Design Optimization of High-Frequency WBG-Based LLC Resonant Converter for Telecom Applications

S. Karimi, F. Tahami
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引用次数: 2

Abstract

Nowadays high efficiency and power density are desired for designing a power electronic converter. Technology advances in power semiconductor devices, makes it possible to design converters for operation in higher frequencies to reduce size of the converters. As the frequency is increased, switching losses and temperature is also increased, so designing a converter for high frequency operation needs some tradeoffs. In this paper a multi-objective design optimization procedure with regard to efficiency and volume has been carried out for an LLC resonant converter used in telecom applications. This optimization algorithm results in the best set of operating frequency, dead time and suitable choice of wide bandgap switches for the primary bridge and the synchronous rectifier in the secondary side. Finally, a 400V to 48V, lKW LLC resonant converter is designed by the proposed algorithm and a full load efficiency of 96% at 775kHz is obtained.
电信用高频wbg LLC谐振变换器的优化设计
目前,电力电子变换器的设计要求具有较高的效率和功率密度。功率半导体器件的技术进步,使得设计在更高频率下工作的转换器以减小转换器的尺寸成为可能。随着频率的增加,开关损耗和温度也会增加,因此设计高频工作的变换器需要一些权衡。本文对通信用LLC谐振变换器进行了以效率和体积为目标的多目标优化设计。该优化算法得到了主桥和次侧同步整流器的最佳工作频率、死区时间和宽频隙开关的合适选择。最后,利用该算法设计了一个400V ~ 48V, lKW的LLC谐振变换器,在775kHz时获得了96%的满负荷效率。
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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