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The measurement and prediction of iron loss under nonsinusoidal voltage waveform with arbitrary frequency

机译:具有任意频率的非内衬电压波形下铁损的测量与预测

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Based on the Bertotti’s loss separation model, the analysis and calculation of iron loss is proposed under sinusoidal, triangular and square waveform regimes, meanwhile, the corresponding loss prediction models are given. An improved law of Epstein frame for measuring iron loss is presented. The loss curves are measured for two types of silicon iron laminations under voltage supply with arbitrary frequency and three waveforms. The nonlinear regression is then given to the experimental results, and parameters in the prediction model are worked out, and there is hardly any discrepancy between the computed and the measured results. It is proved that parameters in the prediction formula vary only with the paticular waveforms of the supply for the certain ferromagnetic material. Having the knowledge of loss data under sinusoidal regime at 50 Hz which are always offered by the silicon iron manufacturers, it is easy to gain the loss under other waveform regimes by multiplying certain constants to each loss component. The analysis and calculation of iron loss under nonsinusoidal regime is necessary and meaningful.
机译:基于Bertotti的损耗分离模型,在正弦,三角形和方波制度下提出了铁损的分析和计算,同时,给出了相应的损耗预测模型。提出了一种用于测量铁损的Epstein框架的改进规律。在具有任意频率和三个波形的电压供应下测量损耗曲线的两种类型的硅铁叠片。然后给出非线性回归到实验结果,并制定预测模型中的参数,并且在计算和测量结果之间几乎没有任何差异。事实证明,预测公式中的参数仅随着某种铁磁性材料的电源的姿态波形而变化。在硅铁制造商总是提供的50 Hz的正弦制度下的损失数据知识,通过将某些常量乘以每个损耗组件,易于在其他波形制度下获得损失。非洲内饰制度下的铁损的分析和计算是必要和有意义的。

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