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Influence of machine topology and cross-coupling magnetic saturation on rotor position estimation accuracy in extended back-EMF based sensorless PM brushless AC drives

机译:基于扩展反电动势的无传感器永磁无刷交流驱动器中电机拓扑和交叉耦合磁饱和对转子位置估计精度的影响

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摘要

The influence of the machine topology and dq-axis cross-coupling on the rotor position estimation error in an extended back-EMF based sensorless brushless AC drive is investigated by both finite element analysis and experimentally on four brushless AC machines having different rotor topologies, viz. interior circumferentially magnetized, interior radially magnetized, surface-mounted, and inset magnets. The d- and q- axis apparent self- and mutual-inductances, Ld, Lq, Ldq and Lqd, are predicted by finite element analysis for various d- and q-axis currents. The error in the estimated rotor position of the four machines is investigated and compared when (a) the influence of magnetic saturation is neglected, (b) only the influence of the dq-axis current on Lq is considered, but dq-axis cross-coupling magnetic saturation is neglected, and (c) the influence of dq-axis cross-coupling magnetic saturation is taken into account. It is shown that the error is more strongly influenced by the q-axis current/permeance than the dq-axis current/permeance, since the dq-axis current does not distort the symmetrical field distribution about the q-axis, and that dq-axis cross-coupling magnetic saturation can significantly affect the accuracy of the rotor position estimation. However, by introducing an apparent mutual winding inductance in the extended back-EMF based sensorless method, the error in all four machines under consideration is reduced significantly, to a similar level to that which results with surface-mounted magnet machines.
机译:通过有限元分析和在具有不同转子拓扑的四台无刷交流电机上进行实验,研究了电机拓扑和dq轴交叉耦合对基于扩展的基于反电动势的无传感器无刷交流驱动器中转子位置估计误差的影响。 。内部圆周磁化,内部径向磁化,表面安装和嵌入式磁铁。 d轴和q轴的自感和互感Ld,Lq,Ldq和Lqd通过各种d轴和q轴电流的有限元分析来预测。当(a)忽略了磁饱和的影响,(b)仅考虑dq轴电流对Lq的影响,而dq轴交叉时,研究并比较了这四台电机的估计转子位置中的误差。忽略了耦合磁饱和,并且(c)考虑了dq轴交叉耦合磁饱和的影响。结果表明,由于dq轴电流不会扭曲围绕q轴的对称场分布,因此误差受到dq轴电流/磁导的影响比受q轴电流/磁导的影响更大。轴交叉耦合磁饱和会严重影响转子位置估计的准确性。但是,通过在基于扩展的基于反电动势的无传感器方法中引入明显的互感绕组电感,可以将所考虑的所有四台机器中的误差显着降低至与表面安装磁体机器所产生的相似水平。

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