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Performance Enhancement of High Step-up DC-DC Converter to Attain High Efficiency and Low Voltage Stress

机译:高阶升压DC-DC转换器的性能增强,以实现高效率和低压应力

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This study proposes a new high voltage gain and high-efficiency dc-dc converter to interface renewable energy resources into dc nanogrid. The proposed topology is formed by a coupled inductor to achieve high voltage gain and low stress on the active switch. The switch voltage stress is significantly low compared to the output voltage. Thus, efficiency is improved by utilizing a low voltage rating MOSFET. Furthermore, the utilization of couple inductor eliminated the reverse recovery losses of diodes. The converter consists of the least number of components that decrease the overall system cost. The steady-state operation and analysis of the proposed converter are discussed comprehensively. The experimental performance is verified by building and testing a prototype in the laboratory. The experimental results prove the consistency with the theoretical analysis. The converter depicts a peak efficiency of 97.10% in the laboratory.
机译:这项研究提出了一种新的高电压增益和高效率DC-DC转换器,以将可再生能源与DC纳米电网相连接。所提出的拓扑由耦合电感器构成,以在有源开关上实现高电压增益和低应力。与输出电压相比,开关电压应力明显较低。因此,通过使用低额定电压的MOSFET可以提高效率。此外,利用耦合电感器消除了二极管的反向恢复损耗。该转换器由最少数量的组件组成,可降低整体系统成本。全面讨论了所提出的转换器的稳态工作和分析。通过在实验室中构建和测试原型来验证实验性能。实验结果证明了与理论分析的一致性。该转换器在实验室中的峰值效率为97.10%。

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