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Investigation on Simple Numeric Modeling of Anomalous Eddy Current Loss in Steel Plate Using Modified Conductivity

机译:修正电导率的钢板异常涡流损失的简单数值模拟研究

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To calculate the iron loss in an electric machine accurately, the anomalous eddy current loss generated by domain wall motion should be considered. A simple numeric modeling of anomalous eddy current loss by modifying the conductivity of steel plates is sometimes used. However, investigation on this method in detail has not been carried out. In this paper, this method is investigated in two iron-loss models neglecting and including the skin effect and then applied to the loss calculation of various kinds of nonoriented and oriented silicon steel plates. Then, the dependence of the modified conductivity on the amplitude and frequency of the induction magnetic field for each material is obtained and the appropriate iron-loss model and method for modifying the conductivity are proposed for the nonoriented and oriented silicon steel plates. The calculated iron losses using the appropriate iron-loss model with modified conductivity are compared with the measured data. It is clarified that for nonoriented materials, the iron-loss model including the skin effect with constant modified conductivity shows good agreement. And for oriented materials, the model neglecting the skin effect with the modified conductivity depending on frequency is better.
机译:为了准确计算电机中的铁损,应考虑畴壁运动产生的异常涡流损耗。有时使用通过修改钢板的电导率来对异常涡流损耗进行简单的数值建模。但是,尚未对该方法进行详细的研究。本文在忽略并包括趋肤效应的两个铁损模型中研究了该方法,然后将其应用于各种非取向和取向硅钢板的损耗计算。然后,获得了每种材料的修正电导率对感应磁场的振幅和频率的依赖关系,并提出了适用于无取向和定向硅钢板的合适的铁损模型和修正电导率的方法。使用适当的铁损模型(具有改进的电导率)将计算出的铁损与测量数据进行比较。需要说明的是,对于非定向材料,铁损模型包括具有恒定修饰电导率的集肤效应,显示出良好的一致性。而对于定向材料,忽略频率变化而改变了电导率的趋肤效应的模型更好。

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