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Methods for hysteresis losses determinations at non-standard ring core geometries equivalent to Epstein measurements

机译:等效于爱泼斯坦测量的非标准环形磁芯几何形状的磁滞损耗确定方法

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The iron losses in electrical machines differ significantly from those of measurements using the standardized measurement method, i.e. by use of an Epstein frame. In order to obtain a better approximation of the losses in an electrical machine, several toroidal geometries were examined more closely. In the first step, according to the standardized method, a ring-geometry was chosen, which corresponds to the magnetic path length of the Epstein frame. Starting from this reference ring and by gradual reduction of the diameter, further ring cores were measured. Within this framework, different methods were used, in which e.g. the influence of axial height, length of the cutting edge relative to the area or the ratio of outer and inner diameter was investigated. In addition to the measurements, numerical calculations were performed. Here, the focus lies on the exploration of the field density distribution over the ring width with respect to the various methods. Taking into account for those processing effects with the highest impact, the smallest geometries of each method and the largest ring, acting as a reference, were studied in detail. The investigations on the toroidal cores of the methods were carried out at a frequency of 400 Hz and a target minimum polarization of 1.0 T. As a final outcome, a recalculation of an existing machine with the new parameters of a selected ring nucleus was done.
机译:电机中的铁损与使用标准测量方法(即使用爱泼斯坦框架)进行的铁损显着不同。为了获得更好的电机损耗近似值,我们更仔细地研究了几种环形几何形状。第一步,根据标准化方法,选择环形几何体,该环形几何体对应于爱泼斯坦镜架的磁路长度。从该参考环开始,通过逐渐减小直径,可以测量更多的环芯。在此框架内,使用了不同的方法,例如研究了轴向高度,切削刃长度相对于面积或外径与内径之比的影响。除了测量之外,还进行了数值计算。在此,重点在于针对各种方法探索环宽度上的场密度分布。考虑到影响最大的那些处理效果,详细研究了每种方法的最小几何尺寸和最大的圆环,以此作为参考。对方法的环形磁芯的研究是在400 Hz的频率和1.0 T的目标最小极化率下进行的。作为最终结果,对带有选定环核新参数的现有机器进行了重新计算。

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