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Modeling and Feedback Control of LLC Resonant Converters at High Switching Frequency

机译:高开关频率下LLC谐振转换器的建模和反馈控制

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摘要

The high-switching-frequency operation of power converters can achieve high power density through size reduction of passive components, such as capacitors, inductors, and transformers. However, a small-output capacitor that has small capacitance and low effective series resistance changes the small-signal model of the converter power stage. Such a capacitor can make the converter unstable by increasing the crossover frequency in the transfer function of the small-signal model. In this paper, the design and implementation of a high-frequency LLC resonant converter are presented to verify the power density enhancement achieved by decreasing the size of passive components. The effect of small output capacitance is analyzed for stability by using a proper small-signal model of the LLC resonant converter. Finally, proper design methods of a feedback compensator are proposed to obtain a sufficient phase margin in the Bode plot of the loop gain of the converter for stable operation at 500 kHz switching frequency. A theoretical approach using MATLAB, a simulation approach using PSIM, and experimental results are presented to show the validity of the proposed analysis and design methods with 100 and 500 kHz prototype converters
机译:电源转换器的高开关频率操作可通过减小无源元件(如电容器,电感器和变压器)的尺寸来实现高功率密度。但是,具有小电容和低有效串联电阻的小输出电容器会改变转换器功率级的小信号模型。这种电容器可以通过增加小信号模型的传递函数中的交叉频率来使转换器不稳定。在本文中,提出了一种高频LLC谐振转换器的设计和实现,以验证通过减小无源元件的尺寸而实现的功率密度增强。通过使用LLC谐振转换器的适当小信号模型来分析稳定性对小输出电容的影响。最后,提出了一种适当的反馈补偿器设计方法,以便在转换器的环路增益的波特图中获得足够的相位裕度,以便在500 kHz开关频率下稳定工作。提出了使用MATLAB的理论方法,使用PSIM的模拟方法以及实验结果,以证明所提出的100和500 kHz原型转换器的分析和设计方法的有效性

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