基于双电感的双输入双输出DC-DC变换器及其在直流微电网中的应用分析

R. Aravind, Sivaprasad Athikkal, Raviteja Meesala, K. J. Reddy, Ritesh Dash, V. Subburaj
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引用次数: 1

摘要

双开关电感结构的双输入双输出DC-DC变换器具有结构坚固、成本低、功率密度高等优点,广泛应用于直流微电网和电动汽车等领域。然而,由于在上述应用中使用的非常规电源的低电压水平,升压型DC-DC转换器的意义是如此之高。本文提出了一种新的升压变换器拓扑结构,它能从两个不同的输入电源输出两个不同的电压。它主要包含两个电感,以提高电压转换比。在必要的方程和电路的支持下,对变换器进行了深入的分析。利用仿真和实验平台对DC-DC变换器进行了性能评估,并给出了所需的波形。本文还对所提出的变换器进行了比较研究,以表明变换器具有更好的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual Inductor Based Two Input Two Output DC-DC Converter and its Analysis for DC Microgrid Application
Two input two output DC-DC converters with two switched inductor structure are widespread in DC micro grid and Electric Vehicle (EV) applications with merits of solid structure, lower cost and high-power density. However, owing to the low voltage levels of the non-conventional sources used in the above applications, the significance of step up type DC-DC converters is so high. In this paper, a step up converter that is expert to deliver two different voltages at the output side from two different input energy sources is proposed as a new topology. It mainly contains two inductors for improving the voltage conversion ratio. Thorough analysis of converter has been performed with support of necessary equations and circuits. The performance assessment of DC-DC converter is done with simulation and experimental platforms and required waveforms are presented. A comparative study of the proposed converter is also fulfilled to signify the better features of the converter.
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