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Analytic Optimization of the Halbach Array Slotless Motor Considering Stator Yoke Saturation

机译:考虑定子轭饱和度的Halbach阵列无光水电机的分析优化

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Hybrid subdomain analysis is utilized to optimize the design of a high-speed compressor motor. Permanent magnets (PMs) are arranged in Halbach array and bounded by a carbon fiber sleeve. The stator core does not have a slot structure, so that it is advantageous in reducing the iron loss. Since the core saturation takes place, magnetic equivalent circuit (MEC) is used to find the permeability depending on the flux density of stator yoke. Furthermore, since the core is not infinitely permeable in the subdomain analysis, the solution is obtained in the whole subdomain regions: shaft, PM, air gap, coil, and stator yoke. The results of hybrid analysis are compared with those of finite-element analysis (FEA). Very close matching results are obtained in the flux density and torque even under yoke saturation. The stator yoke height is optimized against the rotor outer radius so that torque, power density, and efficiency are maximized, while stator outer radius, stack length, and coil area are fixed.
机译:混合子域分析用于优化高速压缩机电机的设计。永磁体(PMS)布置在Halbach阵列中并由碳纤维套筒界定。定子芯不具有槽结构,使得在降低铁损时是有利的。由于核心饱和度发生,因此磁性等效电路(MEC)用于根据定子轭的磁通密度来找到渗透率。此外,由于核心在子域分析中没有无限渗透,因此在整个子域区域获得解决方案:轴,PM,气隙,线圈和定子轭。将杂交分析结果与有限元分析(FEA)进行比较。即使在轭饱和度下,在磁通密度和扭矩中获得非常紧密的匹配结果。定子轭高度针对转子外半径优化,从而最大化扭矩,功率密度和效率,而定子外半径,堆叠长度和线圈区域是固定的。

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