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Modelling and identification of iron losses in nonoriented steel laminations using Preisach theory

机译:基于Preisach理论的无取向钢叠片铁损建模与识别

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摘要

A numerical method for the evaluation of magnetic iron losses in steel laminations used in electrical machines is described. The magnetodynamic model for the magnetic field strength H, derived from the Maxwell equations, is coupled with the Preisach theory, describing the hysteresis behaviour. The resulting highly nonlinear and transient boundary value problem for H is solved numerically by a modified finite element, finite-difference method. The direct identification of the material parameters, for which the authors invoke the Everett theory, is discussed in detail. The model is validated by the comparison of numerical experiments and measurements for the B-H loops. For the material considered the rate-dependent Preisach model is found to be more reliable than the classical Preisach model.
机译:描述了一种用于评估电机中使用的钢叠片中的磁性铁损的数值方法。从麦克斯韦方程式推导出的磁场强度H的磁动力模型与Preisach理论相结合,描述了磁滞行为。由此产生的H的高度非线性和瞬态边值问题,通过改进的有限元有限差分法数值求解。详细讨论了材料参数的直接识别(作者引用了Everett理论)。通过比较B-H回路的数值实验和测量值来验证该模型。对于所考虑的材料,发现速率相关的Preisach模型比经典的Preisach模型更可靠。

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