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Design Optimization of Interior Double-Radial Synthetic Magnetic Field Permanent Magnet Generator for Electric Vehicle

机译:电动汽车内饰双径向合成磁场永磁发电机的设计优化

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The Interior double-radial permanent magnent generator (IDRPMG) which composed by two groups of rectangular permanent magnets to provide parallel magnetic circuits of the rator and the sator core with less eddy current loss, low hormonic content and low cogging torque of the stator with fractional slot winding is developed. It has the advantages of remarkable magnetism gathering effect, strong magnetic field intensity and high space utilization. Combining Taguchi method and finite element method, the relevant parameters of the permanent magnet size and the angle between the first and second rectangle permanent magnets in rotor are optimized to get better the distortion rate of output voltage waveform, lower cogging torque and higer peak value of airgap flux density. Then finite element simulation is taken for the best optimization scheme through comparative analysis of the machine by before and after optimization. It showed that each performance index is improved after optimization. Finally, the prototype is manufactured, according to the optimization parameters and some experiments are conducted, which results verify the analys is preview well.
机译:内部双径向永磁发电机(IDRPMG),由两组矩形永磁体组成,以提供定子和定子铁芯的并联磁路,涡流损耗较小,激素含量低,定子的齿槽转矩小开槽绕组的发展。具有集磁效果显着,磁场强度强,空间利用率高的优点。结合Taguchi方法和有限元方法,优化了转子中永磁体尺寸和第一,第二矩形永磁体之间的夹角的相关参数,以获得更好的输出电压波形失真率,更低的齿槽转矩和更高的峰值。气隙通量密度。然后,通过对机器优化前后的对比分析,将有限元仿真用于最佳优化方案。结果表明,优化后各项性能指标均得到改善。最后,根据优化参数制造了样机,并进行了一些实验,结果验证了分析的正确性。

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