TY - JOUR
T1 - An Improved Model Predictive Torque Control for Switched Reluctance Motors With Candidate Voltage Vectors Optimization
AU - Ding, Wen
AU - Li, Jialing
AU - Yuan, Jiangnan
N1 - Publisher Copyright:
© 1982-2012 IEEE.
PY - 2023/5/1
Y1 - 2023/5/1
N2 - This article proposes an improved model predictive torque control (MPTC) strategy for switched reluctance motor (SRM) drives with candidate voltage vectors (CVVs) optimization, which can suppress the torque ripple effectively and enhance the system efficiency. This MPTC method is improved by three aspects. First, the flux linkage calculation is removed compared to conventional MPTC. Second, the electric cycle of SRM is divided into six sectors based on the ideal torque contribution profile and the commutation region of the motor is redefined. Finally, CVVs of each sector are adopted based on phase torque characteristics and the total number of CVVs is reduced to 2 or 3 at each control period. The cost function is designed for the torque ripple suppression and copper loss minimization by selecting the optimal voltage vector from CVVs. This improved MPTC method avoids mass useless computation compared to conventional MPTC and no longer relies on hysteresis control loops compared to direct torque control (DTC) method. In the simulation and experimental verification on a three-phase 12/8 SRM, the proposed MPTC method effectively reduces the torque ripple, improves the torque-ampere ratio and system efficiency, and improves dynamic response compared to DTC method.
AB - This article proposes an improved model predictive torque control (MPTC) strategy for switched reluctance motor (SRM) drives with candidate voltage vectors (CVVs) optimization, which can suppress the torque ripple effectively and enhance the system efficiency. This MPTC method is improved by three aspects. First, the flux linkage calculation is removed compared to conventional MPTC. Second, the electric cycle of SRM is divided into six sectors based on the ideal torque contribution profile and the commutation region of the motor is redefined. Finally, CVVs of each sector are adopted based on phase torque characteristics and the total number of CVVs is reduced to 2 or 3 at each control period. The cost function is designed for the torque ripple suppression and copper loss minimization by selecting the optimal voltage vector from CVVs. This improved MPTC method avoids mass useless computation compared to conventional MPTC and no longer relies on hysteresis control loops compared to direct torque control (DTC) method. In the simulation and experimental verification on a three-phase 12/8 SRM, the proposed MPTC method effectively reduces the torque ripple, improves the torque-ampere ratio and system efficiency, and improves dynamic response compared to DTC method.
KW - Model predictive torque control (MPTC)
KW - switched reluctance motor (SRM)
KW - torque ripple
UR - https://www.scopus.com/pages/publications/85135224022
U2 - 10.1109/TIE.2022.3190895
DO - 10.1109/TIE.2022.3190895
M3 - 文章
AN - SCOPUS:85135224022
SN - 0278-0046
VL - 70
SP - 4595
EP - 4607
JO - IEEE Transactions on Industrial Electronics
JF - IEEE Transactions on Industrial Electronics
IS - 5
ER -