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An Improved Core Loss Model of Ferromagnetic Materials Considering High-Frequency and Non-Sinusoidal Supply

机译:考虑高频和非正弦供应的铁磁材料的改进核心损耗模型

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摘要

Energy-saving material such as soft magnetic ferrite has been widely adopted as the core material in power electronic devices. Due to the non-sinusoidal supply of power electronic devices, the core loss properties are quite complex so that it is more difficult to predict accurately under different supply waveforms. With the magnetic property measurement system for soft magnetic material, this study measures core losses of typical soft magnetic ferrite and nanocrystalline toroidal cores under the different supply waveforms, such as medium-frequency square, sinusoidal and PWM supplies. Further, in order to improve estimation accuracy of the Bertotti loss separation model under non-sinusoidal supply, the excess loss item is expressed by using the Barbisio algorithm, and the mathematical relationship between the excess loss and magnetizing frequency and strength is also proposed. Meanwhile, eddy current loss in the Bertotti model is derived further to fit for computing the eddy loss in the rectangular cross section of solid ferrite, and the proposed loss model is verified with the experimental data. Finally, the core loss of an intermediate frequency (IF) power electronics transformer is calculated under the square supply, the related experimental validation is also performed and the effectiveness of the proposed model are verified well. The achievement in this paper can provide the reference model for further optimization design and core performance analysis of electrical devices.
机译:软磁铁氧体等节能材料已被广泛采用作为电力电子设备的芯材。由于电力电子设备的非正弦供应,核心损耗特性非常复杂,因此在不同的供电波形下更难以准确地预测。通过用于软磁材料的磁性测量系统,该研究在不同的供应波形下测量典型的软磁铁氧体和纳米晶体环形核心的核心损失,如中频广场,正弦和PWM供应。此外,为了提高非正弦供应下彼得虎液损失分离模型的估计精度,通过使用烧烤算法表达过量损失项目,并且还提出了过度损耗和磁化频率和强度之间的数学关系。同时,Bertotti模型中的涡流损耗进一步推动以适合计算固体铁氧体的矩形横截面中的涡损,并通过实验数据验证所提出的损失模型。最后,在方形电源下计算中频(IF)电力电子变压器的核心损失,还执行了相关的实验验证,并验证了所提出的模型的有效性。本文的成就可以为进一步优化设计和电气设备的核心性能分析提供参考模型。

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