High PV Penetration Impact on an Unbalanced Distribution Network

Abayomi Adebiyi, Ian Lazaru, A. Saha, Evans Eshiemogie Ojo
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引用次数: 1

Abstract

With the rapid development of power system and the attendant technological innovative progressions, the objective of accomplishing energy for all is never again a vision but a predictable reality. Therefore, the current grids are facing infrastructural alterations to accomplish the qualities of a smart grid. The structural and performance characteristics of the conventional power generation system is changing with the integration of renewable energy systems (RES) such as photovoltaic (PV) system. This study presents an overview prospect of RES integration in South Africa and evaluated the impact of the increased PV penetration on steady state performance of an IEEE 13 bus test system. Rooftop PVs are incorporated into a portion of a conventional generation source in MATLAB/Simulink environment in which the steady state voltages are examined at different levels of PV penetration. The simulation results clearly revealed the impact of the increased PV penetration on stable state stability.
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高光伏渗透率对配电网不平衡的影响
随着电力系统的快速发展和随之而来的技术创新进步,实现人人享有能源的目标不再是一种愿景,而是可以预见的现实。因此,目前的电网正面临着基础设施改造,以实现智能电网的质量。随着光伏(PV)等可再生能源系统的集成,传统发电系统的结构和性能特征正在发生变化。本研究概述了南非可再生能源整合的前景,并评估了光伏渗透率增加对IEEE 13总线测试系统稳态性能的影响。在MATLAB/Simulink环境中,将屋顶光伏并入传统发电源的一部分,在该环境中,在不同的光伏渗透水平下检查稳态电压。仿真结果清楚地揭示了PV穿透量的增加对稳态稳定性的影响。
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