Frequency Response Comparison of PI-Based FOC and Cascade-Free MPC using 1 kHz SVM Applied to PMSM drive

G. H. Negri, A. Bartsch, M. S. M. Cavalca, A. Nied
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Abstract

Abstract— This paper presents a 1 kHz SVM-FOC (Space Vector Modulation with Field Oriented Control) drive system for a Permanent Magnet Synchronous Motor, using different control strategies. Such strategies are internal model and frequency response designed PI (Proportional and Integral) controllers and a multivariable MPC (Model Predictive Control) controller using a state-space prediction model. This MPC method becomes interesting for improving the closed-loop speed frequency response, since it results in a cascade-free controller. The performance of each controller was evaluated in a qualitative manner through simulations and quantitatively by load torque and speed reference AC sweeps, generating dynamic stiffness curves and Bode diagrams for the utilized techniques. Results show that the MPC approach is useful for enabling fast dynamic responses with the reduced switching frequency, which reduces the drive system cost and improves its efficiency.
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应用于永磁同步电机驱动器的基于pi的FOC与基于1khz支持向量机的无级联MPC频率响应比较
摘要:提出了一种采用不同控制策略的1khz空间矢量调制磁场定向控制(SVM-FOC)永磁同步电机驱动系统。这些策略是内部模型和频率响应设计的PI(比例和积分)控制器和使用状态空间预测模型的多变量MPC(模型预测控制)控制器。这种MPC方法对于改善闭环速度频率响应变得有趣,因为它产生了无级联控制器。每个控制器的性能通过仿真定性评估,并通过负载扭矩和速度参考交流扫描定量评估,为所利用的技术生成动态刚度曲线和博德图。结果表明,MPC方法可以在降低开关频率的情况下实现快速动态响应,从而降低了驱动系统的成本,提高了驱动系统的效率。
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