高升压DC-DC变换器将可再生能源接入直流纳米电网的分析、设计与实验验证

Waqas Hassan, Samir Gautam, D. Lu, W. Xiao
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引用次数: 4

摘要

本文提出了一种新的非隔离、高升压DC-DC变换器,将可再生能源接入直流微电网。该拓扑利用电感耦合和开关电容技术实现高升压转换比。泄漏能量直接传递到输出,以避免开关两端的电压尖峰。开关器件具有相对较低的电压应力。此外,耦合电感缓解了二极管的反向恢复问题。主要特点包括高效率、低电压应力、低元件数量和成本。详细介绍了该变换器的稳态分析和运行情况。最后,在实验室搭建了工作在100khz开关频率下的200w原型电路,对其性能进行了验证。实验结果证实了理论分析,峰值效率为96.90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis, Design, and Experimental Verification of High Step-up DC-DC Converter to Interface Renewable Energy Sources into DC Nanogrid
This paper proposes a new non-isolated, high step-up DC-DC converter to interface renewable sources into DC microgrid. The topology utilizes the coupled inductor and switched capacitor techniques to achieve high step-up voltage conversion ratio. The leakage energy is directly transferred to output to avoid voltage spikes across the switch. The switching devices have relatively low voltage stresses. In addition, the coupled inductor alleviated the reverse recovery problem of the diode. The key features include high efficiency, low voltage stresses, and low component count and cost. The steady-state analysis and operation of the proposed converter are presented in detail. Finally, a 200 W prototype circuit operating at a switching frequency of 100 kHz is built in the laboratory to verify the performance. The experimental results substantiate the theoretical analysis and show a peak efficiency of 96.90%.
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