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Design of a novel rotor structure for PM-assisted synchronous reluctance machines to improve torque characteristics

机译:用于永磁辅助磁阻电机的新型转子结构设计,以改善转矩特性

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摘要

This paper proposes a novel rotor structure for PM-assisted synchronous reluctance machines (PMA-SynRMs) to improve torque characteristics. As opposed to the conventional designs, the proposed rotor structure for the PMA-SynRMs is designed to improve the torque by making the magnetic torque and reluctance torque obtain the maximum at the same current phase angle. To reveal this feature, the frozen permeability method is utilized to segregate the torque into its two torque components, based on a 2-D finite element method. The contribution of the proposed rotor to the machine performance is validated by comparing to a conventional PMA-SynRMs.
机译:本文提出了一种用于永磁辅助同步磁阻电机(PMA-SynRMs)的新型转子结构,以改善转矩特性。与常规设计相反,提出的用于PMA-SynRM的转子结构设计为通过使磁转矩和磁阻转矩在相同电流相位角下达到最大值来改善转矩。为了揭示该特征,基于2-D有限元方法,利用冻结磁导率法将扭矩分离为两个扭矩分量。通过与常规PMA-SynRM进行比较,可以验证所提出的转子对机器性能的贡献。

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