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A simplified method for the iron losses prediction in soft magnetic materials with arbitrary voltage supply

机译:任意电压下软磁材料铁损预测的简化方法

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The aim of this work is to propose a new approach for the iron losses prediction, in soft magnetic materials with any voltage supply, starting from the knowledge of the iron losses with sinusoidal supply. The model is based on the separation of the loss contributions due to hysteresis, eddy currents and excess losses with sinusoidal supply. Since any contribution depends on the voltage supply characteristics, it is possible to find a direct mathematical relationship between the iron loss contribution and the voltage supply characteristics. As a consequence, an iron loss prediction can be obtained with any voltage supply, which does not produce hysteresis minor loop. The energetic model is based on coefficients that depend on the material characteristic. An accurate analysis of the model on eight magnetic materials, of different thickness and alloy, has been made, so the main coefficients for a large spread of magnetic materials, used for the electrical machines construction, have been found. The paper can be a useful support for electrical machine designers when the energetic performances of magnetic material, have to be predicted with the voltage supply different from the sinusoidal one.
机译:这项工作的目的是从已知具有正弦电源的铁损的知识出发,提出一种在任何电压供应的软磁材料中铁损预测的新方法。该模型基于磁滞,涡流和正弦电源的过大损耗所造成的损耗贡献的分离。由于任何贡献都取决于电压供应特性,因此有可能在铁损贡献和电压供应特性之间找到直接的数学关系。结果,可以在不产生磁滞小环路的任何电压下获得铁损预测。高能模型基于取决于材料特性的系数。对不同厚度和合金的八种磁性材料的模型进行了精确分析,因此找到了用于电机构造的磁性材料大范围传播的主要系数。当必须用不同于正弦曲线的电压供应来预测磁性材料的高能性能时,本文可以为电机设计人员提供有用的支持。

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