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Optimal Design and Tradeoff Analysis of Planar Transformer in High-Power DC–DC Converters

机译:大功率DC-DC变换器中平面变压器的优化设计与权衡分析

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摘要

The trend toward high power density, high operating frequency, and low profile in power converters has exposed a number of limitations in the use of conventional wire-wound magnetic component structures. A planar magnetic is a low-profile transformer or inductor utilizing planar windings, instead of the traditional windings made of Cu wires. In this paper, the most important factors for planar transformer (PT) design including winding loss, core loss, leakage inductance, and stray capacitance have individually been investigated. The tradeoffs among these factors have to be analyzed in order to achieve optimal parameters. Combined with an application, four typical winding arrangements have been compared to illustrate their advantages and disadvantages. An improved interleaving structure with optimal behaviors is proposed, which constructs the top layer paralleling with the bottom layer and then in series with the other turns of the primary, so that a lower magnetomotive force ratio $m$ can be obtained, as well as minimized ac resistance, leakage inductance, and even stray capacitance. A 1.2-kW full-bridge dc–dc converter prototype employing the improved PT structure has been constructed, over 96% efficiency is achieved, and a 2.7% improvement, compared with the noninterleaving structure, is obtained.
机译:功率转换器中朝着高功率密度,高工作频率和低轮廓的趋势暴露了使用常规绕线磁性部件结构的许多限制。平面磁体是利用平面绕组而不是由Cu线制成的传统绕组的薄型变压器或电感器。在本文中,已分别研究了平面变压器(PT)设计的最重要因素,包括绕组损耗,铁芯损耗,漏感和杂散电容。为了获得最佳参数,必须分析这些因素之间的权衡。结合一种应用,已对四种典型的绕组布置进行了比较,以说明其优缺点。提出了一种具有最佳性能的改进的交织结构,该结构将顶层与底层平行,然后与初级线圈的其他匝串联,从而可以获得较低的磁通势比$ m $,并使其最小化。交流电阻,漏感甚至杂散电容。已经构建了采用改进的PT结构的1.2 kW全桥DC-DC转换器原型,实现了96%以上的效率,并且与非交错结构相比,获得了2.7%的改进。

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