Electrical Engineering

Explore the programs and courses offered by Electrical Engineering

Browse Programs Admission Information

Program Overview

https://docs.google.com/document/d/1gJnTolp36A24RJBmd4ekM1y13QnF5JSx/edit?tab=t.0

Teaching Language : English and French

Curriculum Highlights

Core Courses

First Year

Semester 1:

  1. Analog Electronics I
  2. Digital Systems I
  3. Signal Processing
  4. Electromagnetism and Waves
  5. Electrical and Magnetic Circuits
  6. Systems Theory
  7. Continuous Linear Control Systems
  8. Measurement Techniques
  9. Numerical Methods Applied to Engineering Sciences
  10. Scientific and Technical English 1
  11. Written and Oral Communication 1
  12. Discovery Internship 1

Semester 2:

  1. Analog Electronics II
  2. Digital Systems II
  3. Electromagnetic Converters
  4. Power Electronics
  5. Sampled Control Systems
  6. State-Space Analysis and Control
  7. Programming Languages
  8. Instrumentation
  9. Scientific and Technical English 2
  10. Written and Oral Communication 2
  11. Renewable Energy and Sustainable Development
  12. Internship 2




Advanced Topics

Advanced topics cover various fields related to energy conversion, power electronics, electric machine control, and energy systems. Below are some advanced themes in this specialty:

1. Control and Command of Electrical Systems

  • Vector control and Direct Torque Control (DTC) of electric machines
  • Robust and adaptive control of electric motors
  • Predictive control of power converters
  • Optimization of energy management in electrical systems
  • Artificial intelligence and machine learning applied to motor control

2. Power Electronics and Energy Conversion

  • Design and optimization of multilevel converters
  • High-efficiency inverters and rectifiers
  • Converter modulation and harmonic reduction
  • Energy conversion systems for renewable applications (wind, solar)
  • Energy storage and integration into electrical grids

3. Electric Machines and Advanced Magnetic Materials

  • Design and modeling of permanent magnet synchronous motors
  • New topologies of variable reluctance electric machines
  • Modeling of magnetic and thermal losses in machines
  • Performance optimization of motors for industrial applications and electric vehicles

4. Smart Grids

  • Integration of renewable energy sources into electrical grids
  • Intelligent energy distribution management
  • Power quality and disturbance compensation
  • Fault detection and isolation techniques in electrical networks

5. Electromagnetic Compatibility and Reliability of Electrical Systems

  • Reduction of electromagnetic interference in electronic systems
  • Reliability analysis of converters and electric machines
  • Diagnostic techniques and predictive maintenance of electrical equipment


Admissions Information