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Analysis and Implementation of LC Series Resonant Converter with Secondary Side Clamp Diodes under DCM Operation for High Step-Up Applications

机译:DCM操作下LC系列谐振转换器LC系列谐振转换器的分析与实现高压高应用

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Resonant converters have attracted a lot of attention because of their high efficiency due to the soft-switching performance. An isolated high step-up converter with secondary-side resonant loops is proposed and analyzed in this paper. By placing the resonant loops on the secondary side, the current stress for the resonant capacitors is greatly reduced. The power loss caused by the equivalent series resistance of the resonant capacitor is also decreased. Clamp diodes in parallel with the resonant capacitors ensure a unique discontinuous current mode in the converter. Under this mode, the active switches can realize soft-switching during both turn-on and turn-off transitions. Meanwhile, the reverse-recovery problems of diodes are also alleviated by the leakage inductor. The converter is essentially a step-up converter. Therefore, it is helpful for decreasing the transformer turn-ratio when it is applied as a high step-up converter. The steady-state operation principle is analyzed in detail and design considerations are presented in this paper. Theoretical conclusions are verified by experimental results obtained from a 500W prototype with a 35V-42V input and a 400V output.
机译:由于软切换性能,谐振转换器由于其高效率而引起了很多关注。本文提出并分析了具有二次侧谐振环的隔离的高压升压转换器。通过将谐振回路放置在次级侧,大大减少了谐振电容器的电流应力。由谐振电容器的等效串联电阻引起的功率损耗也降低。与谐振电容并联的钳位二极管确保转换器中独特的不连续电流模式。在此模式下,有源开关可以在接通和关闭转换期间实现软切换。同时,泄漏电感器也减轻了二极管的反恢复问题。转换器本质上是升压转换器。因此,当它作为高升压转换器应用时,有助于降低变压器旋转比。详细分析了稳态运行原理,本文提出了设计考虑因素。通过使用35V-42V输入和400V输出的500W原型获得的实验结果来验证理论结论。

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