摘要
Compared with the traditional three-phase star connection winding,the open-end winding permanent magnet synchronous motor(OW-PMSM)system with a common direct current(DC)bus has a zero-sequence circuit,which makes the common-mode voltage and the back electromotive force(EMF)harmonic generated by the inverters produce the zero-sequence current in the zero-sequence circuit,and the zero-sequence current has great influence on the operation efficiency and stability of the motor control system.A zero-sequence current suppression strategy is presented based on model predictive current control for OW-PMSM.Through the mathematical model of OW-PMSM to establish the predictive model and the zero-sequence circuit model,the common-mode voltage under different voltage vector combinations is fully considered during vector selection and action time calculation.Then zero-sequence loop constraints are established,so as to suppress the zero-sequence current.In the end,the control strategy proposed in this paper is verified by simulation experiments.
作者
LIU Huashan
LI Jie
YAO Fei
刘华山;李杰;姚飞(College of Information Science and Technology, Donghua University, Shanghai 201620, China;Engineering Research Center of Digitized Textile & Apparel Technology, Ministry of Education, Shanghai 201620, China)
基金
Fundamental Research Funds for the Central Universities,China(No.2232019D3-53)
Initial Research Funds for Young Teachers of Donghua University,China(104070053029)
Shanghai Rising-Star Program,China(No.19QA1400400)。