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Reduction of torque ripple in double-layered IPMSM for automotive applications by rotor structure modification

机译:通过转子结构改造减少双层IPMSM中的扭矩脉动,用于汽车应用

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Interior permanent magnet synchronous motors (IPMSMs) are currently widely utilized as traction motors. The objective of this study is to reduce the torque ripples in advanced IPMSMs, which cause vibrations and noise, by modifying the rotor structure. First, holes were drilled in the rotor of a double-layered IPMSM, which the authors previously proposed, and their influence on torque ripple was evaluated. Then, dents were formed in the surface of the modified IPMSM rotor, and their effect on torque ripple was evaluated. The torque ripples of the modified IPMSMs are lower than those of the reference model under maximum torque per ampere control and in other current phase angle regions. In addition, at low current, the proposed models reduced the torque ripple from that of the reference model over the entire current phase angle region.
机译:内部永磁同步电动机(IPMSMS)目前广泛利用作为牵引电动机。本研究的目的是通过修改转子结构来减少先进IPMSMS中的扭矩涟漪,这导致振动和噪声。首先,评估了先前提出的作者的双层IPMSM的转子中钻孔,并评估其对扭矩脉动的影响的双层IPMSM的转子。然后,在改进的IPMSM转子的表面中形成凹痕,并评估它们对扭矩脉动的影响。修改的IPMSM的扭矩旋转幅度低于在每个安培控制和其他电流相角区域的最大扭矩下的参考模型的扭矩涟漪。另外,在低电流下,所提出的模型在整个电流相角区域上从参考模型的扭矩脉动降低。

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