
معرفی
Aneta P. Prijic is a Full Professor at the Faculty of Electronics in Niš, University of Niš, Serbia, affiliated with the Department of Microelectronics and Microsystems. She completed her academic training at the same institution, earning her PhD in 2007 in Microelectronics and Microsystems. Her research focuses on energy harvesting, microelectronics, and sensor systems.
Research Interests: Her work centers on energy harvesting technologies—particularly thermal and photovoltaic—for wireless sensor nodes. She investigates reliability in power semiconductor devices, designs PCB-based sensors, and develops low-power systems for industrial and telemetry applications. Her expertise spans microelectronics, device modeling, and sustainable embedded systems.
Publication Trends: Her recent publications emphasize energy efficiency in sensor networks, with a strong focus on thermoelectric and photovoltaic harvesting under low-power conditions. She also contributes to semiconductor reliability (e.g., NBTI analysis) and educational innovations in PCB design. Her work appears in IEEE, Elsevier, and MDPI journals, reflecting interdisciplinary contributions in electronics and engineering.
Scientific Contributions:
- Co-author of 4 national patents, 1 international patent, and 13 technical solutions
- Active member of the Program Committee of the ETRAN Society (Microelectronics and Optoelectronics section)
- Participant in 3 national and international research projects
Advising and Grants: While specific students are not listed, her collaborative publications suggest mentorship of junior researchers. She is actively involved in funded research projects focusing on energy harvesting and microelectronic systems, contributing to technological innovation and education.
Labs and Teams: She is affiliated with research groups at the Faculty of Electronics in Niš focused on microelectronics, energy systems, and sensor technologies. Her work is integrated into national and international collaborations, particularly in the development of reliable, low-power electronic systems.

