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Sensorless vector control for PM brushless motors with nonsinusoidal back-EMF

机译:具有非正弦反电动势的PM无刷电机的无传感器矢量控制

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This paper presents a new approach for sen-sorless vector control of surface-mounted permanent magnet brushless motors with nonsinusoidal back electromotive force (EMF). This approach uses a new motor dynamic model expressed in a synchronous reference frame with back-EMF vectors. The back-EMFs required for the frame transformations and for the rotor speed estimation are estimated online from a reduced-order state observer. In addition, a hybrid orientation is performed using variable cutoff frequency filters to select the back-EMF harmonic components that compose the synchronous reference frame. Hence, harmonic currents can be effectively reduce at high speed decreasing iron losses. Moreover, it is shown that the electromagnetic torque under nonsinusoidal orientation is proportional to the q-axis stator current. As a result, the torque ripple can be easily minimized even with highly nonsinusoidal back-EMF. The good performance of the proposed approach for speed and current control is demonstrated by simulation and experimental results.
机译:本文提出了一种具有非正弦反电动势(EMF)的表面安装式永磁无刷电动机的无传感器矢量控制新方法。该方法使用在带有反向电动势矢量的同步参考系中表达的新电动机动态模型。帧转换和转子速度估计所需的反电动势是从降阶状态观察器在线估计的。另外,使用可变截止频率滤波器执行混合定向,以选择组成同步参考帧的反电动势谐波分量。因此,可以高速有效地减小谐波电流,从而减少铁损。此外,还显示出非正弦取向下的电磁转矩与q轴定子电流成正比。结果,即使使用高度非正弦的反电动势,也可以轻松地使转矩波动最小化。仿真和实验结果证明了该方法在速度和电流控制方面的良好性能。

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