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首页> 外文期刊>IEE proceedings. Part C >Prediction of hysteresis losses produced by distorted flux in low-loss silicon-iron transformer core laminations
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Prediction of hysteresis losses produced by distorted flux in low-loss silicon-iron transformer core laminations

机译:预测低损耗硅铁变压器铁心叠片中通量失真所产生的磁滞损耗

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摘要

A digital method for predicting the hysteresis losses in low-loss silicon-iron laminations, as used in transformer cores, with distorted supply voltages, is presented. The method uses a model based on a piecewise linearisation technique to simulate steady-state B/H characteristics for such materials. Major and minor loop areas computed from simulated B/H characteristics are used to estimate the hysteresis and eddy current components of the measured no-load loss and the respective components had the supply voltage remained sinusoidal. The method neither requires any assumption regarding distribution of these losses in the iron loss nor uses any empirical correction factor for the prediction of sinusoidal losses. Computed values are in good agreement with experimental results. It is possible to use the method for correcting the iron losses measured in a transformer when the supply voltage is distorted.
机译:提出了一种数字方法,用于预测变压器芯中使用的低损耗硅铁叠片中的磁滞损耗,并且电源电压会失真。该方法使用基于分段线性化技术的模型来模拟此类材料的稳态B / H特性。根据模拟的B / H特性计算出的主要和次要环路面积用于估计测得的空载损耗的磁滞和涡流分量,并且各个分量的电源电压保持正弦曲线。该方法既不需要关于铁损中这些损耗的分布的任何假设,也不需要使用任何经验校正因子来预测正弦损耗。计算值与实验结果非常吻合。当电源电压失真时,可以使用该方法来校正在变压器中测得的铁损。

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