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Evaluation of High Frequency Electromagnetic Behavior of Planar Inductor Designs for Resonant Circuits in Switching Power Converters

机译:开关电源转换器中谐振电路的平面电感器设计的高频电磁性能评估

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In this paper, a planar inductor based resonant circuit is designed for zero-current switching (ZCS) buck converter, hi order to evaluate the actual behavior of the converter at the design stage, a numerical model of the inductor was created and implemented using the finite element (FE) analysis. Using the numerical model, a high frequency physics based circuit model was obtained for the converter's resonant circuit. The acquired physics based circuit model was used to approximate the electrical behavior of the resonant circuit. The operating condition of the half-wave ZCS buck converter was verified both numerically and experimentally. It was shown that by using the proposed high frequency model, it is possible to evaluate realistic waveforms of voltages and currents including the effects of parasitic elements. This is an essential step for studying conducted electromagnetic field emissions in power converters for the evaluation of their EMI interactions for EMC compliant designs.
机译:本文针对零电流开关(ZCS)降压转换器设计了一种基于平面电感器的谐振电路,为了在设计阶段评估转换器的实际性能,使用该电感器建立了电感器的数值模型并加以实现。有限元(FE)分析。使用数值模型,获得了转换器谐振电路的基于高频物理学的电路模型。所获得的基于物理学的电路模型被用于近似谐振电路的电学行为。通过数值和实验验证了半波ZCS降压转换器的工作条件。结果表明,通过使用所提出的高频模型,可以评估包括寄生元件影响的实际电压和电流波形。这是研究功率转换器中的传导电磁场发射,以评估其符合EMC要求的设计中EMI相互作用的重要步骤。

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