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Iron loss modelling which includes the impact of punching, applied to high-efficiency induction machines

机译:铁损模拟,包括冲压的影响,适用于高效感应机器

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Within the market evolution towards higher efficiency machines, there is a need for more precise modelling tools, taking also higher frequency power supplies into account. This paper implements the effect of cut edge degradation, due to punching, on the local magnetization curve and local losses, aiming at improved calculation of magnetization current and machine iron losses. For an induction machine, defined by Leroy Somer and a high efficiency electrical steel, selected from ArcelorMittal's range, this study combines advanced material characterization with improved modelling techniques, and is validated by selected machine testing procedures. For the sake of clear loss separation a machine with slotless rotor was characterized at two conditions regarding speed and excitation. The loss model, including already the effect of rotational losses and higher harmonics, was enhanced with the punching effect, which led to a model accuracy of 86% at synchronous speed when compared to the measured losses. This study also led to further insights in local magnetization behaviour, to be used in further design optimization.
机译:在市场演变中,对更高效率的机器,需要更精确的建模工具,考虑更高的频率电源。本文实现了切割边缘劣化的效果,由于冲压,局部磁化曲线和局部损失,旨在改善磁化电流和机器铁损的计算。对于由Leroy Somer和高效电钢定义的感应机,本研究结合了先进的材料表征,采用了改进的建模技术,并通过所选机器测试程序验证。为了清晰的损失分离,具有不粘槽转子的机器在速度和激发的两个条件下表现了两个条件。通过冲压效果增强了损耗模型,包括旋转损耗和较高次谐波的效果,这与测量损耗相比,在同步速度下导致了86%的模型精度。本研究还导致了局部磁化行为的进一步见解,以进一步设计优化。

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