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Analytic modelling of magnetic losses in laminated stator cores with consideration of interlamination eddy currents

机译:考虑因素涡流层压定子芯中磁力损失的分析模型

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The identification of different loss mechanisms and the prediction of exact power dissipations play a significant role in the development of new electric motor designs and the achievement of highest power densities and, therefore, high continuous drive powers. As many approaches exist to estimate the ohmic losses in the windings of a motor and additional mechanical losses, such as bearing losses, the most significant calculation error is usually made in the iron loss estimation of the stator core. In this paper, an analytic calculation method of the iron losses is presented, which gives the opportunity to predict the stator's losses without time-consuming 3D FEM calculations. The basis of the calculation model are commonly known material parameters of the lamination sheet and the insulation varnish, as well as geometric parameters of the target geometry. The result of the loss model is compared and validated with measurement values, delivered by a novel test device for stator segments.
机译:不同丢失机制的识别和精确功率耗散的预测在新电动机设计的发展和最高功率密度的实现中起着重要作用,因此高连续驱动功率。存在许多方法来估计电动机绕组中的欧姆损耗以及诸如轴承损耗的额外机械损失,通常在定子芯的铁损估计中进行最显着的计算误差。在本文中,提出了一种铁损的分析计算方法,这赋予了在没有耗时的3D FEM计算的情况下预测定子损失的机会。计算模型的基础是层叠片的常见材料参数和绝缘清漆,以及目标几何形状的几何参数。比较损耗模型的结果并用测量值进行验证,由用于定子段的新型测试装置递送。

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