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A Single-Phase Dual-Stage PV-Grid System with Active Filtering

机译:具有有源滤波的单相双阶段光伏并网系统

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Integrating photovoltaic based electricity into the grid and power quality improvement have become two major issues in electrical system. Formerly, these can be solved by using two converter systems separately, a PV-Grid System and an active power filter. But recent technology uses only a converter system to do both function. An existed shunt active power filter (SAPF) can be modified to form a dual-stage PV-Grid with active filtering capability. In this paper, a PV-Grid System that is capable to transfer all power generated by PV modules and reduce harmonic contents is proposed. The system was formed by connecting a boost chopper as a Maximum Power Point Tracker and PV modules to the DC-link capacitor of a single-phase SAPF. It just needed a current transducer and also required simpler control circuits. A voltage controller was needed to achieve power equilibrium while a current controller was needed to make the grid current sinusoidal with unity power factor. To verify the analysis, simulations and experiments were done.
机译:将基于光伏的电能集成到电网中以及提高电能质量已经成为电气系统中的两个主要问题。以前,这些问题可以通过分别使用两个转换器系统,PV电网系统和有源功率滤波器来解决。但是,最近的技术仅使用转换器系统来实现这两种功能。可以对现有的并联有源电力滤波器(SAPF)进行修改,以形成具有有源滤波功能的二级PV-Grid。本文提出了一种光伏电网系统,该系统能够传输光伏组件产生的所有电能并减少谐波含量。该系统是通过将作为最大功率点跟踪器的升压斩波器和PV模块连接至单相SAPF的DC-link电容器而形成的。它只需要一个电流传感器,还需要更简单的控制电路。需要电压控制器来实现功率平衡,而需要电流控制器来使电网电流与单位功率因数成正弦关系。为了验证分析,进行了仿真和实验。

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