HIGH-VOLTAGE GAIN DC-DC CONVERTER FOR PHOTOVOLTAIC APPLICATIONS IN DC NANOGRIDS

Yury Pontes, C. A. Silva, E. Junior
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Abstract

– Photovoltaic (PV) systems used in DC Nanogrids present prominent advantages associated with low maintenance need and operation costs. Owing to the low output voltage of the PV module, highly efficient high-voltage gain DC-DC converters are required for connection with the DC nanogrid. This work presents a novel DC-DC converter topology with current source characteristic for PV applications and current injection in DC nanogrids. The introduced converter uses coupled inductors and switched capacitors to achieve high voltage gain with low component count and without using extreme duty ratios. Besides, the main switch is turned on with nearly zero current, thus contributing to minimized switching losses. The qualitative and quantitative analyzes of the circuit are presented in detail and a prototype rated at 200 W is developed and evaluated in the laboratory. Experimental results demonstrate efficient renewable energy conversion, where the maximum efficiency is 96.8%.
用于光伏直流纳米电网的高压增益dc - dc变换器
-用于直流纳米电网的光伏(PV)系统具有维护需求低和运行成本低的突出优势。由于光伏组件的输出电压较低,因此需要高效的高压增益DC-DC变换器与直流纳米电网连接。本文提出了一种新颖的DC-DC变换器拓扑结构,具有光伏应用和直流纳米电网电流注入的电流源特性。介绍的转换器使用耦合电感和开关电容器,以低元件计数和不使用极端占空比实现高电压增益。此外,主开关几乎以零电流打开,从而有助于最小化开关损耗。对该电路进行了详细的定性和定量分析,并开发了额定功率为200w的样机,并在实验室进行了测试。实验结果表明,可再生能源转换效率高,最高效率为96.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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