معرفی
Sanja Antic is an Associate Professor at the Department of General Electrical Engineering and Electronics within the Faculty of Technical Sciences at the University of Kragujevac, Serbia. She teaches courses including Automatic Control (since 2009), Digital Control Systems (since 2014), and Control of Electromotor Drives (since 2009), having previously taught Fundamentals of Electrical Engineering, Electrical Measurements 1, and Electric Drives.
Dr. Antic completed her primary and secondary education in Čačak with the prestigious Vuk Karadžić diploma for academic excellence. She earned her undergraduate degree in Electrical Engineering with Industrial Power Engineering specialization from the Faculty of Technical Sciences in Čačak in 2000 with an outstanding grade average of 9.60, receiving recognition as the top graduate of her academic year. She continued to excel in her postgraduate studies, earning a Master of Technical Sciences degree in 2009 with a perfect 10.00 grade average. Her doctoral dissertation, defended in 2016 at the University of Belgrade, focused on application of model-based fault detection methods in electromechanical systems.
Her research expertise spans control systems engineering with particular focus on fault detection and isolation in DC motor systems, electromotor drive control, and educational applications of control theory. Dr. Antic has made significant contributions to the field of fault detection methodologies for electromechanical systems, developing expert systems using structured residuals design techniques and FPGA implementations. Her work extends to practical applications in tank-level control systems, aquifer modeling, and energy efficiency of electric motors. She has been instrumental in developing remote laboratory experiments for engineering education, creating educational tools that bridge theoretical concepts with practical implementation.
Analysis of her recent publications reveals a strong research trajectory focused on fault detection and isolation techniques for DC motor systems, with increasing sophistication in diagnostic approaches. Her work has evolved from basic fault detection methods to comprehensive identification and isolation systems, incorporating advanced techniques like parameter estimation, structured residuals, and FPGA implementations. She has also expanded her research into educational applications of control theory, developing laboratory setups and remote experiments that enhance engineering education.
Dr. Antic has led and participated in several research projects, including the modernization of teaching for three mandatory subjects in Electrical and Computer Engineering (EMPA) from 2020-2021, and has contributed to building a network of remote labs to strengthen university-secondary vocational school collaboration through a TEMPUS project. Her work on energy efficiency of electromotor drives has been supported by the Ministry of Education, Science and Technological Development of Serbia.
She has been actively involved in developing educational resources including textbooks, workbooks, and laboratory catalogs. Notably, she co-authored 'Regulation of Electromotor Drives' (2010) and 'Introduction to Automatic Control Systems - Theory and Examples' (2021), along with practical resources like 'Collection of Solved Problems in Electromotor Drives' and catalogs of remote laboratory experiments. Her commitment to innovative teaching approaches is evident in her development of remote experiments for demonstrating current and voltage control of DC motors.



