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首页> 外文期刊>Electric Power Components and Systems >A High-performance Speed Feed-forward Controller for Permanent Magnet Synchronous Motor Based on Control System Model
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A High-performance Speed Feed-forward Controller for Permanent Magnet Synchronous Motor Based on Control System Model

机译:基于控制系统模型的高性能永磁同步电动机速度前馈控制器

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摘要

This study proposes a feed-forward controller based on a control system model that can precisely track a reference trajectory by canceling out the effects of parameter uncertainties on a surface-mounted (magnets glued to the shaft surface) permanent magnet synchronous motor. Furthermore, the speed tracking control algorithm demands rapid and accurate q-axis current command, so the feed-forward system based on the control model is used to estimate it. The stability of the proposed controller is mathematically studied. The proposed control scheme is executed on a permanent magnet synchronous motor drive using a Renesas micro-control unit (RX62TADFFM, Japan). Finally, simulation and experimental results are presented to verify that the proposed controller achieves less steady-state error, better robust performance, and faster dynamic response than the proportional-integral controllers in the presence of permanent magnet synchronous motor parameter uncertainties and external load torque disturbance.
机译:这项研究提出了一种基于控制系统模型的前馈控制器,该控制器可以通过消除参数不确定性对表面安装(粘结在轴表面的磁体)永磁同步电动机的影响而精确地跟踪参考轨迹。此外,速度跟踪控制算法需要快速,准确的q轴电流指令,因此使用基于控制模型的前馈系统对其进行估计。数学上研究了所提出控制器的稳定性。所建议的控制方案是使用Renesas微控制单元(日本RX62TADFFM)在永磁同步电动机驱动器上执行的。最后,通过仿真和实验结果验证了所提出的控制器在永磁同步电动机参数不确定性和外部负载转矩扰动存在的情况下,与比例积分控制器相比,具有更低的稳态误差,更好的鲁棒性能和更快的动态响应。 。

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