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Experimental study of high step-up quasi-Z-source DC-DC converter with synchronous rectification

机译:同步整流高升压准Z源DC-DC变换器的实验研究

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Quasi-Z-source DC-DC converters have attracted research interest due to their numerous advantages in emerging applications. However, they suffer from relatively low efficiency. This paper presents semiconductor loss breakdown of the quasi-Z-source DC-DC converter to show that conduction losses in semiconductors contribute most to overall losses. Synchronous rectification realized through replacement of diodes with N-channel MOSFETs was proposed to improve the converter efficiency in prior works. Our detailed experimental study of efficiency improvement with synchronous rectification was based on a 250 W prototype. Results were first obtained for replacement of diodes in the primary side only, then in the secondary side only. Finally, a converter that contains only controlled switches was evaluated. Efficiency curves measured were compared with those for the baseline diode-based topology. The experimental study was performed using operating points typical of photovoltaic module integrated converters.
机译:准Z源DC-DC转换器由于在新兴应用中的众多优势而吸引了研究兴趣。但是,它们的效率相对较低。本文介绍了准Z源DC-DC转换器的半导体损耗细分,以表明半导体中的传导损耗对整体损耗的影响最大。提出了通过用N沟道MOSFET替换二极管实现的同步整流,以提高现有工作中的转换器效率。我们基于250 W原型对同步整流效率进行的详细实验研究。首先获得仅在初级侧更换二极管的结果,然后仅在次级侧更换二极管。最后,评估了仅包含受控开关的转换器。将测得的效率曲线与基于基线二极管的拓扑的效率曲线进行了比较。使用光伏模块集成转换器的典型工作点进行了实验研究。

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