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首页> 外文期刊>IEEE Transactions on Magnetics >A Novel Integral-Force Technique for the Analysis of an Axial-Field Permanent-Magnet Brushless DC Motor Using FE Method
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A Novel Integral-Force Technique for the Analysis of an Axial-Field Permanent-Magnet Brushless DC Motor Using FE Method

机译:有限元法分析轴向磁场永磁无刷直流电动机的新型积分力技术

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摘要

In this paper, a novel integral-force technique to calculate the developed torque of an axial-field permanent-magnet brushless dc (PM BLDC) motor using minimum requirement of two-dimensional (2-D) finite-element (FE) analyses is presented. Using this method, the designer can find out the actual performance of the axial-field PM BLDC motor using 2-D FE analysis rather than a three-dimensional (3-D) FE analysis. The design data of a 70 W, three-phase, 24 V, 6 pole, 350 rpm axial-field PM BLDC motor designed using a developed computer-aided design program have been used to work on the developed torque using the proposed new method as well as using 3-D FE analysis. The peak torque calculated in 3-D FE analysis is 2.2608 Nm as against the 2.2705 Nm obtained from the integral-force technique.
机译:本文采用二维(2-D)有限元(FE)分析的最小要求,计算轴磁场永磁无刷直流(PM BLDC)电动机的发展转矩的新型积分力技术。提出了。使用这种方法,设计人员可以使用2-D FE分析而不是三维(3-D)FE分析来找出轴向磁场PM BLDC电机的实际性能。使用开发的计算机辅助设计程序设计的70 W,三相,24 V,6极,350 rpm轴向磁场PM BLDC电动机的设计数据已用于通过建议的新方法来处理产生的转矩以及使用3-D FE分析。在3-D FE分析中计算出的峰值扭矩为2.2608 Nm,而通过积分力技术获得的峰值扭矩为2.2705 Nm。

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