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Development of Double Closed-loop Vector Control Using Model Predictive Control for Permanent Magnet Synchronous Motor

机译:使用模型预测控制对永磁同步电动机模型预测控制的双闭环矢量控制的研制

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摘要

Vector control has been widely used to manipulate the permanent magnet synchronous motor (PMSM), in which the traditional double proportional integral (PI) controllers have commonly been utilized. However, it is difficult to set the suitable parameters of PI and maintain the PMSM performance under the different operating regimes. In order to solve these problems, a double closed-loop model predictive control (MPC) strategy based on the vector control has been presented for PMSM in this paper. Firstly, a simplified discrete model of PMSM is established in the d-q coordinate system without considering the interference. Then, the MPC is developed to substitute the PI controller in the speed-loop and the q-axis current-loop, respectively, and a double closed-loop MPC control system is formed. Finally, some case studies are carried out. The simulation and experimental results demonstrate that the presented MPC strategy improves the dynamic and steady-state performance of PMSM.
机译:矢量控制在永磁同步电动机(PMSM)的控制中得到了广泛的应用,传统的双比例积分(PI)控制器被广泛使用。然而,在不同的运行模式下,很难设置合适的PI参数,维持永磁同步电机的性能。为了解决这些问题,本文提出了一种基于矢量控制的永磁同步电机双闭环模型预测控制策略。首先,在不考虑干扰的情况下,在d-q坐标系下建立了简化的永磁同步电机离散模型。然后,在速度环和q轴电流环中分别用MPC代替PI控制器,构成了双闭环MPC控制系统。最后,进行了一些案例研究。仿真和实验结果表明,所提出的多点控制策略改善了永磁同步电机的动态和稳态性能。

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