高压脉冲发生器的电力电子密集型解决方案综合概览

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Yingjian Zhuge;Junrui Liang;Minfan Fu;Teng Long;Haoyu Wang
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引用次数: 0

摘要

随着功率半导体和转换器的发展,基于电力电子技术的高压脉冲发生器(HVPG)因其重复频率高、控制灵活、使用寿命长、体积小等优点而兴起。然而,目前还缺乏有关电力电子密集型高压脉冲发生器技术最新进展的全面文献综述。为了填补这一空白,我们对 HVPG 进行了系统综述。首先,我们根据 HVPG 的机制将其分为不同类型。介绍了每种类型及其基本电路和修改。然后,总结了这些拓扑结构的特点、优点和缺点。此外,还探讨了高压脉冲发生器的潜在应用。列出了文献和商业产品中提到的脉冲发生器的性能。最后,讨论了高压气体发生器设计和开发的未来趋势和技术挑战。本文提供了对高压气体发生器的清晰认识,以及为满足特定要求而开发拓扑结构的灵感。本文讨论并总结了当前状态和潜在的未来方向,以促进 HVPG 技术的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive Overview of Power Electronics Intensive Solutions for High-Voltage Pulse Generators
With the advancements in power semiconductors and converters, power electronics based high-voltage pulse generators (HVPG) have emerged due to their advantages of high repetition rate, flexible control, long lifetime, and compact size. However, there is a lack of comprehensive literature review on recent advances in power electronics intensive HVPG technologies. To fill this gap, we present a systematic review on HVPGs. First, HVPGs are classified into different types based on their mechanisms. Each type along with its basic circuits and modifications are introduced. Then, the characteristics, advantages, and disadvantages of these topologies are summarized. Furthermore, the potential applications of HVPGs are explored. The performance of pulse generators mentioned in the literature and commercial products is listed. Finally, future trends and technical challenges in HVPG design and development are discussed. This paper provides a clear understanding of HVPGs and the inspiration of topologies developments to meet the specific requirements. Current state and potential future directions are discussed and summarized to facilitate evolvements in HVPG technology.
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来源期刊
CiteScore
8.60
自引率
0.00%
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审稿时长
8 weeks
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