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Experimental Validation of Impedance Source Network Based Active Power Filter for Interconnection of PV System into Grid

机译:基于阻抗源网络的有源电力滤波器对光伏系统并网的实验验证

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This paper proposes a Solar Photovoltaic (SPV) interfaced Impedance Source Inverter (ZSI) based shunt Active Power Filter (APF) for compensation of power quality events such as current harmonics, voltage interruption and reactive power burden. The instantaneous reactive power theories with Fuzzy Logic Controller (FLC) based DC link voltage regulator is used to estimate the reference current signal and control the operation of the SPV interfaced shunt APF. Maximum Power Point Tracking (MPPT) algorithm is also employed to obtain the optimum maximum power point. The response of the SPV interfaced ZSI-shunt APF for mitigation of current harmonic distortions and reactive power compensation are investigated and compared with SPV interfaced Voltage Source Inverter (VSI) based shunt APF. The proposed SPV interfaced shunt APF employed with the FLC-based instantaneous reactive power theory control algorithm offers long lasting compensation against current-based distortions and reactive power requirements. The performance of the SPV interfaced ZSI based shunt APF has been verified by the simulation and experimental study. These results confirm the practicability of the proposed system in various load conditions with effective harmonic mitigation capability.
机译:本文提出了一种基于太阳能光伏(SPV)接口的阻抗源逆变器(ZSI)的并联有源功率滤波器(APF),用于补偿电能质量事件,例如电流谐波,电压中断和无功功率负担。带有基于模糊逻辑控制器(FLC)的DC链路稳压器的瞬时无功功率理论用于估计参考电流信号并控制SPV接口并联APF的运行。还使用最大功率点跟踪(MPPT)算法来获得最佳的最大功率点。研究了SPV接口的ZSI分路APF的响应,以缓解电流谐波失真和无功补偿,并将其与基于SPV接口的电压源逆变器(VSI)的分路APF进行了比较。与基于FLC的瞬时无功功率理论控制算法一起使用的拟议SPV接口并联APF可针对基于电流的失真和无功功率需求提供持久的补偿。通过仿真和实验研究验证了基于SPV接口ZSI的并联APF的性能。这些结果证实了所提出的系统在各种负载条件下具有有效的谐波抑制能力的实用性。

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