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Solar PV Based Shunt Active Filter with p-q Theory Control for Improvement of Power Quality

机译:基于p-q理论控制的基于太阳能光伏的并联有源滤波器,可提高电能质量

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In this paper, fuzzy logic controller (FLC)-based three-phase shunt active power filter with photovoltaic (PV) system is proposed. This filter comprises voltage source converter (VSC) with DC link capacitor at the input side and is supplied by PV system. The salient feature of the filter is that it provides reactive power compensation with line current harmonic reduction and also neutral compensation at point of common coupling (PCC). The PV system and a battery are connected with VSC through DC-DC converter. This paper also proposes a control algorithm using instantaneous p-q theory that generates a reference current to counteract the harmonics. The FLC controls the DC link voltage in reference to the above reference current. The performance of the proposed filter for compensation is confirmed by using the MATLAB/Simulink environment and results are validated.
机译:本文提出了基于模糊逻辑控制器(FLC)的光伏系统三相并联有源电力滤波器。该滤波器包括电压源转换器(VSC),在输入侧带有DC链路电容器,由PV系统供电。滤波器的显着特点是,它提供无功功率补偿,同时降低了线路电流谐波,并在公共耦合点(PCC)提供中性补偿。光伏系统和电池通过DC-DC转换器与VSC连接。本文还提出了一种使用瞬时p-q理论的控制算法,该算法可产生参考电流来抵消谐波。 FLC参考上述参考电流控制直流母线电压。使用MATLAB / Simulink环境确认了所提出的补偿滤波器的性能,并验证了结果。

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