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Analysis and implementation of a boost DC–DC converter with high voltage gain and continuous input current

机译:具有高压增益和连续输入电流的升压DC-DC转换器的分析与实现

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In this study, a new high-voltage gain DC-DC converter based on the coupled inductor and voltage lift circuit technique is proposed. In the suggested converter, a high-voltage conversion ratio is achieved using a low turn's ratio of the coupled inductor which decreases the volume of core. Also, by selecting the low number of turn's ratio of coupled inductors, the peak voltage through the semiconductors is decreased subsequently. Moreover, the voltage lift circuit is utilised for further increasing the voltage gain and clamping the voltage spike through the main power switch. Zero current switching condition of diodes is another merit of the proposed DC-DC converter, which leads to decrease in the reverse recovery losses generated by diodes. Therefore, the overall efficiency can be enhanced. Technical analysis and comparison surveys with similar topologies are provided to demonstrate the effectiveness of the suggested DC-DC converter. Finally, to validate the performance of the proposed structure, a laboratory prototype with a 200 W power level and 25 kHz operating frequency is implemented.
机译:在该研究中,提出了一种基于耦合电感器和电压提升电路技术的新型高压增益DC-DC转换器。在所建议的转换器中,使用耦合电感器的低转的比率来实现高压转换比,这减小了核心的体积。而且,通过选择耦合电感器的较低数量的比率,随后通过半导体的峰值电压降低。此外,电压提升电路用于进一步增加电压增益并通过主电源开关夹紧电压尖峰。二极管的零电流切换条件是所提出的DC-DC转换器的另一个优点,这导致二极管产生的反向恢复损耗降低。因此,可以提高整体效率。提供了具有类似拓扑的技术分析和比较调查,以证明所提出的DC-DC转换器的有效性。最后,为了验证所提出的结构的性能,实现了具有200 W功率水平和25 kHz工作频率的实验室原型。

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