A graduate of the third cycle (PhD) study programme in Electrical Engineering is able to conduct research with a high degree of creativity and independence. Emphasis is placed on the graduate acquiring deep knowledge both in at least one theoretical area and in at least one methodological area of power electronics, actuators and drives, digital electronics, and systems and methods of automatic and intelligent control applied to the design, construction and maintenance of large technical solutions involving electrical systems. The graduate can build a scientific career across the full range of applications for complex electromechanical systems.
A doctoral graduate masters scientific methods of analysis, modeling and simulation of complex electrical systems and has selected knowledge focused on the design and engineering of state‑of‑the‑art electromechanical devices as well as their continuous, discrete and intelligent control systems. These comprehensive skills enable the graduate to analyze proposed alternative solutions and, supported by modern mathematical, diagnostic and simulation methods, find effective solutions in the design, construction and maintenance of large technical solutions involving electrical systems.
- The PhD graduate has deep theoretical and methodological knowledge in key areas of power engineering at the level of the current state of international research, creatively applies acquired knowledge in practice, can analyze and solve non‑standard information‑related problems and implement solutions in practice.
- The PhD graduate gains the ability to analyze non‑standard electrical systems and problems in terms of the current state of research.
- The PhD graduate can conduct independent scientific work and lead a professional research and development team, keeps up with the latest developments in their field and continuously updates their knowledge to the current international state of the art.

