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Unified Three-Port Topology Integrating a Renewable and an Energy Storage System with the Grid-Interface Operating as Active Power Filter

机译:统一的三端口拓扑结构,将可再生能源和储能系统与作为有源电力滤波器的电网接口集成在一起

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This paper presents the experimental validation of a unified three-port topology, integrating a renewable energy source (RES) and an energy storage system (ESS) (or an electric vehicle) with the grid-interface operating as active power filter (APF). The proposed topology is based on a three-phase grid-interface (whose role is to operate as a APF grid-tied inverter capable of compensating current harmonics, imbalanced currents and low power factor), on a RES-interface for solar photovoltaic (PV) panels (whose role is to extract the maximum power from the PV panels), and on an ESS-interface for batteries (whose role is to store/inject energy according to the power management of the electrical installation). The paper presents the control algorithms for each interface within the scope of the different operation modes allowed by the unified three-port topology. Simulation and experimental results are presented in order to validate the distinguishing aspects of the proposed unified three-port topology.
机译:本文介绍了一个统一的三端口拓扑的实验验证,该拓扑将可再生能源(RES)和储能系统(ESS)(或电动汽车)与电网接口作为有源电力滤波器(APF)集成在一起。拟议的拓扑基于太阳能光伏(PV)的RES-接口上的三相电网接口(其作用是作为能够补偿电流谐波,不平衡电流和低功率因数的APF并网逆变器运行)面板(其作用是从PV面板中提取最大功率),并在电池的ESS接口上(其作用是根据电气设备的电源管理来存储/注入能量)。本文提出了在统一的三端口拓扑所允许的不同操作模式范围内的每个接口的控制算法。给出了仿真和实验结果,以验证所提出的统一三端口拓扑结构的不同之处。

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