基于开关电容结构的无变压器DC-DC buck-boost变换器开闭环控制设计与仿真

N. Sivasankar, S. Gayathri, S. Vishnupriya
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引用次数: 1

摘要

本文利用开关电容结构实现了陡升压和陡降压的方法。当变换器的有源开关接通时,c开关块中的电容器并联放电。当有源开关断开时,c开关块中的电容器串联充电。所提出的转换器包含与二次型转换器相同的元素等级。新型变换器的优势主要在于磁场中的能量更少,从而节省了电感的尺寸和成本,并且开关元件中的电流应力更小,从而导致更小的传导损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and simulation of open and closed loop control for transformerless DC-DC buck-boost converter using switched-capacitor structure
In this Paper, the method of achieving steep step up and Step down voltage is implemented with the help switched capacitor structures. When the active switch of the converter is on, the capacitors in the C-switching blocks are discharged in parallel. When the active switch is off, the capacitors in the C-switching blocks are charged in series. The proposed converters contain the same rating of elements as the quadratic converters. The superiority of the new converters is mainly based on less energy in the magnetic field, leading to saving in the size and cost of the inductors, and less current Stresses in the switching elements, leading to smaller conduction losses.
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