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Investigation of Voltage Stability for Residential Customers Due to High Photovoltaic Penetrations

机译:高光渗透因居住顾客电压稳定性的研究

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摘要

Several studies on voltage stability analysis of electric systems with high photovoltaic (PV) penetration have been conducted at a power-transmission level, but very few have focused on small-area networks of low voltage. As a distribution system has its special characteristicshigh R/X ratio, long tap switching delay, small PV units, and so onPV integration impacts also need to be investigated thoroughly at a distribution level. In this paper, the IEEE 13 bus system has been modified and extended to explore network stability impacts of variable PV generation, and the results show that a voltage stability issue with PV integration does exist in distribution networks. Simulation comparisons demonstrate that distribution networks are traditionally designed for heavily loaded situations exclusive of PVs, but they can still operate under low PV penetration levels without cloud-induced voltage-stability problems. It is also demonstrated that voltage instability can effectively be solved by PV inverter reactive power support if this scheme is allowed by the standards in the near future.
机译:在动力传输水平下进行了几项关于具有高光伏(PV)渗透的电气系统的电气系统电压稳定性分析,但很少专注于低电压的小面积网络。由于分配系统具有其特殊的特性高r / x比,长距离开关延迟,小型光伏单元等,因此还需要在分配水平上彻底调查ONPV集成影响。在本文中,IEEE 13总线系统已经修改和扩展以探索可变光伏生成的网络稳定性影响,结果表明,分发网络中存在PV集成的电压稳定性问题。仿真比较表明,传统上的分销网络是针对PVS的大量加载情况设计的,但它们仍然可以在低光伏渗透水平下运行而没有云感应的电压稳定性问题。还证明了如果在不久的将来允许该方案,则通过PV逆变器无功功率支持可以有效地解决电压不稳定。

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