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Nonisolated High Step-Up DC–DC Converters Adopting Switched-Capacitor Cell

机译:采用开关电容器单元的非隔离式高升压DC-DC转换器

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In a photovoltaic (PV)- or fuel-cell-based grid-connected power system, a high step-up dc–dc converter is required to boost the low voltage of a PV or fuel cell to a relatively high bus voltage for the downstream dc–ac grid-connected inverter. To integrate the advantages of the high voltage gain of a switched-capacitor (SC) converter and excellent output regulation of a switching-mode dc–dc converter, a method of combining the two types of converters is proposed in this paper. The basic idea is that when the switch is turned on, the inductor is charged, and the capacitors are connected in series to supply the load, and when the switch is turned off, the inductor releases energy to charge multiple capacitors in parallel, whose voltages are controlled by a pulsewidth modulation technique. Thus, a high voltage gain of the dc–dc converter can be obtained with good regulation. Based on this principle, a series of new topologies are derived, and the operating principles and voltage gains of the proposed converters are analyzed. Finally, the design of the proposed converter is given, and the experiment results are provided to verify the theoretical analysis.
机译:在基于光伏(PV)或燃料电池的并网电源系统中,需要一个高升压DC-DC转换器才能将PV或燃料电池的低压提升至下游的较高母线电压dc-ac并网逆变器。为了整合开关电容器(SC)转换器的高电压增益和开关模式dc-dc转换器的出色输出调节的优势,本文提出了将两种类型的转换器组合在一起的方法。基本思想是,当开关打开时,电感器被充电,并且电容器被串联连接以为负载供电;当开关被关闭时,电感器释放能量以对多个电容器并联充电,电容器的电压由脉冲宽度调制技术控制。因此,可以通过良好的调节来获得dc-dc转换器的高电压增益。基于此原理,得出了一系列新的拓扑,并对所提出的转换器的工作原理和电压增益进行了分析。最后,给出了所提出的转换器的设计,并提供了实验结果以验证理论分析。

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