Design and analysis of a new scheme of the FOSTA for DFIG based wind turbine

Kheira Belgacem, Houaria Abdelli, Mebarka Atig, Abdelkader Mezouar

Abstract


An super-twisting algorithm (STA)-based controller was designed and implemented in this study to achieve precise control over the stator active and reactive power of a doubly fed induction generator (DFIG)-equipped wind turbine device. The fractional calculus theory (FCT) allowed the STA to maximize its effectiveness and performance. A distinct form is sent to the FCT-based STA controller. The stator flux orientation technique uses control that is independent of stator active and reactive powers. In order to achieve a quick system with sufficient precision and a robust control strategy, the hybrid method control is based on the fractional-order super twisting algorithm (FOSTA) and FCT. To demonstrate the performance, efficacy, and resilience of the stated nonlinear approach, a number of simulations are provided.

Keywords


active and reactive power; doubly fed induction generator; fractional calculus theory; super twisting algorithm; wind turbine;

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DOI: http://doi.org/10.12928/telkomnika.v23i6.27222

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TELKOMNIKA Telecommunication, Computing, Electronics and Control
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