In this paper, we propose a coordinated optimization approach for DFIG rotor crowbar and DC-chopper resistances based on NSGA-II algorithm. The optimization objective is to minimize the impact of grid voltage fluctuations on the DFIG system and maximize the power output. The proposed approach considers the trade-off between rotor speed, crowbar resistance, and DC-chopper resistance design. We validate the effectiveness of the proposed approach through simulation studies.
NSGA II Based Coordinated Optimization of DFIG Rotor Crowbar and DC chopper Resistances
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