Comparison of Different Offline MTPA Trajectory Estimation Methods

Avtorji

Jernej Černelič
Univerza v Mariboru, Fakulteta za elektrotehniko, računalništvo in informatiko
https://orcid.org/0000-0002-0401-371X
Martin Petrun
Univerza v Mariboru, Fakulteta za elektrotehniko, računalništvo in informatiko
https://orcid.org/0000-0001-9134-5802

Kratka vsebina

The main goal of this paper was to analyse and compare different offline Maximum-Torque Per Ampere (MTPA) trajectory estimation methods for Interior Permanent Magnet Synchronous Machines (IPMSMs). The analysis was performed based on Finite Element Analysis (FEA) data of IPMSMs. The obtained results show that despite neglecting all the non-linearities, the analytical MTPA trajectory calculation with constant IPMSM parameters can model the MTPA trajectory with adequately small difference when compared to optimization-based calculation. Consequently, the MTPA trajectory calculation was further simplified with a piece-wise linear approximation of the trajectory, resulting in simpler MTPA reference calculation within the controller and adequately small deviations from optimal MTPA operating points.

Biografije avtorja

Jernej Černelič, Univerza v Mariboru, Fakulteta za elektrotehniko, računalništvo in informatiko

Maribor, Slovenija. E-pošta: jernej.cernelic@um.si

Martin Petrun, Univerza v Mariboru, Fakulteta za elektrotehniko, računalništvo in informatiko

Izr. Prof. Dr. Martin Petrun je diplomiral (2010) in doktoriral (2014) iz elektrotehnike na Univerzi v Mariboru, Maribor, Slovenija. Trenutno je zaposlen kot raziskovalec in izredni profesor na Univerzi v Mariboru. Njegovi trenutni raziskovalni interesi vključujejo modeliranje dinamičnih pojavov v mehkih magnetnih materialih ter modeliranje in nadzor električnih in elektromehanskih pretvornikov ter energetske elektronike.

Maribor, Slovenija. E-pošta: martin.petrun@um.si

Prenosi

Izdano

14.05.2025

Kako citirati

Comparison of Different Offline MTPA Trajectory Estimation Methods. (2025). In XXVIII. Symposium Electromagnetic Phenomena in Nonlinear Circuits (EPNC 2024): Conference Proceedings (pp. 301-306). Univerzitetna založba Univerze v Mariboru. https://press.um.si/index.php/ump/catalog/book/963/chapter/497