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Temperature Dependence in the Jiles–Atherton Model for Non-Oriented Electrical Steels: An Engineering Approach

机译:非取向电工钢的Jiles-Atherton模型中的温度依赖性:一种工程方法

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摘要

High operating temperatures modify the magnetic behavior of ferromagnetic cores which may affect the performance of electrical machines. Therefore, a temperature-dependent material model is necessary to model the electrical machine behavior more accurately during the design process. Physics-inspired hysteresis models, such as the Jiles-Atherton (JA) model, seem to be promising candidates to incorporate temperature effects and can be embedded in finite element simulations. In this paper, we have identified the JA model parameters from measurements for a temperature range experienced by non-oriented electrical steels in electrical machines during their operation. Based on the analysis, a parameter reduction has been performed. The proposed approach simplifies the identification procedures by reducing the number of model parameters and does not require any additional material information, such as the Curie temperature. The resulting temperature-dependent JA model is validated against measurements, and the results are in good agreement.
机译:较高的工作温度会改变铁磁芯的磁性能,这可能会影响电机的性能。因此,需要一个与温度有关的材料模型,以便在设计过程中更准确地对电机行为进行建模。受物理启发的磁滞模型,例如Jiles-Atherton(JA)模型,似乎是有望纳入温度效应的候选模型,并且可以嵌入到有限元模拟中。在本文中,我们通过测量非定向电工钢在运行过程中所经历的温度范围来确定JA模型参数。基于该分析,已经执行了参数减少。所提出的方法通过减少模型参数的数量简化了识别过程,并且不需要任何其他材料信息,例如居里温度。所得的依赖于温度的JA模型针对测量进行了验证,并且结果吻合良好。

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