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A Dynamic Hysteresis Model for Loss Estimation of GO Silicon Steel Under DC-Biased Magnetization

机译:直流偏压磁化下硅钢损耗估计动态滞后模型

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摘要

A new algorithm for numerical identification of the static Preisach hysteresis model is proposed for more accurate estimation of dc-biasing hysteresis curves and hysteresis loss of the grain-oriented silicon steel sheet. Based on the experimental asymmetric major hysteresis loop under dc-biased magnetization, two sets of first-order reversal curves corresponding to ascending and descending branches, respectively, are numerically generated for construction of the Everett function. According to the equivalent field separation technique, a dynamic hysteresis model is established by parameter extraction of excess loss, and then used for simulation of dc-biasing dynamic hysteretic behaviors. The consistency between the simulated results and the measured ones demonstrates the effectiveness of the proposed method. The effect of dc bias on iron loss is analyzed as well.
机译:提出了一种新的静态预测滞后模型的数值识别算法,以便更准确地估计DC偏置磁铁钢板的DC偏置滞后曲线和滞后损失。基于DC偏置磁化下的实验不对称主要滞后回路,分别对应于上升和下降分支的两组一阶反转曲线,用于施工everett函数。根据等效场分离技术,通过对多余损失的参数提取建立动态滞后模型,然后用于模拟DC偏置动态滞后行为。模拟结果与测量结果之间的一致性展示了所提出的方法的有效性。分析了DC偏置对铁损的影响。

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