Analytical Determination of the Cogging Torque in Brushless Motors Excited by Permanent Magnets

J. Steinbrink
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引用次数: 12

Abstract

This paper presents an analytical method how to calculate electromagnetic forces acting in brushless motors excited by permanent magnets. The analytical method is based on the rotating field theory. The flux density, the electric loading - as a substitution of the magnetisation - and the air gap permeance are considered as infinite sums of spatial harmonics. The spatial harmonics of the flux density in the air gap are calculated by use of the conformal mapping of the air gap geometry from the magnetic scalar potential. Each spatial harmonic is characterised by its amplitude, number of pole pairs, frequency and phase angle. The interaction of two different spatial harmonics opens the possibility to recognise the generation of cogging torques systematically and to assess counter measures how to minimise undesirable effects. Thus, time consuming numerical studies by FE method can be avoided, or their number can at least be reduced. The validity of the analytical calculation method was verified by experimental investigations in several test motors. Special attention was paid to the influence of manufacturing tolerances which play the dominant role in the generation of cogging torques in motors with a design that is already optimised in order to achieve small cogging torques. The correlation between the analytical and the numerical results is outstanding, even though the analytical approach reduces the computation time by a factor more then 1000.
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永磁励磁无刷电机齿槽转矩的解析测定
本文提出了一种计算永磁体励磁无刷电机电磁力的解析方法。分析方法基于旋转场理论。磁通密度、电负荷(代替磁化)和气隙磁导率被认为是空间谐波的无限和。利用磁标量势对气隙几何形状的保角映射,计算了气隙中磁密度的空间谐波。每个空间谐波由其振幅、极对数、频率和相位角表征。两种不同空间谐波的相互作用为系统地识别齿槽扭矩的产生以及评估如何将不良影响最小化的对策提供了可能性。这样就可以避免用有限元法进行耗时的数值研究,或者至少可以减少它们的数量。通过对多台试验电机的实验研究,验证了分析计算方法的有效性。特别注意了制造公差的影响,这些公差在电机齿槽扭矩的产生中起着主导作用,设计已经过优化,以实现小齿槽扭矩。尽管解析方法将计算时间减少了1000倍以上,但解析结果与数值结果之间的相关性是突出的。
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