Enhanced Three-Phase Shunt Active Power Filter Interfacing a Renewable and an Energy Storage System

Ana M. C. Rodrigues, Catia F. Oliveira, T. Sousa, D. Pedrosa, V. Monteiro, J. Afonso
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Abstract

This paper presents an enhanced three-phase shunt active power filter (SAPF) that, besides its inherent functionalities of power quality problems compensation, also allows the interface of a renewable energy source (RES, namely solar photovoltaic – PV panels) and an energy storage system (ESS, namely batteries) through its dc-link. On the power grid-side, a three-phase four-wire voltage-source ac-dc converter is connected with the power grid, operating as an SAPF, whereas the RES-interface and the ESS-interface are made through a three-port multilevel dc-dc converter connected to the dc-link of the SAPF. Besides, to compensate power quality problems related to currents, the SAPF also permits the controllability of the bidirectional power exchanged between the power grid and the dc interfaces, i.e., the RES and the ESS. The operation principle of the whole system, as well as the detailed control algorithms, are described in the paper. A validation was performed through computer simulations, where it is possible to analyze the different operation modes of the enhanced SAPF interfacing a RES and an ESS through the dc-link.
可再生能源与储能系统的增强型三相并联有源电力滤波器
本文提出了一种增强型三相并联有源电力滤波器(SAPF),除了其固有的电能质量问题补偿功能外,还允许可再生能源(RES,即太阳能光伏- PV板)和储能系统(ESS,即电池)通过其直流链路进行接口。在电网侧,一个三相四线电压源ac-dc转换器与电网连接,作为SAPF运行,而res -接口和ess -接口是通过一个三端口多电平dc-dc转换器连接到SAPF的dc链路上。此外,为了补偿与电流相关的电能质量问题,SAPF还允许在电网和直流接口(即RES和ESS)之间交换的双向功率的可控性。本文介绍了整个系统的工作原理,以及详细的控制算法。通过计算机模拟进行验证,可以分析通过dc-link连接RES和ESS的增强型SAPF的不同工作模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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