Effect of Higher-Strength Low-Loss Electrical Steel on the Electric Energy Saving of Traction Motors Considering Thermal Analysis

Ahmed Abouelyazied, L. Vandenbossche, Lisa Lastra
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Abstract

Higher-strength low-loss electrical steel (ES) grades have shown a noticeable energy saving of interior permanent magnet (IPM) traction motors. This energy saving is achieved by the optimal rotor design enabled by the high mechanical yield strength feature of the utilized ES grade as well as its low loss property. In previous works, the energy saving was explored ignoring the thermal analysis. In practice, thanks to the lower dissipated heat loss, the winding resistance as well as permanent magnet are less prone to degradation in motor designs with higher-strength low-loss ES grades. Therefore, thermal analysis becomes crucial for a better estimation of the energy saving. In order to prove this concept, a coupled electromagnetic-mechanical-thermal finite element (FE) model has been built. Firstly, the optimal bridge thickness of the V-shaped IPM rotor is estimated by evaluating the von Mises stress at the maximum operating speed using a static structural analysis. Then the stator current is optimized by iterative computations of transient electromagnetic and lumped-parameter thermal models at rated operation conditions. This paper illustrates that the utilization of higher-strength low-loss ES grades results in up to 7% temperature reduction which leads to 8% energy saving and/or a significant reduction of rare-earth permanent magnet (up to 5.4%) depending on the designers' main interest.
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考虑热分析的高强度低损耗电工钢对牵引电机节能的影响
高强度低损耗电工钢(ES)等级显示出显著的节能内饰永磁(IPM)牵引电机。这种节能是通过利用ES等级的高机械屈服强度特征及其低损耗特性实现的最佳转子设计实现的。在以往的工作中,对节能的探讨忽略了热分析。在实践中,由于较低的散热损失,绕组电阻以及永磁体在具有高强度低损耗ES等级的电机设计中不易退化。因此,热分析对于更好地估计节能效果至关重要。为了证明这一概念,建立了一个耦合的电磁-机械-热有限元模型。首先,采用静力结构分析方法,通过计算最大转速下的von Mises应力,估算出v型转子的最优桥壁厚度;然后,通过对额定工况下瞬变电磁模型和集总参数热模型的迭代计算,优化定子电流。本文表明,根据设计师的主要兴趣,使用高强度低损耗ES等级可使温度降低7%,从而节省8%的能源和/或显著减少稀土永磁体(高达5.4%)。
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