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The cost-efficient, full ZVS range hybrid full-bridge-half-bridge family with shared lagging leg: Topology derivation, optimization design and experimental results

机译:具有共用滞后腿的成本效益,全ZVS系列混合桥全桥半桥家族:拓扑推导,优化设计和实验结果

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This paper focuses on a new dc-dc family, in which the lagging leg of a phase-shifted full bridge (PSFB) converter is also used to structure a new half bridge (HB) branch. Such a shared-lagging-leg (SLL) concept not only extends the ZVS range of lagging leg, but also provides another energy path for possible function extension, such as efficiency improvement and dynamical enhancement. In this paper, the existent SLL converters are reviewed and the general derivation of the SLL family is given, the ZVS feature in the SLL is analyzed and the possible improvements are presented. Finally, a new SLL converter integrating a current-driven PSFB and a LC resonant half bridge structures are proposed. The proposed SLL converter preserves all the advantages of its PSFB and HB counterparts, but eliminates their drawbacks, i.e., it has the minimal component amount, achieves the full ZVS range in the legs, eliminates the circle current and gets fully regulation in the output. The aforementioned analysis and design are also verified by the experimental results.
机译:本文侧重于新的DC-DC系列,其中相移全桥(PSFB)转换器的滞后腿还用于构建新的半桥(HB)分支。这种共享滞后 - 腿(SLL)概念不仅延伸了滞后腿的ZVS范围,还提供了另一种能量路径,用于可能的功能扩展,例如效率提高和动态增强。在本文中,对存在的SLL转换器进行了审查,并给出了SLL系列的一般推导,分析了SLL中的ZVS特征,并提出了可能的改进。最后,提出了一种集成电流驱动的PSFB和LC谐振半桥结构的新SLL转换器。所提出的SLL转换器保留了其PSFB和HB对应物的所有优点,但消除了它们的缺点,即,它具有最小的组件量,实现了腿部中的全ZVS范围,消除了圆电流并在输出中得到完全调节。通过实验结果还验证了上述的分析和设计。

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