Time-Domain Analysis of Power Quality Adverse Effects of Grid Interconnected Photovoltaic Generation

R. Cisneros-Magaña, A. Medina, C. Fuerte-Esquivel
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引用次数: 1

Abstract

The photovoltaic generation is being interconnected to power systems at a growing rate as a renewable and alternative energy source. The influence of this type of generation on the operation, stability, reliability and power quality of the electrical network requires to be analyzed. This work presents the modeling, and the time-domain solution of these systems to assess the power quality adverse effects during the operation of the power grid with photovoltaic generation. Harmonics, total harmonic distortion, electromagnetic transients such as faults, load transients, and voltage sags are evaluated. The modeling and case studies include the photovoltaic array model with maximum power point tracking controller, the voltage source DC/DC converter model with a pulse width modulation controller, and the DC/AC interconnection converter model for single-phase and three-phase cases with sinusoidal pulse width modulation controller. The time-domain results can be used to assess the power quality indexes.
并网光伏发电电能质量不利影响的时域分析
作为一种可再生能源和替代能源,光伏发电正以越来越快的速度与电力系统互联。该类发电对电网的运行、稳定性、可靠性和电能质量的影响需要进行分析。本文提出了这些系统的建模和时域解,以评估光伏发电在电网运行期间的电能质量不利影响。谐波,总谐波失真,电磁瞬变,如故障,负载瞬变和电压跌落进行了评估。建模和案例研究包括采用最大功率点跟踪控制器的光伏阵列模型,采用脉宽调制控制器的电压源DC/DC变换器模型,以及采用正弦脉宽调制控制器的单相和三相直流/交流互连变换器模型。时域结果可用于评价电能质量指标。
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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