SVPWM Asynchronous Motor Control Simulation
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This research focuses on Space Vector Pulse Width Modulation (SVPWM) simulation for asynchronous motor control using MATLAB.
In this simulation study, we implement MATLAB-based control of asynchronous motors employing SVPWM technology. The implementation involves generating appropriate voltage vectors through sector identification and duty cycle calculations to achieve precise motor control by adjusting voltage magnitude and frequency. The simulation methodology includes Clarke/Park transformations for reference frame conversions, voltage vector synthesis using switching states, and PWM signal generation through timer comparisons. Through detailed analysis of SVPWM principles and implementation techniques, we validate the effectiveness of this approach in achieving smooth torque control and reduced harmonic distortion. This simulation provides comprehensive insights into asynchronous motor control methodologies and serves as a valuable reference for practical engineering applications, demonstrating key functions like sector determination, switching time calculation, and PWM pattern generation.
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