低功耗应用隔离式高升压直流-直流转换器的综合比较

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE open journal of power electronics Pub Date : 2024-07-25 DOI:10.1109/OJPEL.2024.3433554
Saeed Pourjafar;Hossein Afshari;Parham Mohseni;Oleksandr Husev;Oleksandr Matiushkin;Noman Shabbir
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引用次数: 0

摘要

本文对隔离式高升压直流-直流拓扑结构进行了全面评估。这些转换器特别适用于利用可再生能源或替代能源的分布式发电系统,这些系统需要宽输入电压范围和负载调节。有鉴于此,这项工作主要集中于对可能的工业应用中采用的各种隔离配置进行比较分析。因此,文献中出现了多种隔离结构,包括反激式、正激式、推挽式、全桥式和其他类似解决方案。为了进行比较和理论分析,考虑了一些电路参数,其中包括电压转换率、半导体元件电压应力、元件尺寸以及传导和开关损耗。此外,还讨论了所选配置的成本估算和财务可行性。此外,还介绍了现有解决方案的设计程序和实验原型以及主要结果。根据这项调查,作者提供了一份指南,帮助研究人员确定具有宽输入电压范围和电隔离功能的不同隔离拓扑结构,从而确定该领域的前瞻性研究方向。
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Comprehensive Comparison of Isolated High Step-up DC-DC Converters for Low Power Application
In this paper comprehensive evaluations of isolated high step-up dc-dc topologies have been investigated. These converters are especially well suited for distributed generation systems utilizing renewable or alternative energy sources that need a wide input voltage range with load regulation. With this in mind, this work primarily concentrates on comparative analysis of various isolated configurations employed in possible industry applications. Consequently, several isolated structures, including flyback, forward, push-pull, and full bridge and other similar solutions have been carried out in the literature. For the purpose of comparative and theoretical analysis, some of the circuit parameters are considered, which include voltage conversion ratio, semiconductor element voltage stress, component size, and conduction and switching losses. Furthermore, the selected configurations have been discussed in terms of cost estimation and financial feasibility. In addition, the design procedure and experimental prototypes of the available solutions with the main results are presented. Derived from this investigation, the authors provide a guide to help researchers to identify different isolated topologies with wide input voltage range and galvanic isolation for prospective research directions within this area.
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CiteScore
8.60
自引率
0.00%
发文量
0
审稿时长
8 weeks
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