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Optimal Design of H5 Bridge Based LLC Converter with Ultra-Wide Input Voltage Range and Synchronous Rectification

机译:具有超宽输入电压范围和同步整流的基于H5桥的LLC转换器的优化设计

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The dilemma between wide input range and narrow frequency band is a classic problem for the frequency modulated LLC converters. Using reconfiguring bridge can mitigate this issue effectively. However, there is a lack of systematic consideration in converter design and optimization. To address this challenge, this work introduces a six-mode LLC converter based on a reconfigurable H5 bridge, and systematically presents its optimal design methodology in ultra-wide input range applications. The dual LLC resonant tanks are driven by identical switching frequency, and provide a normalized gain range from 1 to 5. Synchronized rectification is employed on the secondary side to improve the gain and efficiency. The load distributions between dual tanks are analyzed in detail. It indicates that the equivalent output capacitance of the primary-side MOSFETs is reduced. This enhances the ZVS performance and reduces the circulating loss. The optimal design of transformer ensures a continuous voltage gain over adjacent modes. A 48V, 500W laboratory prototype is designed to validate the concept. The designed prototype is adapted to an 80V∼400V input range. The maximum efficiency is 96.95%.
机译:对于调频LLC转换器,宽输入范围和窄频带之间的难题是一个经典问题。使用重新配置桥可以有效地缓解此问题。但是,在转换器设计和优化中缺乏系统的考虑。为了解决这一挑战,这项工作引入了基于可重配置H5桥的六模式LLC转换器,并系统地介绍了其在超宽输入范围应用中的最佳设计方法。双LLC谐振回路由相同的开关频率驱动,并提供1至5的归一化增益范围。在次级侧采用同步整流,以提高增益和效率。详细分析了双罐之间的载荷分布。这表明初级侧MOSFET的等效输出电容减小了。这增强了ZVS性能并减少了循环损耗。变压器的最佳设计可确保在相邻模式下获得连续的电压增益。设计了48V,500W的实验室原型来验证这一概念。设计的原型适用于80V至400V的输入范围。最高效率为96.95%。

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