基于谐波分形的磁损耗和绕组损耗估计

Reanna Orzechowski, M. Jahnes, Youssef A. Fahmy, Liwei Zhou, M. Preindl
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引用次数: 0

摘要

在非谐振拓扑中,通过磁性的电流通常是多个频率的组合,可以认为是谐波丰富的。这在相移拓扑中越来越正确,其中通过磁性器件的电流不是严格的正弦波。本文采用所提出的谐波分束法计算了相移拓扑下变压器的损耗。我们将证明,使用三角波磁场信号的谐波分频分量使我们能够以一种快速和模拟友好的方式使用Steinmetz方程。首先,简要讨论了绕组和铁芯损耗背后的理论,然后讨论了分析变压器建模。然后介绍了绕组和铁芯损耗的谐波分束方法。最后给出了变压器的有限元模型分析结果和实验结果。该方法与有限元分析和试验损失模型结果接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic and Winding Loss Estimation Using Harmonic Binning
The current through the magnetics in a non-resonant topology is typically a composition of multiple frequencies and can be considered harmonic-rich. This is increasingly true in phase-shifted topologies where the current through the magnetic device is not strictly a sinusoidal wave. This paper follows the calculation of the transformer losses in a phase-shifted topology using the proposed harmonic binning approach. We will show that using the harmonic binning components of a triangular wave magnetic field signals allows us to use the Steinmetz equation in a fast and simulation-friendly way. First, a brief discussion on the theory behind winding and core loss is presented followed by a discussion of analytical transformer modeling. Then the harmonic binning method for winding and core loss is introduced. Lastly, FEA model results and experimental results for a transformer are presented. The proposed method is close to the FEA and experimental loss model results.
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