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Iron Loss and Efficiency Analysis of Interior PM Machines for Electric Vehicle Applications

机译:电动汽车内部永磁电机的铁损和效率分析

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摘要

An interior permanent magnet (IPM) machine with ∇+U shape rotor topology is proposed for electric vehicle applications whose iron loss and efficiency are compared to that of typical V shape and ∇ shape machines. The air-gap flux density, flux-density waveform, and its harmonics on stator core and rotor core are analyzed. It can be obtained that ∇+U shape rotor topology has the lowest total harmonic distortion. The torque ripple, core loss, core loss density, PM eddy-current loss, d- and q-axis inductances, saliency ratio, characteristic current, and efficiency of three IPM machines are analyzed and compared. It is demonstrated that the efficiency of ∇+U shape IPM machine is higher than V shape and ∇ shape machines, particularly under high-speed operation, because the iron loss of the ∇+U shape machine is the lowest. With the increase of PM layer, the PM eddy-current loss is increased, PM segmentation can effectively reduce the PM eddy-current loss. Finally, the ∇+U shape IPM machine is prototyped to verify the results of the finite element analysis.
机译:提出了一种具有∇+ U形转子拓扑的内部永磁体(IPM)机器,用于电动汽车应用,其铁损和效率与典型的V形和∇形机器相比。分析了气隙磁通密度,磁通密度波形及其在定子铁心和转子铁心上的谐波。可以得出∇+ U形转子拓扑的总谐波失真最低。分析并比较了三台IPM电机的转矩脉动,磁芯损耗,磁芯损耗密度,PM涡流损耗,d轴和q轴电感,凸度比,特征电流和效率。结果表明,∇+ U形IPM机的效率要高于V形和∇形机,尤其是在高速运行时,因为∇+ U形机的铁损最低。随着PM层的增加,PM涡流损耗增加,PM分段可以有效减少PM涡流损耗。最后,对∇+ U形IPM机进行原型设计,以验证有限元分析的结果。

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