永磁同步电机驱动幅值模型预测电流控制策略

Zhenrui Zhang, Yancheng Liu, Haohao Guo, Xiaoling Liang, Pengming Yang
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引用次数: 0

摘要

永磁同步电机的有限控制集模型预测电流控制(MPCC)方法是一种简单的控制方法,但由于电压矢量数量有限,电机三相电流中存在较大的电流谐波。针对这一问题,本文提出了一种基于旋转坐标系下电压幅值的幅值模型预测电流控制方法。通过对旋转坐标系下电机电压模型的分析,为成本函数设计了合适的dq轴电压幅值动态范围。根据该范围设计预测模型的幅值动态控制集,并采用迭代法选择最优解。最优矢量是根据转子的实际位置和最优幅值合成的,因此相位误差较小。并且动态幅度范围可以减小幅度误差,从而显著抑制电流纹波和预测误差。同时,三角形函数在迭代计算中的回避使得算法的计算复杂度降低。最后,通过建立实验验证,证明该方法有效地降低了电机的电流谐波,提高了电机的稳态性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amplitude Model Predictive Current Control Strategy for Permanent Magnet Synchronous Motor Drives
The finite control set model predictive current control (MPCC) method for permanent magnet synchronous motor (PMSM) is a simple control method but there are high current harmonics in the motor's three-phase current because of the limited number of voltage vectors. For this problem, a new amplitude model predictive current control (AMPCC) method based on the voltage amplitude in rotating coordinate reference system is proposed in this paper. By analyzing the motor's voltage model under rotating coordinate reference system, a suitable dynamic range of dq-axis voltage amplitude is designed for cost function. According to this range, the amplitude dynamic control set of prediction model is designed, and the optimal solution is selected by iterative method. The optimal vector is synthesized based on the real rotor position and optimal amplitude, so phase error of it is relatively small. And the dynamic amplitude range can reduce amplitude error, and thus a significant suppression of current ripple and prediction error. Meanwhile, the triangular function's avoidance in iterative calculation makes the algorithm compute less complex. Finally, this method is proved that it effectively reduces the current harmonics of the motor and improves the steady-state performance by building experimental verification.
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