具有高电压增益的软开关sep升压变换器

K. R. Reshma, G. Renjini
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引用次数: 2

摘要

本文提出了一种基于传统SEPIC(单端初级电感)变换器的高增益dc-dc变换器。基于可再生能源的分布式发电系统近年来得到了迅速发展。这些分布式发电系统由燃料电池、光伏(PV)系统和电池等提供动力。这包括两个转换阶段,在第一阶段,来自PV电池的低电平电压通过使用dc-dc转换器转换为高电平电压。在第二阶段,通过逆变器将高电平直流电压转换成交流电压。电能需求的要求可以通过增加变换器的增益来实现。本文提出的变换器通过用耦合电感代替电感来实现高增益。采用电荷泵电容电池可进一步提高增益。sepic变换器的主要优点是连续输入电流,这有助于精确跟踪太阳能电池的PowerPoint。无电感再生缓冲器减少开关损耗,有助于实现软开关(零电压和零电流开关)条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft switching sepic boost converter with high voltage gain
The paper presents a high gain dc-dc converter which is derived from a traditional SEPIC (single-ended primary-inductor) converter. The distributed generation based system with renewable energy resources have rapidly developed in recent years. These distributed generation systems are powered by sources such as fuel cell, photovoltaic (PV) systems and batteries. This consists of two conversion stages, in the first stage the low level voltage from the PV cell is converted to high level voltage by using a dc-dc converter. In the second stage the high level dc voltage is converted into AC voltage by using inverter. The electrical energy demand requirements can be achieved by increasing the gain of the converter. The proposed converter high gain achieved by replacing the coupled inductor instead of inductor in the basic sepic converter. Further increase of gain is achieved by using charge pump capacitor cell. The main advantage of the sepic converter is continuous input current, which can be helpful in accurate PowerPoint tracking of solar cell The inductorless regenerative snubber that reduces switching losses and helps to attain soft switching (zero voltage and zero current switching) conditions.
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