Abstract
This paper presents a new contribution of the nonlinear control technique of electrical energy in a wind energy system. The nonlinear sliding mode technique used to control the powers of the DFIG-Generator is connected to the power grid by two converters (grid side and machine side). The proposed model is validated using tracking and robustness tests with a real wind speed. The control was developed under Matlab/Simulink, and the FPGA in the Loop technique was used to design the DFIG model. By employing a co-simulation, the purpose is to test the controller for the FPGA simulated model or system in its entirety. The results obtained by the co-simulation show the efficiency of the proposed model in terms of speed and robustness with a rate THD = 0.95, and the proposed model of the sliding mode controller shows a significant improvement in the quality of energy produced by the wind system.
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CITATION STYLE
El Alami, H., Bossoufi, B., Motahhir, S., Alkhammash, E. H., Masud, M., Karim, M., … El Mahfoud, M. (2022). Fpga in the loop implementation for observer sliding mode control of dfig-generators for wind turbines. Electronics (Switzerland), 11(1). https://doi.org/10.3390/electronics11010116
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