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Analysis and design of an isolated high step-up converter based on the secondary side quasi-resonant loops

机译:基于次级侧谐振回路的隔离高升压转换器的分析与设计

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摘要

In a high step-up converter, the primary side input current contributes a significant share of total power loss. Meanwhile, high-voltage stresses of secondary side components are also big issues. This study proposes an isolated converter with secondary side quasi-resonant loops. The push-pull structure is adopted to reduce active switch numbers so the primary side power loss can be controlled in a very minor range. The newly added resonant loops on the secondary side significantly decrease the current stresses of the resonant capacitors, so the power loss caused by capacitor equivalent-series-resistance is reduced. The voltage stresses of diodes and capacitors on the secondary side are also decreased by an improved symmetrical-voltage-quadrupler-rectifier structure. The proposed converter is with the maximum voltage gain equal to 4 without consideration of the transformer. Therefore, it is helpful to decrease the transformer turns ratio. The operation process is analysed in detail and the design considerations are also summarised. Theoretical analysis is verified by the experimental results of a 400 W prototype with 34-40 V input and 380 V output.
机译:在高升压转换器中,初级侧输入电流有助于总功率损耗的大量份额。同时,二次侧部件的高压应力也是很大的问题。该研究提出了一种具有次级副作用环的隔离转换器。采用推挽式结构来减少有源开关编号,因此可以在非常少量的范围内控制初级侧功率损耗。次级侧的新增谐振环显着降低了谐振电容器的电流应力,因此电容器等效串联电阻引起的功率损耗降低。通过改进的对称 - 电压 - 四四分板整流器结构也降低了二极管和电容器上的二极管和电容器的电压应力。所提出的转换器具有等于4的最大电压增益,无需考虑变压器。因此,减少变压器转向比有助于。详细分析了操作过程,并且还总结了设计考虑因素。通过34-40V输入和380 V输出的400 W原型的实验结果通过实验结果验证了理论分析。

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