Real and reactive power control of solar grid-tie inverter under distorted grid conditions

Roopa Viswadev, V. V. Ramana, B. Venkatesaperumal, S. Mishra
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引用次数: 5

Abstract

Due to increasing density of integration of distributed generation systems (DGS) to the utility grid, continuous power supply from DGS is being considered desirable during temporary grid faults, to provide support to the grid under conditions like voltage sags. Researchers have been focusing on improved topologies and control strategies in order to enhance the performance of solar grid-tied inverters, especially during grid faults. This paper presents a simple yet accurate control strategy for three-level four-wire grid-tie inverters for real and reactive power injection which operates satisfactorily under distorted grid conditions. Independent control of the input and output side is obtained by using two-stages, with boost converter obtaining maximum power from the solar panels, and inverter injecting this power into the grid with grid standards being met. A DC link balancing technique using proportional controller is also presented. A three-level neutral point clamped grid-tie inverter with the proposed control is modeled in MATLAB-Simulink platform and its effectiveness, in terms of accuracy of operation under non-ideal grid conditions and reduction in total harmonic distortion, is validated using the simulation results.
畸变电网条件下太阳能并网逆变器的实功和无功控制
由于分布式发电系统(DGS)与公用电网的集成密度不断增加,在电网临时故障期间,DGS的连续供电被认为是理想的,以便在电压下降等情况下为电网提供支持。研究人员一直致力于改进拓扑结构和控制策略,以提高太阳能并网逆变器的性能,特别是在电网故障时。本文提出了一种简单而精确的三电平四线并网逆变器的实际和无功功率注入控制策略,该策略在电网畸变条件下运行良好。输入端和输出端的独立控制采用两级控制,升压变流器从太阳能电池板获取最大功率,逆变器在满足电网标准的情况下将此功率注入电网。提出了一种基于比例控制器的直流链路平衡技术。在MATLAB-Simulink平台上对采用该控制方法的三电平中性点箝位并网逆变器进行了建模,并通过仿真结果验证了该控制方法在非理想电网条件下的运行精度和降低总谐波畸变方面的有效性。
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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