响应面法在平面变压器绕组设计中的应用

Samuel R. Cove, M. Ordonez, J. Quaicoe
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引用次数: 8

摘要

平面变压器为具有高度可重复参数的电力电子变换器提供了一种重量轻、外形低的解决方案。它们的寄生电感、电容和电阻由于其复杂的绕组排列以及非线性和多变量特性而难以建模。本文提供了一种确定平面变压器在不同绕组布置下漏感、绕组间和绕组内电容以及电阻参数模型的方法。采用基于实验设计(DoE)方法的中心复合设计方法,通过少量的实验运行来提供参数模型。给出了在平面ER18/3.2/10芯组上的物理实验结果,结果表明模型结果与验证试验具有良好的相关性。该方法可用于特定应用(例如软开关或谐振变换器)的表征和设计平面变压器,并预测其作为不同电力电子拓扑的一部分的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying Response Surface Methodology to planar transformer winding design
Planar transformers provide a light-weight and low profile solution for power electronic converters with highly reproducible parameters. Their parasitic inductances, capacitances, and resistances are difficult to model due to the complex winding arrangement along with their nonlinear and multivariate nature. This paper provides a methodology for determining parametric models for the leakage inductance, inter and intra-winding capacitances, and resistance of planar transformers using a variety of winding arrangements. A Central Composite Design based on the Design of Experiment (DoE) methodology is employed to provide the parametric models using a small number of experimental runs. Results from physical experimentation on a planar ER18/3.2/10 core set are provided and show excellent correlation between modeled results and confirmation testing. The methodology can be employed to characterize and design planar transformers for specific applications (for example soft switching or resonant converters), and to predict their performance as part of different power electronics topologies.
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