Selective Harmonic Elimination Method for Induction Motor Control System
Simulink model implementation of selective harmonic elimination technique for induction motor drives, featuring PWM control algorithms and harmonic analysis components.
Explore MATLAB source code curated for "感应电机" with clean implementations, documentation, and examples.
Simulink model implementation of selective harmonic elimination technique for induction motor drives, featuring PWM control algorithms and harmonic analysis components.
This is a self-developed simulation model of sensorless direct torque control for induction motors, shared for community feedback and technical discussions. The model implements advanced control algorithms to estimate motor speed without physical sensors.
This Simulink model implements Direct Torque Control (DTC) for induction motors, featuring core algorithm implementations including flux and torque hysteresis controllers, switching table logic, and voltage vector selection.
Implementation of Simulink Space Vector Modulation (SVM) module for induction motor control, featuring parameter tuning and performance analysis
This article explores induction motor vector control systems enhanced with Kalman filtering algorithms, covering theoretical principles, implementation approaches, and practical applications.
An M-language implemented model for induction motors accounting for core losses, capable of outputting 16 parameters including current characteristics with detailed electrical parameter calculations.
A comprehensive three-phase induction motor design application that implements motor design calculations and related computational functions, featuring automated parameter estimation and performance analysis capabilities.
This article describes the simulation model implementation of direct torque control (DTC) for induction motors, including mathematical modeling, control algorithms, and MATLAB/Simulink implementation details.
Implementation of induction machine control using PWM technique enhanced with PI and ANFIS controllers for improved performance and robustness.
Simulation model for induction motor direct torque control without speed sensors, featuring implementation of flux observers, torque estimation algorithms, and sensorless speed estimation techniques.