Novel Fast Super Twisting for Dynamic Performance Enhancement of Double-Fed Induction-Generator-Based Wind Turbine: Stability Proof and Steady State Analysis
Belgacem Kheira (),
Atig Mebarka,
Abdelli Houaria and
Mezouar Abdelkader
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Belgacem Kheira: Laboratory of Electrical Engineering, Taher Moulay University, Saida 20 000, Algeria
Atig Mebarka: Laboratory of Electrical Engineering, Taher Moulay University, Saida 20 000, Algeria
Abdelli Houaria: Laboratory of Electrical Engineering, Taher Moulay University, Saida 20 000, Algeria
Mezouar Abdelkader: Laboratory of Electrical Engineering, Taher Moulay University, Saida 20 000, Algeria
Energies, 2025, vol. 18, issue 14, 1-16
Abstract:
The Super-Twisting Sliding Mode Controller (STSMC) is regarded as one of the most straightforward and most practical nonlinear control systems, due to its ease of application in industrial systems. Its application helps minimize the chattering problem and significantly improves the resilience of the system. This controller possesses multiple deficiencies and issues, as its use does not promote the expected improvement of systems. To overcome these shortcomings and optimize the efficiency and performance of this technique, a new method is suggested for the super-twisting algorithm (STA). This study proposes and uses a new STA approach, named the fast super-twisting algorithm (FSTA), utilized the conventional IFOC technique to mitigate fluctuations in torque, current, and active power. The results from this suggested the IFOC-FSTA method are compared with those of the traditional SMC and STA methods. The results obtained from this study demonstrate that the suggested method, which is based on FSTA, has outperformed the traditional method in terms of ripple ratio and response dynamics. This demonstrates the robustness of the proposed approach to optimize the generator performance and efficiency in the double-fed induction generator-based wind system.
Keywords: doubly fed induction generator; wind turbine; active and reactive power; super-twisting algorithm STA; fast super-twisting algorithm FSTA; robust (search for similar items in EconPapers)
JEL-codes: Q Q0 Q4 Q40 Q41 Q42 Q43 Q47 Q48 Q49 (search for similar items in EconPapers)
Date: 2025
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