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Experimental Validation of Z-Source Network-Based Solar PV Backed Unified Active Power Filter for Power Quality Enrichment

机译:基于Z源网络的太阳能光伏备用电力质量富集统一电力滤波器的实验验证

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摘要

This research paper introduces Unified Active Power Filter (UAPF) based on the Z-Source Inverter (ZSI) assisted by a Solar Photovoltaic (SPV) to improve the quality of power. This inverter offers significant benefits as it offers better buck/boost functionality, can control the phase angle output, has fewer harmonics, does not require filters and has high performance over the traditional inverter. For the Maximum Power Point Tracking (MPPT) feature, a low step-up Direct Current (DC)-DC converter module is used as a DC-DC switched power apparatus. The compensation feature of the UAPF depends on the method of control used to generate reference signals. In this proposed method, the Improved Second-Order General Integrator (ISOGI) is used to obtain the ZSI-UAPF reference current. The ISOGI-based control system only utilizes converter and load current measurement, since the feedback signals do not need voltage information and associated sensors. The proposed controller works efficiently with the SPV and battery system and enables distributed power to be coupled with loads under various operating conditions. The ZSI-based SPV-UAPF provides mitigation for long-range current and voltage interference and meets the grid's active power requirements. The experimental findings based on a digital real-time platform justify the efficiency of PV with ZSI topology under balanced and unbalanced voltage and load conditions.
机译:本研究论文介绍了基于Z源逆变器(ZSI)的统一有源电力滤波器(UAPF),该Z源逆变器(ZSI)由太阳能光伏(SPV)辅助,以提高功率质量。这种逆变器提供了显着的优势,因为它提供更好的降压/升压功能,可以控制相位角输出,具有更少的谐波,不需要过滤器并具有高性能的传统变频器。对于最大功率点跟踪(MPPT)特征,低升压直流(DC)-DC转换器模块用作DC-DC开关功率装置。 UAPF的补偿特征取决于用于生成参考信号的控制方法。在这种提出的方​​法中,改进的二阶通用积分器(ISOGI)用于获得ZSI-UAPF参考电流。基于ISOGI的控制系统仅利用转换器和负载电流测量,因为反馈信号不需要电压信息和相关的传感器。所提出的控制器与SPV和电池系统有效地工作,并且可以在各种操作条件下与负载耦合的分布式电源。基于ZSI的SPV-UAPF为远程电流和电压干扰提供缓解,并满足网格的有效电源要求。基于数字实时平台的实验结果证明了平衡和不平衡电压和负载条件下具有ZSI拓扑的PV的效率。

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