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Design Procedure for High-Frequency Operation of the Modified Series-Resonant APWM Converter to Reduce Size and Circulating Current

机译:改进的串联谐振APWM转换器高频工作以减小尺寸和减小循环电流的设计程序

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摘要

In this paper, a generalized analysis for the auxiliary network in a modified series-resonant asymmetrical pulse-width-modulated (APWM) converter is performed to produce a design procedure that ensures that zero voltage switching (ZVS) is achieved for any series-resonant APWM converter design. New equations that correctly predict the magnitude of auxiliary current are obtained by accounting for the trapezoidal nature of the waveforms associated with high-frequency operation, and the dead time between the switches in the half-bridge. A design example of a 48-V/1.2-V, 25-A converter operating at 1 MHz is chosen to highlight the validity of the proposed design and that superior results can be achieved if the resonant tank is designed in tandem with the auxiliary network. Experimental results verify that ZVS is achieved, and that the proposed design reduces the auxiliary inductor by close to a factor of 3.
机译:本文对改进的串联谐振非对称脉宽调制(APWM)转换器中的辅助网络进行了广义分析,以产生设计过程,以确保对任何串联谐振都实现零电压开关(ZVS) APWM转换器设计。通过考虑与高频操作相关的波形的梯形性质以及半桥开关之间的死区时间,可以得出正确预测辅助电流大小的新方程式。选择工作在1 MHz频率下的48V / 1.2V,25A转换器的设计示例,以突出提出的设计的有效性,并且,如果谐振储能器与辅助网络串联设计,则可以获得更好的结果。 。实验结果验证了ZVS的实现,并且所提出的设计将辅助电感器减小了近3倍。

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