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Design and analysis of a proposed transformerlesson-isolated high-gain DC-DC converter for renewable energy applications

机译:用于可再生能源应用的建议无变压器/非隔离高增益DC-DC转换器的设计与分析

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This paper proposes a transformerlesson-isolated, high-gain DC-DC converter required to increase low voltages in renewable energy applications. The converter topology uses only a single-switch with minimum voltage stress over the semiconductors. The design is obtained by integrating both the boost and the quadratic boost converter topology. Operating principles of the converter circuit topology are detailed, and the steady-state performance is analysed. The design results in lower switching voltage that significantly improves the efficiency of the controlled switches. The results obtained by computer simulation demonstrate that the high voltage gain is obtained at lower values of duty ratio with an efficiency of more than 94%. The merits of the proposed converter are given in comparison with other high-gain DC-DC converters. Finally, a laboratory model is built using the digital signal processor [dSPACE (DS-1104)] to verify the converter theory. The theoretical, simulation and experimental results that indicate the claimed converter performance and capability are given.
机译:本文提出了一种无变压器/非隔离的高增益DC-DC转换器,需要增加可再生能源应用中的低电压。转换器拓扑仅使用半导体上具有最小电压应力的单开关。通过集成升压和二次升压转换器拓扑来获得设计。详细说明了转换器电路拓扑的操作原理,分析了稳态性能。该设计导致较低的开关电压,显着提高了受控开关的效率。通过计算机模拟获得的结果表明,在占占空比的较低值下获得高电压增益,其效率超过94%。与其他高增益DC-DC转换器相比,给出了所提出的转换器的优点。最后,使用数字信号处理器[DSPACE(DS-1104)]建立实验室模型以验证转换器理论。给出了指示所要求保护的转换器性能和能力的理论,仿真和实验结果。

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