MATLAB Simulation of Dual Closed-Loop Speed Control System for DC Motors
MATLAB simulation of dual closed-loop speed regulation system for DC motors, including executable code, comprehensive Word documentation, and performance visualization graphs
Explore MATLAB source code curated for "直流电机" with clean implementations, documentation, and examples.
MATLAB simulation of dual closed-loop speed regulation system for DC motors, including executable code, comprehensive Word documentation, and performance visualization graphs
MATLAB simulation program for DC motor dual closed-loop control system with implementation of speed and current regulation algorithms
This collection features 50 essential MATLAB motor simulations with complete source code covering synchronous motors, asynchronous motors, and DC motors. Each example includes detailed algorithm implementations, key function descriptions, and simulation parameter configurations.
Implementation and analysis of LQR output feedback controller design with MATLAB/Simulink simulations for DC motor speed control systems
Simulation program for DC motor servo control systems using MATLAB, featuring comprehensive parameter configuration and real-time performance analysis capabilities
Implementation of Fuzzy PID Control for DC Motors - A Detailed Graduation Project Study on Fuzzy Control Algorithms with Comprehensive Code Documentation for Future Reference
Implementation of DC motor position control through genetic algorithm-optimized PID controller parameters, including proportional, integral, and derivative gain tuning strategies.
DC motor PID speed regulation using Simulink simulation program with detailed algorithm implementation and parameter tuning analysis.
Implementation of Simulink-based dual closed-loop control system simulation for DC motors with detailed code structure and parameter configuration
PID-controlled DC motor source code developed in Simulink, ready to run immediately. This implementation demonstrates practical PID controller design with motor control applications.