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Influence of yoke and tooth saturation on the air gap field in Induction Machines: A new analytical approach

机译:磁轭和齿的饱和度对感应电机气隙场的影响:一种新的分析方法

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Saturation effects in the magnetic active iron areas lead to odd air gap harmonics in electrical machines. Whereas the influence of tooth saturation is analytical described by a flattening factor, the impact of yoke saturation is neglected by this factor so far. Finite element analyses are done in order to receive the air gap harmonics. The simulations are performed with high permeability material in the teeth and electrical sheets with real properties in the yokes and vice versa. This is done in order to separate both effects. Afterwards the air gap field of the sample Induction Machines is simulated including saturation effects in all magnetic active iron parts. The numerical simulations are compared with analytical approaches. In order to consider yoke saturation a new analytical approach is developed and validated.
机译:磁性活性铁区域中的饱和效应会导致电机中出现奇数个气隙谐波。牙齿饱和度的影响通过扁平化因子来分析描述,而磁轭饱和度的影响到目前为止被该因子所忽略。为了接收气隙谐波,进行了有限元分析。仿真是用齿中的高磁导率材料和电气片材进行的,磁轭具有真实的特性,反之亦然。这样做是为了分离两种效果。然后,模拟了感应电机样品的气隙场,包括所有磁性活性铁部件的饱和效应。将数值模拟与分析方法进行了比较。为了考虑轭饱和,开发并验证了一种新的分析方法。

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