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首页> 外文期刊>Magnetics, IEEE Transactions on >3-D–2-D Dynamic Magnetic Modeling of an Axial Flux Permanent Magnet Motor With Soft Magnetic Composites for Hybrid Electric Vehicles
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3-D–2-D Dynamic Magnetic Modeling of an Axial Flux Permanent Magnet Motor With Soft Magnetic Composites for Hybrid Electric Vehicles

机译:混合动力电动汽车用软磁复合材料的轴向磁通永磁电动机的3-D–2-D动态电磁建模

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摘要

Axial flux permanent magnet (AFPM) motors might be an efficient traction solution for hybrid and full electric vehicles. This technology makes the use of soft magnetic composites (SMC) attractive for both manufacturing and performance reasons. Eddy currents in the iron can provide a natural transient damper and/or flux weakener and the iron losses might be compensated by the high torque density of axial structures. The main problematics of magnetic modeling in AFPM motors made with bulk SMC teeth and poles are leakage at the ends, slots effects and finally damping and losses. This paper deals with the material and geometry-dependent magnetic modeling of such a 3-D machine for design purpose considering a maximum a priori effect. Section I begins with the context, state-of-the-art and the geometrical modeling compatible with axial structures. In Section II, the magnetic equivalent circuit (MEC) of the machine is built, then the quasi-static electromagnetic behavior is computed, with time and space harmonics in a steady state. Section III is dedicated to an investigation of magnetic damping and losses, inside lumped parameters, either in a steady state or in a transient state. In Section IV, provided calculations are compared with each other, to the finite element method and to measurements.
机译:轴向通量永磁(AFPM)电动机可能是混合动力和全电动汽车的高效牵引解决方案。由于制造和性能方面的原因,该技术使软磁复合材料(SMC)的使用更具吸引力。铁中的涡流可以提供自然的瞬态阻尼器和/或磁通减弱器,并且铁的损失可能会通过轴向结构的高扭矩密度得到补偿。用散装SMC齿和极制成的AFPM电动机中的磁性建模的主要问题是端部泄漏,槽效应以及最后的阻尼和损耗。本文针对此类3-D机器的材料和几何形状取决于磁性的建模,以达到最大先验效果的设计目的。第一部分从上下文,与轴向结构兼容的最新技术和几何建模开始。在第二部分中,构建了机器的磁等效电路(MEC),然后计算了准静态电磁行为,其中时空谐波处于稳定状态。第三节专门研究稳态或瞬态状态下集总参数内部的磁阻尼和损耗。在第四节中,将提供的计算与有限元方法和测量结果进行了比较。

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