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A Novel Transformer-less Adaptable Voltage Quadrupler DC Converter with Low Switch Voltage Stress

机译:具有低开关电压应力的新型无变压器自适应电压四倍频DC转换器

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In this paper, a novel transformer-less adjustable voltage quadrupler dc–dc converter with high-voltage transfer gain and reduced semiconductor voltage stress is proposed. The proposed topology utilizes input-parallel output-series configuration for providing a much higher voltage gain without adopting an extreme large duty cycle. The proposed converter cannot only achieve high step-up voltage gain with reduced component count but also reduce the voltage stress of both active switches and diodes. This will allow one to choose lower voltage rating MOSFETs and diodes to reduce both switching and conduction losses. In addition, due to the charge balance of the blocking capacitor, the converter features automatic uniform current sharing characteristic of the two interleaved phases for voltage boosting mode without adding extra circuitry or complex control methods. The operation principle and steady analysis as well as a comparison with other recent existing high step-up topologies are presented. Finally, some simulation and experimental results are also presented to demonstrate the effectiveness of the proposed converter.
机译:在本文中,提出了一种新型的无变压器可调电压四倍频dc-dc转换器,该转换器具有高压传输增益并降低了半导体电压应力。拟议的拓扑利用输入-并联输出-串联配置来提供更高的电压增益,而无需采用非常大的占空比。提出的转换器不仅可以在减少元件数量的情况下实现较高的升压电压增益,而且可以降低有源开关和二极管的电压应力。这样一来,便可以选择额定电压更低的MOSFET和二极管,以减少开关损耗和传导损耗。此外,由于隔离电容器的电荷平衡,该转换器具有两个交错相的自动均匀均流特性,用于升压模式,而无需增加额外的电路或复杂的控制方法。给出了工作原理和稳定的分析,并与其他最新的现有高升压拓扑进行了比较。最后,还给出了一些仿真和实验结果,以证明所提出的转换器的有效性。

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