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Rotor Structure on Reducing Demagnetization of Magnet and Torque Ripple in a PMa-synRM With Ferrite Permanent Magnet

机译:降低铁氧体永磁PMa-synRM中的磁铁退磁和转矩脉动的转子结构

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摘要

A rotor structure of Permanent Magnet (PM)-assisted synchronous Reluctance Machine (PMa-synRM) with ferrite PM is presented in this paper, in which the irreversible demagnetization of PM and torque ripple are reduced. The bypass rib is proposed and added to the flux barrier of the rotor. The path for the demagnetizing field of armature windings is provided and the torque ripple can also be reduced by the bypass rib. Based on the 2-D finite-element analysis (FEA), the location and dimensions of the bypass rib are investigated and improved. A PMa-synRM with the proposed rotor structure is designed and compared with that using a conventional rotor. The field distributions for different currents are studied to explain the principle of the bypass rib. The results show that the PMa-synRM with the proposed rotor achieves higher antidemagnetization ability and lower torque ripple.
机译:提出了带有铁氧体永磁体的永磁(PM)辅助同步磁阻电机(PMa-synRM)的转子结构,减少了永磁体的不可逆退磁和转矩脉动。提出了旁路肋并将其添加到转子的磁通屏障中。提供了用于电枢绕组去磁场的路径,并且通过旁通肋也可以减小转矩波动。基于二维有限元分析(FEA),对旁路肋的位置和尺寸进行了研究和改进。设计了具有建议的转子结构的PMa-synRM,并将其与使用常规转子的PMa-synRM进行了比较。研究了不同电流的场分布,以解释旁路肋的原理。结果表明,所提出的转子的PMa-synRM具有较高的抗退磁能力和较低的转矩脉动。

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