Harmonic distortion in low voltage grid with grid-connected photovoltaic

Hedi Dghim, A. El-Naggar, I. Erlich
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引用次数: 10

Abstract

Power electronic converters are being introduced in low voltage (LV) grids at an increasingly rapid rate due to the growing adoption of power electronic-based home appliances in residential grid. Photovoltaic (PV) systems are considered one of the potential installed renewable energy sources in distribution power systems. This trend has led to high distortion in the supply voltage which consequently produces harmonic currents in the network and causes an inherent voltage unbalance. In this study, a typical low voltage grid with high penetration of 3- phase and single-phase PV from southern Germany was modelled using MATLAB/Simulink environment. The characteristics of the load- side harmonic impedances were analyzed, and their harmonic contributions were evaluated for different distortion levels. The effect of the high penetration of PV on the harmonic distortion of both positive and negative sequences was also investigated.
光伏并网时低压电网的谐波畸变
由于住宅电网中越来越多地采用基于电力电子的家用电器,电力电子转换器正以越来越快的速度引入低压(LV)电网。光伏系统被认为是配电系统中潜在的可再生能源之一。这种趋势导致了供电电压的高畸变,从而在网络中产生谐波电流,并导致固有的电压不平衡。本文采用MATLAB/Simulink环境对德国南部典型的三相和单相光伏高渗透低压电网进行了建模。分析了负载侧谐波阻抗的特性,并对其在不同失真水平下的谐波贡献进行了评价。此外,还研究了高穿透率对正、负序谐波畸变的影响。
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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