Loss Analysis of Magnetic Gear with Slotted in Magnetic Modulation Ring

Can Tan;Wei Liu;Yingying Rao;Weizhao Tang;Libing Jing
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Abstract

In order to improve the operation efficiency of coaxial magnetic gear (CMG), in this paper, a CMG model with slotted in magnetic modulation ring is proposed. In this model, the permanent magnets (PMs) of internal and external rotors are distributed in Halbach array, the inner rotor PMs are equally divided into 3 small pieces, and the outer rotor PMs are equally divided into 2 small pieces. At the same time, the static magnetic modulation ring iron blocks are slotted, each iron block has 3 slots, the width of the slot is 0.4°, and the depth of the single side slot is 1mm. Finally, a two-dimensional model is established, and the eddy current loss and iron loss of the model are optimized, compared with the conventional CMG model, it is found that the changed pattern can increase the internal and external output torque by 4% and 4.12%, respectively. The eddy current loss is reduced by 66.57%, and the iron loss is reduced by 8.9%, which significantly improve the operation efficiency of the CMG.
磁调制环开槽磁齿轮的损耗分析
为了提高同轴磁齿轮(CMG)的工作效率,本文提出了一种带开槽磁调制环的CMG模型。在该模型中,内外转子的永磁体以Halbach阵列分布,内转子永磁体等分为3个小块,外转子永磁体平分为2个小块。同时,静磁调制环铁块开槽,每个铁块有3个槽,槽的宽度为0.4°,单面槽的深度为1mm。最后,建立了二维模型,并对模型的涡流损耗和铁损进行了优化,与传统的CMG模型相比,发现改变的模式可以分别使内部和外部输出转矩增加4%和4.12%。涡流损耗降低了66.57%,铁损降低了8.9%,显著提高了CMG的运行效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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