工作在DCM中的LCC谐振变换器模态分析与优化设计

Xingguo Tan, X. Ruan
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引用次数: 2

摘要

工作在断续电流模式(DCM)下的LCC谐振变换器可以实现电源开关的零电流通断和整流二极管的零电流关断。因此,该变换器适用于采用IGBT作为电源开关的大功率开关电源。该变换器有三种主要工作模式,在以往文献中分别对其中两种工作模式进行了分析和设计,以减小元件应力,提高变换器满负荷工作效率。由于变换器的工作模式与负载有关,本文综合考虑了变换器的三种工作模式进行分析和设计。该设计降低了谐振电感在整个负载范围内的有效值电流,从而提高了整个负载范围内的变换器效率。建立了一个5kw, 50v的样机来验证该设计方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mode analysis and optimal design of LCC resonant converter operating in DCM
LCC resonant converter operating in discontinuous current mode (DCM) can realize zero current switching (ZCS) turn-on and turn-off of power switches and ZCS turn-off of rectifier diodes. Therefore, the converter is suitable for high power switching power supplies where IGBT are employed as the power switches. This converter has three main operating modes, two of which have been analyzed and designed respectively in previous literatures to reduce component stresses and improve the converter efficiency at the full load. As the operating mode is related to load, this paper considers all of the three operating modes to analyze and design the converter. This design reduces RMS current of resonant inductor in the entire load range, therefore improves converter efficiency in the entire load range. A 5 kW, 50 V prototype is built to validate the effectiveness of this design method.
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