Optimizing the AC resistance of multilayer transformer windings with arbitrary current waveforms

W. G. Hurley, E. Gath, J. Breslin
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引用次数: 5

Abstract

AC losses due to nonsinusoidal current waveforms have been found by calculating the losses at harmonic frequencies when the Fourier coefficients are known. An optimized foil or layer thickness in a winding may be found by applying the Fourier analysis over a range of thickness values. This paper presents a new formula for the optimum foil or layer thickness, without the need for Fourier coefficients and calculations at harmonic frequencies. The new formula requires the RMS value of the current waveform and the RMS value of its derivative. It is simple, straightforward and applies to any periodic waveshape.
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优化任意电流波形下多层变压器绕组的交流电阻
当傅里叶系数已知时,通过计算谐波频率下的损耗,可以发现非正弦电流波形的交流损耗。通过在一定厚度范围内应用傅里叶分析,可以找到绕组中最优的箔或层厚度。本文提出了一种新的计算最佳箔或层厚度的公式,而不需要傅里叶系数和谐波频率的计算。新公式要求电流波形的均方根值及其导数的均方根值。它简单、直接,适用于任何周期波形。
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Program committee Cover page Double boost effect topology for AC/DC converter with unity power factor Optimizing the AC resistance of multilayer transformer windings with arbitrary current waveforms A novel quasi-resonant DC-DC converter using phase-shift modulation in secondary side of high-frequency transformer
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