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Investigation of Enhancing Reluctance Torque of a Delta-Type Variable Flux Memory Motor Having Large Flux Barrier for EV/HEV Traction

机译:电动势/混合动力电动汽车牵引力较大的三角型可变磁通记忆电动机的磁阻转矩研究

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Delta-type permanent magnet (PM) arrangement and extended flux barriers are very effective in improving magnetization characteristics of variable flux memory motors (VFMMs). However, the reluctance torque tends to be declined because of small q-axis inductance. Therefore, a conventional VFMM using above two methods needs larger load current for achieving required maximum torque than that of a target traction motor which is mounted in TOYOTA PRIUS 4th generation. Hence, this paper proposes rotor shape that can increase the reluctance torque in order to achieve required maximum torque by applying same load current as that of the target motor. Finally, the proposed VFMM whose reluctance torque is improved can generate the target maximum torque with smaller load current than that of the conventional VFMM. In addition, the proposed VFMM has smaller maximum magnetizing current compared to that of the conventional model, and the proposed VFMM also indicates higher efficiency than that of the target traction motor in high speed region.
机译:Delta型永磁体(PM)布置和延伸的磁通屏障在改善可变磁通存储器电动机(VFMMS)的磁化特性方面非常有效。然而,由于Q轴电感小,磁阻扭矩趋于下降。因此,使用上述两种方法的传统VFMM需要更大的负载电流来实现比安装在丰田普锐斯4中的目标牵引电动机的最大扭矩 th 一代。因此,本文提出了可以增加磁阻扭矩的转子形状,以便通过将所需的最大扭矩施加与目标电动机的负载电流相同的负载电流来实现所需的最大扭矩。最后,提高其磁阻扭矩的所提出的VFMM可以产生比传统VFMM更小的负载电流的目标最大扭矩。另外,与传统模型相比,所提出的VFMM具有较小的最大磁化电流,并且所提出的VFMM还表明高速度区域中的目标牵引电动机的效率更高。

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