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LLC Resonant Converter With Damping Split Inductor Improving Light-Load Regulation Ability

机译:具有阻尼分体电感的LLC谐振转换器提高了轻载调节能力

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摘要

LLC resonant converters are widely used in On-board Power Converter but the pumping voltage of traditional LLC converter is unavoidable under light-load conditions due to the existence of parasitic parameter. In this paper, an LLC resonant converter with damping split inductor is proposed to improve the light-load regulation capability. The original resonant inductor is divided into two parts in series. Then, a simple damping resistor connected on one part in parallel and the other part can be integrated into the transformer. Using damping split inductor, significant regulation improvements could be achieved under light-load conditions with not any change in control strategy and almost zero hardware cost. In addition, based on impedance analysis of the resonant tank, the effects of the proposed method are analyzed including voltage gain, soft switching characteristics, suppression of high frequency interference components, and system power loss. Moreover, the detailed design process and optimization conditions of the damping split inductor parameters are carefully illustrated. Eventually, the experimental results demonstrate the characteristics mentioned above for the 96 W prototype at the expense of a maximum increase in device loss of 0.85 W.
机译:LLC谐振转换器广泛用于车载功率转换器,但是由于存在寄生参数,因此在轻载条件下传统LLC转换器的泵浦电压是不可避免的。本文提出了一种带有阻尼分裂电感器的LLC谐振转换器,以提高轻负载调节能力。原始谐振电感器分为两部分。然后,可以将一个简单的阻尼电阻器并联在一个部分上,将另一部分并联连接到变压器中。使用阻尼分流电感器,在轻载条件下可以实现显着的调节改进,而控制策略没有任何变化,并且硬件成本几乎为零。此外,基于谐振回路的阻抗分析,分析了所提出方法的效果,包括电压增益,软开关特性,抑制高频干扰分量以及系统功耗。此外,详细说明了阻尼分裂电感器参数的详细设计过程和优化条件。最终,实验结果证明了上述96 W原型的特性,但以最大损失0.85 W的器件损耗为代价。

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