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dsPIC33: Control an Interleaved Buck Converter
Rating: 4.0 out of 5(1 rating)
9 students

dsPIC33: Control an Interleaved Buck Converter

Voltage Mode Control and PI Controllers for an Interleaved Buck Converter using the dsPIC33, and 3P3Z Simulation
Last updated 2/2025
English

What you'll learn

  • Design and implementation of an Interleaved buck converter using dsPIC33 microcontroller
  • Firmware development using MPLAB X IDE
  • Voltage Mode Control using Hysteresis method in dsPIC33 firmware
  • Firmware implementation of the PI controller for Voltage Mode Control
  • 3P3Z Controller Simulation in PSIM

Course content

7 sections11 lectures2h 21m total length
  • Theoretical Overview12:38

Requirements

  • Familiarity with MPLAB X IDE (v6.00 and above)
  • Access to MATLAB for designing the PI controller

Description

Immerse yourself in the world of power electronics with this in-depth course, "Mastering Interleaved Buck Converter with dsPIC33: Control and Implementation." Designed with meticulous attention to detail, this course equips participants with the essential knowledge and skills to design, implement, and control an Interleaved Buck Converter using the powerful dsPIC33 microcontroller. 

Learners will explore the intricacies of Interleaved Buck Converter design, delving deep into the fundamental equations and principles that govern its operation. Through a combination of theoretical insights and hands-on exercises, participants will develop effective firmware using MPLAB X IDE. The course covers Voltage Mode Control using the Hysteresis method, ensuring stable and efficient system performance. 

Going beyond basic concepts, participants will design and implement a Three-Pole Three-Zero (3P3Z) controller in MATLAB for precise voltage regulation. MATLAB will be used to generate digital controller coefficients, which will be integrated into the dsPIC33 firmware. The performance of the controller and system behavior will be validated through detailed PSIM simulations, ensuring a robust and optimized design before hardware implementation. 

By the end of the course, participants will have the confidence and expertise to design and control efficient power systems using dsPIC33, MATLAB, and PSIM. Whether students, hobbyists, or professionals, learners will gain invaluable skills, preparing them for academic, personal, or professional engineering projects. This course offers a dynamic, engaging experience that unlocks new opportunities in power electronics.

Who this course is for:

  • Electrical engineering students
  • Electronics enthusiasts
  • Professionals interested in power electronics and control systems