Solar PV Array Integrated UPQC for Power Quality Improvement Based on Modified GI

Sanjenbam Chandrakala Devi, Priyank Shah, Sachin Devassy, Bhim Singh
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引用次数: 5

Abstract

In this paper, a modified generalized integrator (GI) control technique with a reduced number of integrators, is presented for the control of grid interfaced single stage solar PV array integrating with unified power quality conditioner (SPVA-UPQC) system. This controller has a reduced number of integrators to estimate the fundamental active components of the distorted signals enabling DC offset elimination. Further, these fundamental signals are used to generate the reference signals for shunt compensator. The SPVA-UPQC helps to mitigate both current and voltage related power quality (PQ) problems such as it eliminates harmonics, load unbalancing, reactive power compensation, voltage sag-swell elimination, as well as it provides clean energy generation, by interfacing solar PV array at the common DC link of UPQC. In order to evaluate the performance of this system with presence of nonlinear load, simulation results are presented in environment of MATLAB/Simulink. The experimental performance of the SPVA-UPQC system is validated through developed prototype and the corresponding results are presented herein for various conditions like grid voltage sag, grid voltage swell, load unbalancing, solar irradiation variation and harmonics. The total harmonic distortion (THD) of the grid voltages and currents are attained within the limits as per the IEEE-519 and IEEE-1159 standards.
基于改进GI的太阳能光伏阵列集成UPQC电能质量改进
针对电网接口单级太阳能光伏阵列与统一电能质量调节器(SPVA-UPQC)系统集成的控制问题,提出了一种改进的集成商数量减少的广义积分器(GI)控制技术。该控制器具有减少数量的积分器,以估计失真信号的基本有效成分,使直流偏移消除。再将这些基元信号用于产生并联补偿器的参考信号。SPVA-UPQC有助于缓解电流和电压相关的电能质量(PQ)问题,如消除谐波、负载不平衡、无功补偿、电压跌落膨胀消除,以及通过在UPQC的公共直流链路上连接太阳能光伏阵列,提供清洁能源发电。为了评估该系统在非线性负载下的性能,在MATLAB/Simulink环境下给出了仿真结果。通过研制的样机验证了SPVA-UPQC系统的实验性能,并给出了在电网电压暂降、电网电压膨胀、负荷不平衡、太阳辐照变化和谐波等多种工况下的实验结果。电网电压和电流的总谐波失真(THD)在IEEE-519和IEEE-1159标准的限制范围内。
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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