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Single-Switch High Step-Up DC-DC Converter with a Resonant Voltage Doubler and low Duty Ratio

机译:单开关高升压DC-DC转换器,具有谐振电压倍增器和低占空比

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摘要

High voltage gain can be easily achieved by utilizing a coupled inductor, but high voltage stresses of switching devices can result from its leakage inductance. Hence, snubber circuits are required to alleviate voltage stresses but these can generally lead to power losses. In this paper, a single-switch high step-up DC-DC converter with a coupled inductor and low duty ratio is proposed. A resonant voltage doubler is integrated to obtain higher voltage gain. Zero-current-switching (ZCS) for the diodes in the voltage doubler is achieved by exploiting resonance of the leakage inductance. Additionally, there is no surge voltage in any of the switching device and this makes dissipative snubber circuits unnecessary. Furthermore, maximum voltage stresses of switching devices are much lower than the output voltage and high voltage gain with low duty ratio can be obtained due to the modified cascade boost structure. All this helps to improve overall power efficiency. The operational principle and characteristics of the proposed converter is provided in detail. Experimental investigation using an output 400V-140W prototype at an input 24V- 48V is conducted to verify its functionality.
机译:通过利用耦合电感器,可以容易地实现高电压增益,但是开关装置的高压应力可以由漏电感导致。因此,需要缓冲电路来缓解电压应力,但这些通常可以导致功率损耗。本文提出了一种具有耦合电感器和低占空比的单开关的高压升压DC-DC转换器。集成了谐振电压倍增器以获得更高的电压增益。通过利用泄漏电感的共振实现电压倍增器中的二极管中的零电流切换(ZCS)。另外,在任何开关装置中没有浪涌电压,这使得不需要耗散的缓冲电路。此外,由于改进的级联升压结构,切换装置的最大电压应力远低于输出电压,并且可以获得具有低占空比的高电压增益。所有这些都有助于提高整体功率效率。详细提供了所提出的转换器的操作原理和特性。进行在输入24V-48V处使用输出400V-140W原型的实验研究以验证其功能。

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