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Dynamic and Anisotropic Vector Hysteresis Model Based on Isotropic Vector Play Model for Nonoriented Silicon Steel Sheet

机译:基于各向同性矢量游隙模型的无方向性硅钢板动态各向异性矢量滞后模型

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摘要

A phenomenological vector hysteresis model is developed to represent dynamic and weakly anisotropic vector hysteretic properties of nonoriented silicon steel sheets. The anisotropic vector hysteresis is represented by the multiplication of an anisotropy matrix and an isotropic vector play model. An eddy-current field vector given by classical eddy-current theory and an anomaly factor is added to the vector hysteresis model. The anomaly factor is determined to model the decrease in anomalous eddy-current loss under conditions of large rotational magnetic flux. The alternating and rotational properties simulated by the proposed model reconstruct the measured magnetic properties of nonoriented silicon steel sheets.
机译:建立了一种现象学的矢量滞后模型,以表示非取向硅钢板的动态和弱各向异性矢量滞后特性。各向异性矢量磁滞由各向异性矩阵和各向同性矢量游隙模型的乘积表示。将经典涡流理论给出的涡流场矢量和异常因子添加到矢量磁滞模型中。确定异常因素以模拟在大旋转磁通量条件下异常涡流损耗的减少。所提出的模型模拟的交变和旋转特性重构了无取向硅钢板的实测磁性能。

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