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Recent advances in single-phase transformerless photovoltaic inverters

机译:单相无变压器光伏逆变器的最新进展

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Photovoltaic (PV) power systems have been in the spotlight of scientific research for years. However, this technology is still undergoing developments, and several new architectures are proposed each year. This study describes the main challenges facing grid-connected PV systems without galvanic isolation, then carries out a review of the state-of-the-art of single-phase systems. The converter topology review is focused on the match between the different types of converters and the different PV panel technologies, determined by the common-mode voltage between the PV string terminals and the ground. The ground leakage current, due to time variations of this voltage, is a source of electric safety and electromagnetic interference (EMI)-related problems, and its amplitude is constrained by international standards. The basic principles of operation of the different solutions are described, along with their strengths and drawbacks. Conversion efficiency is evaluated qualitatively comparing the semiconductor power losses. Finally, the future trends regarding semiconductor devices, PV panels and international regulations for single-phase grid-connected equipment are discussed, and indications on how these might steer future research efforts in PV converters are inferred.
机译:光伏(PV)电源系统多年来一直是科学研究的焦点。然而,这项技术仍在发展中,并且每年提出几种新的架构。这项研究描述了没有电隔离的并网光伏系统面临的主要挑战,然后对单相系统的最新技术进行了回顾。转换器拓扑审查的重点是不同类型的转换器和不同的PV面板技术之间的匹配,这取决于PV串端子与地面之间的共模电压。由于该电压随时间的变化,对地泄漏电流是电气安全和电磁干扰(EMI)相关问题的来源,其幅度受到国际标准的限制。描述了不同解决方案的基本操作原理,以及它们的优缺点。定性评估转换效率,比较半导体功率损耗。最后,讨论了有关半导体器件,光伏面板和单相并网设备国际法规的未来趋势,并指出了这些趋势如何指导光伏转换器未来的研究工作。

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