Three-Vector Model of Predictive Current Control of Permanent Magnet Synchronous Motor Using TOPSIS Approach for Optimal Vector Selection

Zhengyu Xue, Rixin Gao, Z. Pu, Chidong Qiu
2025-07-17

SCID:  54.1/yf2fx8vg
Model predictive control (MPC) has become a popular method in motor control due to its high adaptability to multivariate control. However, one issue for this control system is constructing a reasonable cost function (CF) and obtaining appropriate weighting factors (WFs) within it. This paper addresses the issue of effectively reducing torque ripple and current harmonic content in permanent magnet synchronous motors (PMSM). Within the three-vector model predictive current control (TV-MPCC) strategy for PMSM, a new CF including current error and switching frequency terms is constructed. Combined with the technique for order preference by similarity to ideal solution (TOPSIS), the optimal control vector is obtained. Compared with traditional methods, this method reduces the complexity of adjusting WFs in the CF. Simulation results show that the motor’s torque ripple and current harmonic content are effectively reduced. Both the steady state and dynamic performance of the PMSM are also improved by means of the proposed multi-objective MPC for current error and switching frequency.
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2025-07-17
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Zhengyu Xue
Rixin Gao
Z. Pu
Chidong Qiu
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