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Robust Cascaded Nonlinear Predictive Control of a Permanent Magnet Synchronous Motor With Antiwindup Compensator

机译:带有抗饱和补偿器的永磁同步电动机的鲁棒级联非线性预测控制

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摘要

A nonlinear predictive control (NPC) scheme in a cascaded structure for a permanent magnet synchronous motor drive is proposed. Taylor series expansion is used to predict the system response over a finite horizon. As NPC cannot remove completely the steady-state error in the presence of mismatched parameters and external perturbation, a disturbance observer is used to estimate the offset caused by parametric uncertainties and the load torque variation. In addition, input constraints (restrictions on the magnitude) are considered in the synthesis of the disturbance observer, resulting in an equivalent cascaded proportional integral action with an antiwindup compensator. The validity of the proposed controller was tested via simulation and experiment. Excellent results were obtained with respect to the speed trajectory tracking, stability, and disturbance rejection.
机译:提出了一种永磁同步电动机驱动器级联结构的非线性预测控制方案。泰勒级数展开用于预测有限范围内的系统响应。由于NPC在参数不匹配和外部扰动的情况下无法完全消除稳态误差,因此使用扰动观测器来估算由参数不确定性和负载转矩变化引起的偏移。此外,在扰动观测器的综合中考虑了输入约束(对大小的约束),从而产生了具有抗饱和补偿器的等效级联比例积分作用。通过仿真和实验测试了所提出控制器的有效性。在速度轨迹跟踪,稳定性和干扰抑制方面获得了极好的结果。

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