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C-LLC-LL resonant converter with wide-gain-range and low-stress for hold-up operation

机译:C-LLC-LL谐振转换器,具有宽增益范围和低应力用于保持操作

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摘要

For applications with hold-up time requirements, the LCLC converter can achieve a wider voltage gain range than the LLC converter without degrading the normal operation efficiency due to its variable-magnetizing-inductor (VML) structure, which is formed by an inductor and an additional capacitor. However, the wide gain range achieved by the VML is at the expense of a high resonant voltage stress of the VML's capacitor, which affects the converter volume/cost. Hence, to solve the contradiction between wide gain range and low capacitor voltage stress when the VML technique is adopted for hold-up operation, this paper proposes a novel C-LLC-LL converter. Specifically, the VML is arranged into a novel C-dual-LL structure. By relying on the unique output voltages relation between C-dual-LL's two branches, the reduced voltage stress of the VML's capacitor and the expanded voltage gain range can be simultaneously realized. To evaluate the feasibility of the proposed solution, a comprehensive analysis is conducted, and experimental results obtained from a 500-W C-LLC-LL prototype are also provided.
机译:对于具有升降时间要求的应用,LCLC转换器可以实现比LLC转换器更宽的电压增益范围,而不会降低由于其可变磁化电感器(VML)结构而导致的正常运行效率,该结构由电感器和AN形成额外的电容器。然而,VML实现的宽增益范围是VML电容器的高谐振电压应力的牺牲,影响转换器容积/成本。因此,在采用VML技术采用升压操作时解决宽增益范围和低电容器电压应力之间的矛盾,本文提出了一种新型C-LLC-LL转换器。具体地,VML被排列成新颖的C-Dual-L1结构。通过依靠C-Dual-LL的两个分支之间的独特输出电压,可以同时实现VML电容器的降低的电压应力和扩展电压增益范围。为了评估所提出的解决方案的可行性,进行了综合分析,还提供了从500-W C-LLC-LL原型获得的实验结果。

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