Stator Voltage Oriented Control Strategy Simulink Model for Doubly-Fed Induction Generator Rotor-Side Converter

Resource Overview

Stator voltage oriented control (SVOC) strategy Simulink simulation model for doubly-fed induction generator (DFIG) rotor-side control, requiring custom parameter configuration with implementation of PWM modulation and PI current regulation.

Detailed Documentation

To implement the Simulink simulation model for stator voltage oriented control strategy of doubly-fed induction generator rotor-side converter, you need to configure appropriate parameters. This model incorporates key algorithms including coordinate transformation (abc/dq), decoupling control, and closed-loop current regulation using PI controllers. The simulation enables comprehensive analysis of generator performance under various parameter settings through real-time waveform observation of currents, voltages, and power characteristics. By running simulations with different control parameters, you can optimize the control strategy to improve generator operational efficiency and dynamic response. The model structure includes subsystems for reference frame transformation, voltage-oriented angle calculation, and PWM signal generation for converter switching. Adjust parameters according to your research requirements and conduct simulation experiments to investigate how different control strategies impact generator performance characteristics such as torque ripple, power quality, and transient response. This simulation platform provides practical insights for both academic research and industrial application development in wind energy conversion systems.