Review, Properties, and Synthesis of Single-Switch Non-Isolated DC-DC Converters with a Wide Conversion Range

F. L. Tofoli, Thaís Martins Jajah Carlos, A. Morais
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Abstract

The cascaded connection of power converters extends conversion ranges but requires careful consideration due to high component count and efficiency concerns, as power is processed redundantly. Furthermore, using several active switches that must be turned on simultaneously may introduce significant drive and control complexity. To overcome this limitation, single-switch quadratic DC-DC converters have been proposed in the literature as a prominent choice for various applications, such as light-emitting diode (LED) drivers. Nevertheless, the motivation behind the conception of such topologies, beyond extending the conversion ratio, remains unclear. Another unexplored issue is the possibility of obtaining single-switch versions of cascaded converters consisting of multiple stages. In this context, this work investigates the synthesis of single-switch non-isolated DC-DC converters for achieving high step-down and/or high step-up based on the graft scheme. Key issues such as the voltage gain, additional stresses on the active switches, component count, and behavior of the input current and output stage current are addressed in detail. An in-depth discussion is presented to identify potential advantages and shortcomings of the resulting structures.
具有宽转换范围的单开关非隔离直流-直流转换器的回顾、特性和合成
功率转换器的级联连接可扩展转换范围,但由于需要对功率进行冗余处理,因此需要仔细考虑高元件数量和效率问题。此外,使用必须同时开启的多个有源开关可能会带来显著的驱动和控制复杂性。为了克服这一限制,文献中提出了单开关二次 DC-DC 转换器,作为各种应用(如发光二极管 (LED) 驱动器)的主要选择。然而,除了扩大转换率之外,这种拓扑结构背后的动机仍不明确。另一个尚未探索的问题是,是否有可能获得由多级组成的级联转换器的单开关版本。在此背景下,本研究以嫁接方案为基础,研究了单开关非隔离 DC-DC 转换器的合成,以实现高降压和/或高升压。详细讨论了电压增益、有源开关的额外压力、元件数量以及输入电流和输出级电流的行为等关键问题。报告还进行了深入讨论,以确定所产生结构的潜在优势和不足。
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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