
This article presents the powers control of a variable speed wind turbine based on a doubly fed induction generator (DFIG) because of their advantages in terms of economy and control. The considered system consists of a DFIG whose stator is connected directly to the electrical network and its rotor is supplied by a 19-level inverter with less number of switches for minimize the harmonics absorbed by the DFIG, reducing switching frequency, high power electronic applications because of their ability to generate a very good quality of waveforms, and their low voltage stress across the power devices. In order to control independently active and reactive powers provided by the stator side of the DFIG to the grid and ensure high performance and a better execution, three types of robust controllers have been studied and compared in terms of power reference tracking, response to sudden speed variations, sensitivity to perturbations and robustness against machine parameters variations.
621.3.07, rotor side converter, ?????????????????????????????? ?????????????????? ???? ??????????????. ???????????? ??????????????????????, multilevel inverter, ветряная турбина; асинхронный генератор двойного питания; контроллер режима скольжения; адаптивный контроллер режима скольжения; адаптивный нечеткий контроллер режима скольжения; многоуровневый инвертор, doubly fed induction generator, многоуровневый инвертор, adaptive fuzzy sliding mode controller, TK1-9971, контроллер режима скольжения, wind turbine; doubly fed induction generator; sliding mode controller; adaptive sliding mode controller; adaptive fuzzy sliding mode controller; multilevel inverter, wind turbine, adaptive sliding mode controller, ветряная турбина, Electrical engineering. Electronics. Nuclear engineering, sliding mode controller
621.3.07, rotor side converter, ?????????????????????????????? ?????????????????? ???? ??????????????. ???????????? ??????????????????????, multilevel inverter, ветряная турбина; асинхронный генератор двойного питания; контроллер режима скольжения; адаптивный контроллер режима скольжения; адаптивный нечеткий контроллер режима скольжения; многоуровневый инвертор, doubly fed induction generator, многоуровневый инвертор, adaptive fuzzy sliding mode controller, TK1-9971, контроллер режима скольжения, wind turbine; doubly fed induction generator; sliding mode controller; adaptive sliding mode controller; adaptive fuzzy sliding mode controller; multilevel inverter, wind turbine, adaptive sliding mode controller, ветряная турбина, Electrical engineering. Electronics. Nuclear engineering, sliding mode controller
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