低压配电网屋顶光伏系统配置优化

Sanjeev Singh, Shailendra Kumar, U. Kalla, A. Chandra, M. Saad
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引用次数: 2

摘要

提出了一种在低压配电网中大规模部署单相屋顶光伏系统的优化方案。对RTPV在每个负载节点部署的三种不同情况进行了详细调查:1)每阶段固定额定值;2)与各节点负载成正比的额定值;3)利用优化算法得到最优额定值。RTPV额定值的优化选择除了考虑有功功率和无功功率的优化外,还考虑了能量损失最小化和三相电压不平衡。RTPV系统在电压无功控制下运行,以实现最佳的电能质量和最小的损耗。上述研究选择的网络是ieee13总线系统,以便监测对各线路和负载的影响。在分析了13个总线系统的结果后,对IEEE 8500节点网络进行了进一步的研究,以验证所提出的概念。所得结果表明,在不同的渗透水平、负荷和太阳辐照度下,在低压配电网中优化部署大量RTPV系统以获得良好的电压分布和最小的能量损失是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Rooftop PV System Deployment for LV Distribution Network
This paper presents an optimal scheme for large deployment of single phase rooftop photovoltaic (RTPV) systems in a low voltage (LV) distribution network. A detailed investigation is carried out under three different cases for RTPV deployment at each load node as 1) fixed rating per phase; 2) rating proportional to the load at each node; 3) optimum rating obtained using an optimization algorithm. The objectives considered for the optimal selection of RTPV ratings are energy loss minimization and voltage unbalance across three phases apart from active and reactive power optimization. The RTPV systems are operated under volt-VAR control, to achieve the optimum power quality along with minimum losses. The network selected for the above study is IEEE 13 bus system so that the impact on each line and load is monitored. After analysis of the obtained results of 13 bus system, further investigation is carried out for IEEE 8500 node network to validate the proposed concepts. The obtained results are presented to demonstrate the effectiveness of optimum deployment of large number of RTPV systems in a LV distribution network to have good voltage profile and minimum energy loss under variable penetration level, load and solar irradiance.
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