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Determination of best rotor length in solid-rotor induction motor with axial slitting

机译:确定带有轴向切口的实心转子感应电动机的最佳转子长度

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The efficiency of the solid-rotor induction machines depends on axial length of rotor (including the end-regions). Determination of the best axial length is problematic because of current density distribution in the end-regions and also because of absence of dedicated methods and models. This work proposes a method that circumvents this difficulty. It is based on the numerical determination of a dimensionless rotor-end factor using a combination of three- and two-dimensional finite element models restricted to the motor rotor. Such the end factor can be used in both analytical and numerical model of the machine in order to determine the typical performance characteristics. In this work, using this method, we determined an optimal length of the slitted solid rotor of a motor operating at 12 000 rpm, that maximizes the motor efficiency. The results of computations and measurements, carried out on the laboratory test-stand, are presented.
机译:实心转子感应电机的效率取决于转子的轴向长度(包括端部区域)。最佳轴向长度的确定是有问题的,这是因为端部区域中的电流密度分布,并且还因为缺少专用的方法和模型。这项工作提出了一种解决这一难题的方法。它基于对电动机转子的三维有限元模型和二维有限元模型的组合,对无量纲转子端系数进行数值确定。为了确定典型的性能特征,可以在机器的分析模型和数值模型中使用这种最终因子。在这项工作中,使用这种方法,我们确定了以12000 rpm运转的电动机的切缝实心转子的最佳长度,该长度可使电动机效率最大化。介绍了在实验室测试台上进行的计算和测量结果。

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