Renewable Energies in Electrotechnics

Explore the programs and courses offered by Renewable Energies in Electrotechnics

Browse Programs Admission Information

Program Overview

The Master's program in Renewable Energies within Electrotechnics is a nationally accredited academic program under the LMD (Licence–Master–Doctorate) framework initiated by the Algerian Ministry of Higher Education and Scientific Research. As part of the broader national strategy to develop sustainable energy capacities, this program was updated in 2022 to align with global technological advancements and industry demands in the field of renewable energy. It is specifically tailored to produce highly skilled engineers who are capable of addressing the technical and practical challenges associated with the design, control, and integration of renewable energy systems. This includes solar photovoltaic (PV), wind energy, and hybrid systems, as well as the storage solutions and intelligent grid technologies required for modern power networks. The program fosters both theoretical understanding and practical competence through laboratory sessions, simulations, and case studies that reflect real-world applications

Teaching Language : Français

Curriculum Highlights

Core Courses

The core modules of the program are carefully structured across three progressive semesters:

  • Semester 1 introduces advanced principles in electrical networks and electrotechnics, with courses such as Transmission and Distribution Systems, Advanced Power Electronics, Microcontrollers and Embedded Systems, and Advanced Electrical Machines. Students also receive foundational training in Numerical Methods and Optimization, preparing them for computational tasks in energy modeling and system simulation.
  • Semester 2 transitions into applied renewable energy systems, offering specialized modules like Photovoltaic Energy Conversion, Wind Energy Systems, and Power Quality Analysis. A significant emphasis is placed on understanding the variability and assessment of solar and wind resources through dedicated resource analysis courses. These studies are reinforced by practical lab work and software simulations.
  • Semester 3 deepens students’ technical expertise through integration-based modules such as Hybrid and Multi-source Systems, Energy Storage and Fuel Cells, and Control of Renewable Energy Systems. The curriculum also addresses smart grid technologies and the challenges of integrating distributed energy resources into the conventional electrical grid. The semester culminates in the preparation of a final project or master’s thesis.


Advanced Topics

Beyond the core curriculum, students are encouraged to pursue advanced and elective topics that reflect emerging trends and research areas in renewable energy. These include Advanced PV and Wind System Simulation, Real-Time Digital Control Techniques, and Hybrid System Design. Topics such as Energy Auditing, Sustainable Energy Management, and Lifecycle Analysis help bridge the technical with the strategic and environmental aspects of energy systems. Students may also explore Energy Policy and Regulation, Project Management, and Entrepreneurship in Renewable Technologies, equipping them with the tools needed to navigate regulatory frameworks and lead innovative energy projects. Special attention is also given to lab-intensive modules, where students interact with cutting-edge instrumentation, develop prototypes, and test system responses in simulated real-world conditions. This combination of technical depth and interdisciplinary breadth ensures graduates are well-positioned for careers in engineering, consultancy, research, and public-sector energy planning

Admissions Information

The program is open to candidates who hold a Bachelor’s degree (Licence) in Science and Technology, with a focus on Electrotechnics or a related discipline. The ideal candidate should possess a solid grounding in mathematics, physics, and electrical engineering principles. Admission is competitive and may involve a selection process based on academic performance (typically GPA from previous studies), an interview to assess motivation and readiness, and consideration of any prior research or professional experience in the energy or engineering sectors. International applicants or those with foreign degrees must ensure their qualifications are equivalent and recognized by the Algerian higher education system. The program seeks motivated individuals who are eager to contribute to the renewable energy transition both locally and globally

Apply Now