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Iron loss prediction considering the rotational field and flux density harmonics in IPMSM and SynRM

机译:考虑IPMSM和SynRM中的旋转磁场和磁通密度谐波的铁损预测

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摘要

Although good precision has been realised in iron loss calculation for static electrical apparatus, such as transformers, difficulties have been encountered in the case of rotating machines. Due to complex structures, varying flux distributions, rotational field and flux density harmonics, less satisfactory results are achieved for the prediction of iron loss in rotating machines. The influence of the rotational field as well as flux density harmonics on the iron loss calculation based on finite element method are considered in this paper. To account for the effect of additional iron losses due to the appearance of rotational flux density vectors and harmonics, revisions to the conventional method are made to reduce the prediction error. Calculations and experiments have been carried out on two interior permanent magnet synchronous motors with different kinds of winding and a synchronous reluctance motor. Experimental results have verified that improved precision of iron loss calculation can be achieved by using the proposed method.
机译:尽管在诸如变压器之类的静电设备的铁损计算中已经实现了良好的精度,但是在旋转机器的情况下却遇到了困难。由于结构复杂,通量分布变化,旋转场和通量密度谐波,对于预测旋转电机中的铁损,结果不太令人满意。本文考虑了旋转磁场以及磁通密度谐波对基于有限元法计算铁损的影响。为了考虑由于旋转通量密度矢量和谐波的出现而导致的额外铁损的影响,对传统方法进行了修改以减小预测误差。已经对两种具有不同绕组类型的内部永磁同步电动机和同步磁阻电动机进行了计算和实验。实验结果证明,该方法可以提高铁损的计算精度。

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