1st Level of Study, 2nd Year, Summer Semester
Upon successful completion of the course, students will become familiar with the design, properties, and applications of electric drives. They will acquire knowledge of the mechanics and dynamics of electric drives, as well as of the modeling and sizing of electric drive systems. Students will gain an understanding of the control methods used for DC and AC electric drives. They will also be able to develop mathematical models of selected types of electric motors using MATLAB.
[1] J. Timko and J. Žilková, Elektrické pohony, Košice, Slovakia: FEI Technická univerzita v Košiciach, 2015, 199 pp. ISBN: 978-80-553-2069-4.
[2] F. Kümmel, Elektrické pohony – úlohy a riešenia, Bratislava, Slovakia: Alfa, 1989, ISBN: 80-05-00081-2.
[3] P. Brandštetter, Střídavé regulační pohony – Moderní způsoby řízení, Ostrava, Czech Republic: ES VŠB-TUO, 1999, ISBN: 80-7088-688-X.
[4] I. Neborák, Modelování a simulace elektrických regulovaných pohonů, Ostrava, Czech Republic: VŠB-TUO, 2002, ISBN: 80-248-0083-7.
[5] J. Žilková, J. Timko, and S. Köver, "DTC of an induction motor drive," Acta Technica CSAV (Ceskoslovenska Akademie Ved), vol. 56, no. 4, pp. 419-431, 2011. ISSN 0001-7043.
[6] J. Timko, J. Žilková, and P. Girovský, "Shaft sensorless vector control of an induction motor," Acta Technica CSAV (Ceskoslovenska Akademie Ved), vol. 52, no. 1, pp. 81-91, 2007. ISSN 0001-7043.
[7] J. Žilková, J. Timko, and J. Berko, "Speed sensorless control of an induction motor drive using extended Kalman filter," Acta Technica CSAV (Ceskoslovenska Akademie Ved), vol. 50, no. 3, pp. 279-289, 2005. ISSN 0001-7043.