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      Implementation and Validation of Hybrid Control for a DFIG Wind Turbine Using an FPGA Controller Board

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      Electronics
      MDPI AG

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          Abstract

          In this study, a novel control approach for a doubly-fed induction generator (DFIG) is developed and applied to improve the system’s dynamic response and performance for providing high energy quality while avoiding harmonic accumulations. Because of its ease of implementation, field-oriented control (FOC) is frequently used. This control has great sensitivity to the machine’s parametric variations. For this reason, adaptive Backstepping control (ABC) is capable of preserving almost all of the performance and robustness properties. However, its analytical formulation has a problem. To overcome these disadvantages, the hybrid control (HC) is developed and verified to enable rapid response, complete reference tracking, and appropriate dynamic behavior with a low ripple level. This control is a combination of FOC’s and ABC’s control laws. The prepared control is explored by simulation testing using Matlab/Simulink and practical implementation using an FPGA board with actual turbine settings and a real wind profile of Dakhla City, Morocco. The results of hardware simulation show the efficacy of the HC in terms of speed and robustness, with a total harmonic distortion THD = 0.95, a value of THD that reveals the quality of the energy injected into the grid.

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          Enhanced Control of a DFIG-Based Wind-Power Generation System With Series Grid-Side Converter Under Unbalanced Grid Voltage Conditions

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            Rooted Tree Optimization for the Backstepping Power Control of a Doubly Fed Induction Generator Wind Turbine: dSPACE Implementation

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              Observer backstepping control of DFIG-Generators for wind turbines variable-speed: FPGA-based implementation

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                Author and article information

                Contributors
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                Journal
                ELECGJ
                Electronics
                Electronics
                MDPI AG
                2079-9292
                December 2021
                December 17 2021
                : 10
                : 24
                : 3154
                Article
                10.3390/electronics10243154
                b411b2a4-b999-4b16-8215-bfa1279a43f0
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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