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Analysis and design of planar inductor and transformer for resonant converter

机译:谐振变换器的平面电感和变压器的分析与设计

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With the increasing demand of low-profile, high-power density for power electronics system, the planar magnetics (inductors and transformers) begin to be adopted in many fields. The copper tracks on printed circuit board (PCB) are mostly adopted as the windings of the planar magnetics which cannot be changed flexibly once the PCB is produced. So the design method of planar magnetics is an important issue. In this paper, the Response Surface Method (RSM) is adopted to design the planar inductor. The method can exactly obtain the inductance and resistance by the formulas obtained from experimental or simulation test results which can simplifying the design process. For the planar transformer, the Modular Layer Model (MLM) is adopted to build the final equivalent model of the transformer, by which the magnetizing inductance, leakage inductance and resistance can be calculated. The proposed design methods of planar inductor and planar transformer are verified by a resonant converter prototype.
机译:随着对电力电子系统的薄型,高功率密度的需求不断增长,平面磁(电感器和变压器)开始在许多领域中得到采用。印刷电路板(PCB)上的铜走线通常被用作平面磁性材料的绕组,一旦生产PCB,就不能灵活地对其进行更改。因此,平面磁学的设计方法是一个重要的课题。本文采用响应面法(RSM)设计平面电感。该方法可以通过从实验或仿真测试结果中得出的公式精确地获得电感和电阻,从而简化了设计过程。对于平面变压器,采用模块化层模型(MLM)构建变压器的最终等效模型,由此可以计算出励磁电感,漏感和电阻。通过谐振变换器原型验证了所提出的平面电感器和平面变压器的设计方法。

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