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Magnetostrictive Simulation of Amorphous Alloy Based on Dynamic Jiles-Atherton Model

机译:基于动态Jiles-Atherton模型的非晶合金磁致伸缩模拟

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Magnetostriction is the main cause of vibration and noise of transformer core. In order to obtain a more accurate magnetostrictive model suitable for amorphous alloys, a new magnetostrictive model is established based on the im-proved Jiles-Atherton model and the quadratic domain rotation model. Among them, the eddy current loss and additional loss are considered, and the parameter v is introduced to reflect the change of k with the magnetization state in the actual magnetization process, all of which make the model have stronger physical significance. Particle swarm optimization algorithm is used to extract the parameters of the model. The data of amorphous alloy strip under different excitation sizes were measured and compared with the results of model calculation. The results show that the calculated results of the magnetostrictive model based on the hysteresis model which is more consistent with the physical basis are close to the measured data. The model established in this paper can be applied to the simulation of the magnetostrictive characteristics of amorphous alloys.
机译:磁致伸缩是引起变压器铁心振动和噪声的主要原因。为了获得更精确的适用于非晶合金的磁致伸缩模型,在改进的Jiles-Atherton模型和二次磁畴旋转模型的基础上,建立了一种新的磁致伸缩模型。其中,考虑了涡流损耗和附加损耗,引入了参数v来反映实际磁化过程中k随磁化状态的变化,使模型具有更强的物理意义。采用粒子群优化算法提取模型参数。测量了非晶合金带材在不同激励尺寸下的数据,并与模型计算结果进行了比较。结果表明,基于磁滞模型的磁致伸缩模型的计算结果与实测数据较为接近,磁滞模型更符合物理基础。本文建立的模型可用于非晶合金磁致伸缩特性的模拟。

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