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Optimization of PM-Assisted Synchronous Reluctance Motor with Asymmetric Rotor

机译:具有不对称转子PM辅助同步磁阻电动机的优化

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摘要

The permanent magnet assisted synchronous reluctance motor (PMA-SynRM) with the asymmetric rotor design can effectively improve the utilization of magnetic torque and reluctance torque, thus to improve the torque density. However, it also brings about problems of cogging torque and excessive torque ripple. In order to solve this problem of excessive torque ripple, the torque ripple is suppressed from two aspects of the motor structure and control methods. In terms of motor structure, opening the auxiliary slot and changing the pole and slot combinations with different winding methods. In control methods, the torque ripple is suppressed by analyzing the torque harmonic components and injecting the specified harmonic current. Then, with the aid of finite element method (FEM), the influence of three methods on the torque characteristics and performance of the PMA-SynRM with asymmetric rotor structure is analyzed. The results show that the three methods can effectively suppress the torque ripple, and the 27-slot stator with distributed windings structure can effectively suppress the cogging torque and torque ripple of this kind of motor under the premise of ensuring the full use of the torque component. This work can better enhance the flux focusing characteristics of the asymmetric rotor structure, laying a foundation for the application of the asymmetric rotor PMA-SynRM in more fields.
机译:具有非对称转子设计的永磁辅助同步磁阻电动机(PMA-Synrm)可以有效地改善磁扭矩和磁阻扭矩的利用,从而提高扭矩密度。然而,它还带来了齿槽扭矩和过度扭矩波动的问题。为了解决过多的扭矩脉动的问题,从电动机结构和控制方法的两个方面抑制了扭矩脉动。就电机结构而言,打开辅助槽并用不同的绕组方法改变杆和槽组合。在控制方法中,通过分析扭矩谐波分量并注入指定的谐波电流来抑制扭矩脉动。然后,借助有限元方法(FEM),分析了三种方法对具有不对称转子结构的PMA-SYNRM的扭矩特性和性能的影响。结果表明,三种方法可以有效地抑制扭矩纹波,并且在确保充分利用扭矩部件的前提下,具有分布式绕组结构的27槽定子可以有效地抑制这种电动机的齿槽扭矩和扭矩脉动。这项工作可以更好地提高不对称转子结构的磁通聚焦特性,为更多领域应用不对称转子PMA-SYNRM奠定了基础。

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