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Accurate prediction of high-frequency power-transformer losses and temperature rise

机译:高频电力变压器损耗和温升的准确预测

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The high-frequency power-transformer design equations for winding and core losses and temperature rise were reviewed from literature and formulated for spreadsheet calculations using material (Steinmetz loss coefficients, ferrite resistivity, copper resistivity), geometry (core area, core length, winding area, winding length), winding (number of primary turns, copper fill factor, primary to secondary area ratio) and excitation (input voltage, switching frequency, duty cycle, current harmonic components) parameters. The accuracy of each design issue was first validated and quantified separately using regression analysis. Calculated core losses, winding AC-resistance equations and heat transfer capacity calculations were compared with the results from calibrated heat sink measurements, finite-element method (FEM) analysis and measurements using thermal test blocks, respectively. Finally three EFD20 type transformers (solid wire, noninterleaved foil and interleaved foil winding) were fitted into an active clamp forward converter (100-300 kHz switching frequency, 0-78 W throughput power) for comparison between the theory and experiments. Standard error of predicted core losses and heat transfer capacity were determined to be 0.0581 and 0.15 W, respectively. The results of the in circuit tests suggests that the transformer total losses can be predicted with the average standard error below 0.2 W with datasheet type information only. The most significant uncertainty was heat conduction through and losses generated in the interconnecting wires between the test transformer and other converter components.
机译:从文献中回顾了用于绕组和铁芯损耗以及温升的高频电力变压器设计方程,并使用材料(Steinmetz损耗系数,铁氧体电阻率,铜电阻率),几何形状(铁芯面积,铁芯长度,绕组面积)进行了电子表格计算,绕组长度),绕组(初级匝数,铜填充系数,初级与次级面积之比)和励磁(输入电压,开关频率,占空比,电流谐波分量)参数。首先使用回归分析分别验证和量化每个设计问题的准确性。将计算出的铁心损耗,绕组交流电阻方程式和传热能力计算结果与校准散热器测量结果,有限元方法(FEM)分析和使用热测试块的测量结果进行了比较。最后,将三个EFD20型变压器(实心线,非交错箔和交错箔绕组)安装到有源钳位正激转换器(100-300 kHz开关频率,0-78 W吞吐功率)中,以便在理论和实验之间进行比较。预测的铁损和传热能力的标准误差分别确定为0.0581和0.15W。在线测试的结果表明,仅使用数据表类型信息,就可以以低于0.2 W的平均标准误差来预测变压器的总损耗。最主要的不确定性是测试变压器与其他转换器组件之间的互连导线中的热传导和损耗。

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