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A Wide Gain Range LLC Resonant Converter Based on Reconfigurable Bridge and Asymmetric Resonant Tanks

机译:基于可重构电桥和不对称谐振腔的宽增益LLC谐振变换器

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In wide voltage gain range applications, it is demanding to optimize the design of the conventional frequency modulated LLC resonant converter. In this paper, a novel reconfigurable LLC resonant topology is customized to mitigate this design challenge. On the primary side, six MOSFETs are utilized to formulate a reconfigurable inverter bridge. This bridge exhibits six different operation modes. Those operation modes enable a wide voltage gain range with a narrow switching frequency span. Furthermore, two asymmetric LLC resonant tanks with different turns ratios are deployed to further squeeze the switching frequency range. Zero-voltage switching is realized on all MOSFETs during all six modes. The conduction loss is reduced due to the reduced circulating current in each resonant tank. High efficiency and narrow frequency range over a wide voltage gain range are well achieved. The operating principles, design considerations, voltage gain analysis, and key experimental results are presented. A 1 kW laboratory prototype is built to verify the effectiveness of the proposed concept. The prototype converts a 390V input to an 80-420V output. A 97.42% peak efficiency is reported.
机译:在宽电压增益范围的应用中,需要对传统的调频LLC谐振变换器进行优化设计。本文提出了一种新颖的可重构LLC谐振拓扑,以缓解这种设计挑战。在一次侧,利用六个MOSFET构成可重构逆变桥。这座桥展示了六种不同的运行模式。这些操作模式可实现宽电压增益范围和窄开关频率范围。此外,还采用了两个不同匝数比的不对称LLC谐振腔,进一步压缩了开关频率范围。在所有六种模式下,零电压开关在所有MOSFET上实现。由于每个谐振槽中的循环电流减小,传导损耗减小。在较宽的电压增益范围内实现了高效率和较窄的频率范围。介绍了其工作原理、设计考虑、电压增益分析和关键实验结果。建立了一个1千瓦的实验室原型,以验证所提出概念的有效性。样机将390V输入转换为80-420V输出。据报道,峰值效率为97.42%。

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