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A finite element post-processing for skew effects in brushless doubly-fed induction machines

机译:无刷双馈感应电机中偏斜效应的有限元后处理

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Brushless doubly-fed induction machines have great potential as variable-speed generators in wind turbines. Undesired space harmonics exist because the special rotor needs to couple both stator windings which with different pole-pair numbers and different frequencies. These undesired space harmonics lead to a bigger torque ripple compared with conventional induction machines. Previously, a 2D multi-slice finite element (FE) method was applied to study the effects of rotor skew on torque responses in brushless DFIMs. It results in a significant computing time because several 2D FE slices are coupled and calculated simultaneously in one model. It is not efficient to use such a model to predict how much average torques and torque ripples would be reduced by applying skewed slots at the beginning of design. This paper makes use of normal 2D FEM results and applies skew factors in post-processing to investigate the influence of rotor skew on the torque responses. The proposed method can give an approximate prediction of skew effects on torque responses with limited computing time.
机译:无刷双馈感应电机作为风力涡轮机中的变速发电机具有巨大的潜力。存在不希望的空间谐波,因为特殊转子需要耦合两个具有不同极对数和不同频率的定子绕组。与传统的感应电机相比,这些不希望的空间谐波会导致更大的转矩波动。以前,二维多层有限元(FE)方法用于研究转子偏斜对无刷DFIM中转矩响应的影响。由于在一个模型中同时耦合和计算了多个2D FE切片,因此需要大量的计算时间。使用这样的模型来预测在设计开始时通过应用倾斜的槽将减少多少平均转矩和转矩波动是没有效率的。本文利用正常的二维有限元分析结果,并在后处理中应用偏斜因子,以研究转子偏斜对转矩响应的影响。所提出的方法可以在有限的计算时间内给出扭矩响应的偏斜效应的近似预测。

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