Investigate and Improve the Distorted Waveforms for Core Loss Measurement with Arbitrary Excitations

Zhedong Ma, Juntao Yao, Yanwen Lai, Shuo Wang, H. Sheng, Srikanth Lakshmikanthan
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引用次数: 5

Abstract

The magnetic core plays a very important role in high frequency switching transformer modeling, design as well as loss estimation, etc. Extract the core loss from the winding loss accurately is essential in many industrial applications. Usually, A power amplifier connected to a function generator is applied to add the excitation to the CUT (core under test). For practical applications, sometimes, a square-wave or triangular-wave excitation, which depends on the working condition, is required to be added to the CUT. However, sometimes, it is found the non-sinusoidal excitations added on the CUT are distorted, which brings difficulties to accurate core loss measurement. In this paper, a detailed explanation for this phenomenon is given, several convenient solutions to improve the non-sinusoidal waveforms are explored based on the theoretical analysis. Both the simulation and experiment verify the analysis.
研究和改进了任意激励下铁心损耗测量的畸变波形
磁芯在高频开关变压器的建模、设计以及损耗估计等方面起着非常重要的作用。从绕组损耗中准确提取铁芯损耗在许多工业应用中是必不可少的。通常,连接到函数发生器的功率放大器被用于向CUT(被测磁芯)添加励磁。在实际应用中,有时需要在CUT中加入根据工作条件而定的方波或三角波激励。然而,有时会发现外加的非正弦激励失真,这给铁芯损耗的精确测量带来了困难。本文对这一现象进行了详细的解释,并在理论分析的基础上探讨了几种简便的改善非正弦波形的方法。仿真和实验验证了分析的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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