Analysis and design of a high frequency isolated full bridge CLL resonant DC-DC converter for renewable energy applications

Uday Patil, H. Nagendrappa
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引用次数: 4

Abstract

In this paper, a new PWM gating scheme is proposed for fixed frequency full-bridge DC-DC CLL resonant converter with capacitive output filter. An approximate complex ac circuit approach is used for the steady state analysis of the converter. The optimum design of the converter is described with the help of design curves for a sample converter of rating 200 W, 40–80 V DC input and output DC voltage of 200 V. By applying the proposed gating scheme, higher conversion efficiency is obtained due to zero-voltage-switching of the converter switches for wide variations in input voltage and the load. PSIM simulations are performed to verify theoretical predictions about the performance of the converter for variations in load and input voltage. The theoretical and simulation results are given and discussed.
可再生能源用高频隔离全桥CLL谐振DC-DC变换器的分析与设计
针对带电容输出滤波器的定频全桥DC-DC CLL谐振变换器,提出了一种新的PWM门控方案。采用近似复交流电路的方法对变换器进行稳态分析。以额定功率为200w,直流输入为40 ~ 80v,直流输出电压为200v的变换器为例,通过设计曲线描述了变换器的优化设计。采用所提出的门控方案,在输入电压和负载变化较大的情况下,变换器开关可以实现零电压开关,从而获得更高的转换效率。进行了PSIM仿真,以验证关于负载和输入电压变化的变换器性能的理论预测。给出了理论和仿真结果并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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