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A New Method to Predict Hysteresis and Loss Characteristics of Grain Oriented Silicon Steel Sheet Under AC-DC Hybrid Excitation

机译:AC-DC混合励磁下预测晶面硅钢板滞后特性的一种新方法

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Based on two Everett functions, a method for identifying asymmetric hysteresis loops is proposed. Besides, the statistical parameter $V_{mathrm{0}}$ is extracted from the excess loss under single-frequency sinusoidal and DC hybrid excitation. The extracted $V_{mathrm{0}}$ are used by neural network algorithm to fit the $V_{mathrm{0}}$ suitable for complex excitation. An improved calculation method of excess loss is used to calculate the iron loss of grain oriented silicon steel sheet. Combined with Preisach model and eddy loss calculation formula, the hysteresis and loss characteristics of grain oriented silicon steel sheet under AC-DC hybrid excitation are predicted. The predicted dynamic hysteresis loops and losses under various working conditions are compared with the measured ones, which verifies the accuracy and generality of the improved method proposed in this paper.
机译:基于两个Everett函数,提出了一种识别非对称滞后环的方法。此外,统计参数 $ v _ { mathrm {0 $ 从单频正弦波和直流混合励磁下的过度损失中提取。提取的 $ v _ { mathrm {0 $ 用神经网络算法使用以适应 $ v _ { mathrm {0 $ 适合复杂的激发。改进的过度损耗的计算方法用于计算晶粒定向硅钢板的铁损。结合Preisach模型和涡流计算公式,预测了AC-DC混合激发下晶面硅钢板的滞后特性。将各种工作条件下的预测的动态磁滞回路和损耗与测量值进行比较,这验证了本文提出的改进方法的准确性和一般性。

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