A new active power decoupling using Bi-directional Resonant Converter for flyback-type AC-module system

Mi-na Kim, Yong-su Noh, Jun-Gu Kim, T. Lee, C. Won
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引用次数: 5

Abstract

In general, the photovoltaic (PV) power generation system has mismatch problem between oscillated AC power and constant input DC power. It has been solved by using large electrolytic capacitors. However, due to the low life span of electrolytic capacitors, the active power decoupling method is studied to substitute from the conventional type capacitor to film capacitor. This paper proposes new active power decoupling using bi-directional Resonant Converter (APD-BRC) for flyback-type AC-module system. Proposed APD-BRC circuit is composed of bi-directional buck-boost converter using soft-switching and it expected higher system efficiency than conventional decoupling system. Since voltage ripple of PV module output is reduced, electrolytic capacitor can be replaced to film capacitor. The proposed topology is verified by simulation results.
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一种基于双向谐振变换器的反激式交流模块有源功率解耦方法
通常,光伏发电系统存在振荡交流功率与恒输入直流功率失配的问题。采用大型电解电容器解决了这一问题。然而,由于电解电容器的寿命较低,研究了有源功率去耦方法,以取代传统的型电容器为薄膜电容器。针对反激式交流模块系统,提出了一种基于双向谐振变换器(APD-BRC)的有功功率解耦方法。所提出的APD-BRC电路采用软开关构成双向降压升压变换器,与传统的去耦系统相比,具有更高的系统效率。由于光伏组件输出电压纹波减小,可以将电解电容替换为薄膜电容。仿真结果验证了所提出的拓扑结构。
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