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Single-Phase Hybrid Boost AC–DC Converters With Switched-Capacitor Cells and Reduced Switch Count

机译:单相混合动力促进带开关电容器单元的AC-DC转换器,减少开关计数

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This article proposes new configurations of hybrid boost rectifier topologies with switched-capacitor cells to reduce the number of switches. The proposed converters use switched-capacitor voltage multipliers to increase the voltage gain of the conventional boost rectifier and reduce the voltage stress across the switches. The new topologies are able to achieve output voltage regulation and a near unity input power factor. The proposed integration of the boost switching cell and the ladder cell reduces the number of semiconductor devices of the conventional hybrid boost rectifier. A generalized topology is presented and two variations of the topology are studied within greater depth. The theoretical analysis of these topologies is performed and evaluated experimentally through a 1-kW prototype with 220 V ac input and 800 V dc output voltages. The converter presented a maximum efficiency of around 97.9% and input power factor above 0.99.
机译:本文提出了具有开关电容器单元的新配置混合升压整流器拓扑,以减少开关的数量。 所提出的转换器使用开关电容电压倍增器来增加传统升压整流器的电压增益,并降低开关上的电压应力。 新拓扑能够实现输出电压调节和近统一输入功率因数。 提升开关单元和梯形电池的建议集成降低了传统混合升压整流器的半导体器件的数量。 提出了广义拓扑,并且在更大的深度内研究了拓扑的两个变化。 通过具有220 V AC输入和800V直流输出电压的1-kW原型进行实验进行这些拓扑结构的理论分析和评估。 转换器显示最大效率约为97.9%,输入功率因数高于0.99。

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