H-Bridge Control Simulink Simulation Model

Resource Overview

H-Bridge Control Simulink Simulation Model serves as a reference framework for DC motor control system design, featuring PWM signal generation, MOSFET switching logic, and bidirectional current flow implementation

Detailed Documentation

The H-Bridge Control Simulink Simulation Model provides a comprehensive reference for DC motor control system design. Through simulation analysis, users can gain deep insights into H-Bridge operational principles and performance characteristics, including dead-time implementation, switching frequency optimization, and torque-ripple minimization techniques. The model enables parametric studies for optimizing control algorithms (such as PID tuning) and power electronics configuration, leading to enhanced motor control precision. Key simulation components include pulse-width modulation (PWM) signal generators, MOSFET/IGBT driver blocks, and current feedback loops, allowing systematic verification of bidirectional speed control and dynamic braking scenarios. This model significantly accelerates the development cycle by providing a validated foundation for practical DC motor control applications.