Assessment of voltage unbalance due to single phase rooftop photovoltaic panels in residential low voltage distribution network: A study on a real LV network in Western Australia

A. Kharrazi, V. Sreeram, Yateendra Mishra
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引用次数: 16

Abstract

Voltage and current unbalance are common power quality problems in power grids. The penetration of single phase inverter interface photovoltaic panels will impact the voltage profile and voltage unbalance index of Low and Medium voltage distribution network. Due to lack of sufficient monitoring point in the distribution network, an assessment method of evaluating the voltage unbalance index is of paramount importance. Due to stochastic nature of the location and rating of photovoltaic panels, a probabilistic method based on Monte Carlo simulation is proposed to assess the voltage unbalance factor. The simulation is run using MATLAB and PowerFactory, based on proposed data exchange between the two software packages. The effect of the timing mismatch between solar generation and load profile is also studied using a time sweep simulation. The result of simulation shows that there is a low probability that the penetration of photovoltaic panels render the voltage unbalance factor to exceed the limits. However, the variation of solar generation and loads during the day might be of concern, especially during low demands periods.
住宅低压配电网中单相屋顶光伏板电压不平衡评估——基于西澳大利亚实际低压电网的研究
电压和电流不平衡是电网中常见的电能质量问题。单相逆变器接口光伏板的侵彻将影响低压和中压配电网的电压分布和电压不平衡指标。由于配电网缺乏足够的监测点,一种评估电压不平衡指标的评估方法至关重要。针对光伏板位置和额定值的随机性,提出了一种基于蒙特卡罗模拟的概率方法来评估电压不平衡因素。利用MATLAB和PowerFactory进行仿真,并基于所提出的两个软件包之间的数据交换。利用时间扫描仿真研究了太阳能发电与负荷分布时序不匹配的影响。仿真结果表明,光伏板的侵彻使电压不平衡系数超过限值的概率很小。然而,白天太阳能发电和负荷的变化可能是值得关注的,特别是在低需求时期。
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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