A track within the MSc Electrical Engineering

Renewable Electrical Energy

Are you ready to power the future of renewable electrical energy systems?


KEY FACTS

  • Track Focus: Designing and optimizing future-proof electrical energy systems, integrating renewable technologies, energy conversion, power electronics, smart grids, and AI-driven solutions
  • Career Outlook: The global energy transition drives strong demand for electrical engineers who understand the changes required from renewable integration and electrification to ensure a secure and reliable supply

WHY RENEWABLE ELECTRICAL ENERGY?

As the world moves from fossil fuels to renewable sources like solar, wind, and hydro, electricity is becoming the backbone of a fully renewable energy system. The Renewable Electrical Energy track puts you at the forefront of the global energy transition.

WHAT'S IN IT FOR YOU?

The track equips you to become next generation of electrical engineers who play a vital role in shaping a reliable, stable and sustainable infrastructure that powers tomorrow鈥檚 society. 

Lecturers and professors for Renewable Electrical Energy

What will you learn?

In this track, you will learn how to model, analyze and optimize complex high-tech and cyber-physical systems using both model-driven and data-driven design methodologies. You will build expertise in embedded computing, control systems, power electronics and system architectures, and learn how these disciplines interact within advanced high-tech systems.

More than sustainable energy

This track provides in depth knowledge of the technologies shaping the energy systems of the future:

  • Modeling of the computation and communication in high-tech systems
  • Hybrid and dynamic system modeling
  • Model-driven and data-driven design methodologies
  • Embedded control systems and control principles
  • High-performance motion control
  • System Architecture and Optimization
  • Sensors, Actuators and Power Converters

Curriculum

Within this track, you can build your own program. Students choose:

1) 3 core courses out of 4 (15 ECTS)

Code Course Credits

 

Bayesian machine learning and information processing 

5 ECTS

 

Distributed Optimization 

5 ECTS

 

Electrical energy systems in transition 

5 ECTS

 

Advanced Power Electronics 

5 ECTS

2) 1 track line with 3 courses (15 ECTS)

Track Line Course Credits
Digital Optimization for Energy Services

 Smart grids, ICT and electricity markets 

5 ECTS

 

 Modeling and optimization in electricity markets 

5 ECTS

 

 Machine learning for systems and control 

5 ECTS

Renewable Power System Integration

 Power system planning & operation 

5 ECTS

 

 Power quality phenomena 

5 ECTS

 

 Power system stability and control 

5 ECTS

Modelling and Control for Energy Systems

 Electrical drive-battery: design and operation 

5 ECTS
   Model predictive control  5 ECTS
   System identification  5 ECTS
Power Electronics for Renewable Energy Systems  Electrical drive-battery: design and operation  5 ECTS
   Electromagnetic compatibility  5 ECTS
   Modelling & control of power converters  5 ECTS
Electromechanic Power Conversion Technologies  Rotary permanent magnet machines  5 ECTS
   Computational design with AI methodologies for electromagnetic devices  5 ECTS
   Power system stability and control  5 ECTS

Electro-Physical Processes

 High voltage technology  5 ECTS
   Pulsed power technology  5 ECTS
   Electromagnetic compatibility 5 ECTS

3) 3 free electives (15 ECTS)

Why should you follow this track at 黑料福利网?

  • Transform theory into impact: From power electronics and energy conversion to AI-driven grid optimization, you鈥檒l help shape a sustainable energy future, all while shaping a strong career
  • Connect to the tech frontier: gain project and internship experience with leading industry partners in the Brainport region and beyond

  • Benefit of an all-in-one program: Master electrification and smart energy in one track, combining topics like AI, smart grids, electromechanics, and electro-physical processes to prepare for all aspects of modern energy systems.

  • Learn from industry experts: our professors are leading researchers driving innovation in renewable energy

  • Experiment in unique labs: From generating high voltages to creating new applications, explore your own ideas in our modern research facilities.

Labs and research groups for Renewable Electrical Energy