Title
FCS Model Predictive Torque Control with Switching Period Tracking for EV Powertrains
Abstract
Current applications in Electric Vehicle Powertrains require a fixed switching frequency to ensure the life time of commercial inverter semiconductors. Recently the use of Finite Control Set Model Predictive Control in power electronics and electrical drives has been widely reported with interesting theoretical and experimental results. Predictive Torque Control has been performed to drive electric motors with high-performance and fast dynamics. However, the obtained switching frequency spectrum of the inverter is spread over a wide frequency range limited only by the sampling frequency implementation. According with the literature, the switching frequency adjustment has been achieved by combining the predictive algorithm with well-known modulation-based approaches. In this paper an enhanced switching period adjustment is presented to avoid the use of modulators and retain the structure of Finite Control Set Model Predictive Control. Simulation results are presented to validate the performance of the proposed control algorithm.
Year
DOI
Venue
2020
10.1109/ISIE45063.2020.9152260
2020 IEEE 29th International Symposium on Industrial Electronics (ISIE)
Keywords
DocType
ISSN
Model predictive control,finite control set,switching frequency controller,induction motor drives,electric vehicle powertrains
Conference
2163-5137
ISBN
Citations 
PageRank 
978-1-7281-5636-1
0
0.34
References 
Authors
5
5
Name
Order
Citations
PageRank
Christian A. Rojas124418.99
Samir Kouro286583.42
Matias Aguirre300.34
Sergio Vazquez454952.78
Héctor A. Young500.34