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A Review of Power Decoupling Techniques for Microinverters With Three Different Decoupling Capacitor Locations in PV Systems

机译:光伏系统中具有三种不同去耦电容器位置的微型逆变器的功率去耦技术综述

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摘要

The reliability of the microinverter is a very important feature that will determine the reliability of the ac-module photovoltaic (PV) system. Recently, many topologies and techniques have been proposed to improve its reliability. This paper presents a thorough study for different power decoupling techniques in single-phase microinverters for grid-tie PV applications. These power decoupling techniques are categorized into three groups in terms of the decoupling capacitor locations: 1) PV-side decoupling; 2) dc-link decoupling; and 3) ac-side decoupling. Various techniques and topologies are presented, compared, and scrutinized in scope of the size of decoupling capacitor, efficiency, and control complexity. Also, a systematic performance comparison is presented for potential power decoupling topologies and techniques.
机译:微型逆变器的可靠性是非常重要的功能,它将决定交流模块光伏(PV)系统的可靠性。最近,已经提出了许多拓扑和技术来提高其可靠性。本文对用于并网光伏应用的单相微逆变器中的不同功率去耦技术进行了深入研究。根据去耦电容器的位置,这些功率去耦技术可分为三类:1)PV侧去耦; 2)直流链路去耦; 3)交流侧去耦。在去耦电容器的尺寸,效率和控制复杂度的范围内,提出,比较和检查了各种技术和拓扑。此外,还针对潜在的电源去耦拓扑和技术提出了系统的性能比较。

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