Cogging torque fast computation method for Surface Permanent Magnet machines based on winding function theory

L. Branz, M. Bortolozzi, A. Tessarolo
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引用次数: 5

Abstract

Various analytical techniques have been proposed in the literature for cogging torque computation in Surface Permanent Magnet (SPM) machines. Among the various available methods, the ones found to be satisfactorily accurate are based on the Maxwell's stress tensor, which involves both normal and tangential air-gap field and lead to quite involved calculation formulas. In this paper, a relatively simple alternative is proposed where permanent magnets are modeled as equivalent field circuits to which a well defined winding function can be associated. The approach leads to a plain cogging torque formulation where only the normal no-load air-gap flux density appears. The accuracy of the method is assessed by Finite Element (FE) analysis on some sample SPM machine geometries. The results are shown to match FE simulations with a satisfactory accuracy compared to Maxwell-stress-tensor-based analytical techniques available from the literature.
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基于绕组函数理论的表面永磁电机齿槽转矩快速计算方法
文献中提出了各种分析方法来计算表面永磁电机的齿槽转矩。在现有的各种方法中,精度较好的是基于麦克斯韦应力张量的方法,该方法涉及法向和切向气隙场,计算公式比较复杂。在本文中,提出了一个相对简单的替代方案,其中永磁体被建模为等效场电路,其中可以关联一个定义良好的绕组函数。这种方法导致了一个简单的齿槽转矩公式,其中只有正常的空载气隙磁通密度出现。通过对一些SPM机床的几何形状进行有限元分析,验证了该方法的精度。结果表明,与文献中基于麦克斯韦应力张量的分析技术相比,有限元模拟具有令人满意的精度。
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