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Comparison of three analytical methods for the precise calculation of cogging torque and torque ripple in axial flux PM machines

机译:轴向磁通永磁电机齿槽转矩和转矩脉动精确计算的三种分析方法比较

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摘要

A comparison between different analytical and finite-element (FE) tools for the computation of cogging torque and torque ripple in axial flux permanent-magnet synchronous machines is made. 2D and 3D FE models are the most accurate for the computation of cogging torque and torque ripple. However, they are too time consuming to be used for optimization studies. Therefore, analytical tools are also used to obtain the cogging torque and torque ripple. In this paper, three types of analytical models are considered. They are all based on dividing the machine into many slices in the radial direction. One model computes the lateral force based on the magnetic field distribution in the air gap area. Another model is based on conformal mapping and uses complex Schwarz Christoffel (SC) transformations. The last model is based on the subdomain technique, which divides the studied geometry into a number of separate domains. The different types of models are compared for different slot openings and permanent-magnet widths. One of the main conclusions is that the subdomain model is best suited to compute the cogging torque and torque ripple with a much higher accuracy than the SC model.
机译:对轴向磁通永磁同步电机中齿槽转矩和转矩脉动的不同分析工具和有限元工具进行了比较。 2D和3D FE模型对于齿槽转矩和转矩脉动的计算是最准确的。但是,它们太耗时,无法用于优化研究。因此,分析工具也可用于获得齿槽转矩和转矩波动。本文考虑了三种类型的分析模型。它们都是基于将机器在径向方向上分成许多片。一种模型基于气隙区域中的磁场分布来计算侧向力。另一个模型基于共形映射,并使用复杂的Schwarz Christoffel(SC)转换。最后一个模型基于子域技术,该子域技术将研究的几何图形划分为多个单独的域。针对不同的插槽开口和永磁体宽度比较了不同类型的模型。主要结论之一是,子域模型最适合于以比SC模型更高的精度来计算齿槽转矩和转矩脉动。

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