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This paper is focused on the model development of doubly fed induction generator (DFIG)‐based wind turbines. The model integrates mechanical and electrical systems. In the mechanical system, the aerodynamic properties are calculated in every section and every angle of attack by using a finite element analysis software, and the dynamic structure analysis is performed by using the Fatigue, Aerodynamics,...
This work concerns the development of a completed permanent magnet synchronous generator (PMSG) wind turbine model. It considers the interaction between its mechanical and electrical parts. The mechanical part was established using FAST (which is an abbreviation of Fatigue, Aerodynamics, Structures, and Turbulence). In the electrical part, the predictive direct torque control method is used to control...
This paper mainly focuses on the direct torque control (DTC) of the non-salient pole permanent magnet synchronous generator (PMSG). In the article, the PMSG model is developed clearly in the detail mathematical equation. Most of the three-phase electrical system would be analyzed in the complex plane by Clarke direct transformation. Because of this transformation, the calculation become much easier...
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