用于质子交换膜电解槽的交错DC-DC降压转换器的文献综述

V. Guida, D. Guilbert, B. Douine
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引用次数: 10

摘要

最近,利用电解槽通过水电解制氢在工业领域引起了极大的兴趣,以取代目前基于化石燃料(如石油、煤)的制氢途径。为了从去离子水中产生氢,必须给电解槽提供极低的直流电压。为此,一般采用DC-DC降压变换器。然而,从输出电流纹波和电压增益的角度来看,这些拓扑结构存在一些缺点。为了满足这些期望,交错DC-DC降压转换器被认为是提供质子交换膜(PEM)电解槽的有前途和有趣的候选者。事实上,这些转换器提供了一些优势,包括输出电流纹波减少和可靠性,在电源开关故障的情况下。此外,在过去的十年中,为了提高它们的转换增益,对这些拓扑进行了许多改进。因此,本文的主要目标是全面研究具有高电压增益的不同交错降压DC-DC拓扑结构,这是PEM电解槽应用所需要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Literature Survey of Interleaved DC-DC Step-Down Converters for Proton Exchange Membrane Electrolyzer Applications
Recently, the use of electrolyzers for hydrogen production through water electrolysis is of great interest in the industrial field to replace current hydrogen production pathways based on fossil fuels (e.g. oil, coal). The electrolyzers must be supplied with a very low DC voltage in order to produce hydrogen from the deionized water. For this reason, DC-DC step-down converters are generally used. However, these topologies present several drawbacks from output current ripple and voltage gain point of view. In order to meet these expectations, interleaved DC-DC step-down converters are considered as promising and interesting candidates to supply proton exchange membrane (PEM) electrolyzers. Indeed, these converters offer some advantages including output current ripple reduction and reliability in case of power switch failures. In addition, over the last decade, many improvements have been brought to these topologies with the aim to enhance their conversion gain. Hence, the main goal of this paper is to carry out a thorough state-of-the-art of different interleaved step-down DC-DC topologies featuring a high voltage gain, needed for PEM electrolyzer applications.
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