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Effect of voltage harmonics on iron losses in magnetic cores with hysteresis

机译:电压谐波对磁滞铁心铁损的影响

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The effect of distorted voltage waveforms on the iron losses, considering the magnetic hysteresis, is quantitatively studied, using an accurate losses separation method and a time-integration for each component. The model parameters, including the Preisach hysteresis function, are identified by magnetic measurements. A case-study, implying measured electric power quality data in a metal processing and thermal treatment facility, is presented to outline the consequences of a non-sinusoidal regime on iron losses in high power low-voltage motors with rated power between 132 kW and 200 kW. Three sorts of standard FeSi non-oriented electrical sheets (M330-50A, M400-65A and M700-65A) were considered for the motor magnetic core. The iron losses, estimated both for non-saturated and saturated core regions, rise with 11-35 % for the measured non-sinusoidal voltage having 7.6% total harmonic distortion.
机译:考虑到磁滞现象,使用精确的损耗分离方法和每个组件的时间积分,定量研究了电压波形失真对铁损的影响。模型参数(包括Preisach磁滞函数)通过​​磁测量确定。提出了一个案例研究,暗示了在金属加工和热处理设施中测得的电能质量数据,以概述非正弦形式对额定功率在132 kW和200之间的大功率低压电动机中铁损的影响。千瓦电动机磁芯考虑了三种标准的FeSi非定向电气薄板(M330-50A,M400-65A和M700-65A)。对于非饱和和饱和铁心区域估计的铁损,对于总谐波失真为7.6%的非正弦电压测量值,将增加11-35%。

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