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New Approach for Accurate Prediction of Eddy Current Losses in Laminated Material in the Presence of Skin Effect With 2-D FEA

机译:二维有限元分析在趋肤效应下精确预测层压材料涡流损耗的新方法

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摘要

Two-dimensional finite element (FE) models normally assume the laminated core as a non-conductive material, and therefore, the damping effect of the eddy currents is ignored in the field solution. Besides, the use of integrated iron loss models in FE software could result in overestimated eddy current losses at high frequencies if the skin effect is ignored. This paper presents a simple way to accurately predict eddy current losses in laminations with FE analysis. An experimental setup along with the simulation models is used to demonstrate the validity of the method. The utility of this method in loss separation and identification of loss coefficients in the presence of skin effect is also illustrated. This method is also applied to a synchronous permanent magnet (PM) machine with sinusoidal current.
机译:二维有限元(FE)模型通常将叠片铁芯假定为非导电材料,因此,在现场解决方案中忽略了涡流的阻尼效应。此外,如果忽略集肤效应,则在FE软件中使用集成的铁损模型可能会导致高估高涡流损耗。本文提出了一种通过有限元分析准确预测叠片中涡流损耗的简单方法。实验设置以及仿真模型被用来证明该方法的有效性。还说明了该方法在存在皮肤效应的情况下在损耗分离和损耗系数识别中的实用性。该方法还适用于具有正弦电流的同步永磁(PM)电机。

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