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A Single-Stage Microinverter Without Using Eletrolytic Capacitors

机译:不使用电解电容器的单级微型逆变器

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This paper presents a new microinverter topology that is intended for single-phase grid-connected PV systems. The proposed microinverter topology is based on a flyback converter, where an extra switch is added to separate the decoupling capacitor from the PV Module, which allows for a high voltage and voltage ripples across its terminals. This results in reducing the power decoupling required capacitance. In this manner, long life-time low power density film capacitors can be used instead of life-time limited high power density electrolytic capacitors, resulting in remarkable increase of microinverter's lifespan. The main advantages of the proposed topology are summarized as: 1) eliminating the double-frequency power ripple using a small film capacitor; 2) using long lifetime film capacitors, which will improve the reliability of the inverter; and 3) requiring no additional circuitry to manage the transformer leakage energy. A 100-W microinverter prototype was built to verify the proposed topology. Experimental results show that the proposed topology and its control scheme can realize the power decoupling, while maintaining very good conversion efficiency numbers.
机译:本文介绍了一种新的微逆变器拓扑,该拓扑旨在用于单相并网光伏系统。拟议的微逆变器拓扑基于反激转换器,其中添加了一个额外的开关以将去耦电容器与PV模块隔离,从而允许其端子之间产生高电压和电压纹波。这导致减小了功率去耦所需的电容。以此方式,可以使用寿命长的低功率密度薄膜电容器来代替寿命有限的高功率密度电解电容器,从而大大提高了微型逆变器的使用寿命。提出的拓扑结构的主要优点概括为:1)使用小型薄膜电容器消除了双频电源纹波; 2)使用长寿命薄膜电容器,将提高逆变器的可靠性; 3)不需要额外的电路来管理变压器的泄漏能量。构建了一个100 W的微型逆变器原型以验证所提出的拓扑。实验结果表明,所提出的拓扑结构及其控制方案可以实现功率去耦,同时保持很好的转换效率数值。

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