wind energy conversion system

This paper presents a comparative study between the conventional PI (Proportional Integral) and backstepping controllers applied to the DFIG (Doubly Fed Induction Generator) used in WECS (Wind Energy Conversion System). These two different control strategies proposed in this work are developed to co...

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Published inArchives of Electrical Engineering (Online) Vol. 72; no. 1; pp. 211 - 228
Main Authors Moumani, Youssef, Laafou, Abdeslam Jabal, Madi, Abdessalam Ait
Format Journal Article
LanguageEnglish
Published Warsaw Polish Academy of Sciences 01.01.2023
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ISSN2300-2506
1427-4221
2300-2506
DOI10.24425/aee.2023.143698

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Abstract This paper presents a comparative study between the conventional PI (Proportional Integral) and backstepping controllers applied to the DFIG (Doubly Fed Induction Generator) used in WECS (Wind Energy Conversion System). These two different control strategies proposed in this work are developed to control the active and reactive power of the DFIG on the one hand, and to maintain the DC-link voltage constant for the inverting function on the other hand. This is ensured by generating control signals for two power electronic converters, RSC (Rotor Side Converter) and GSC (Grid Side Converter). In order to optimise the power production in the WT (Wind Turbine), an MPPT (Maximum Power Point Tracking) algorithm is applied along with each control technique. To simulate the effectiveness of the proposed controllers, MATLAB/Simulink Software is used, and the obtained results are analysed and discussed to compare PI and backstepping controllers in terms of robustness against wind speed variations and tracking performance in dynamic and steady states.
AbstractList This paper presents a comparative study between the conventional PI (Proportional Integral) and backstepping controllers applied to the DFIG (Doubly Fed Induction Generator) used in WECS (Wind Energy Conversion System). These two different control strategies proposed in this work are developed to control the active and reactive power of the DFIG on the one hand, and to maintain the DC-link voltage constant for the inverting function on the other hand. This is ensured by generating control signals for two power electronic converters, RSC (Rotor Side Converter) and GSC (Grid Side Converter). In order to optimise the power production in the WT (Wind Turbine), an MPPT (Maximum Power Point Tracking) algorithm is applied along with each control technique. To simulate the effectiveness of the proposed controllers, MATLAB/Simulink Software is used, and the obtained results are analysed and discussed to compare PI and backstepping controllers in terms of robustness against wind speed variations and tracking performance in dynamic and steady states.
Author Laafou, Abdeslam Jabal
Madi, Abdessalam Ait
Moumani, Youssef
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Snippet This paper presents a comparative study between the conventional PI (Proportional Integral) and backstepping controllers applied to the DFIG (Doubly Fed...
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StartPage 211
SubjectTerms Active control
Algorithms
backstepping control
Comparative studies
control
Controllers
dfig
Energy conversion
gsc
Induction generators
Maximum power tracking
mppt
Proportional integral
Reactive power
rsc
Wind power
Wind speed
wind turbine
Wind turbines
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Title A comparative study based on proportional integral and backstepping controllers for doubly fed induction generator used in wind energy conversion system
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