不平衡配电系统中光伏智能逆变器的伏安优化

Z. Soltani, Shanshan Ma, Mohammad Ghaljehei, Mojdeh Khorsand
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引用次数: 1

摘要

在不平衡配电网中,采用精确交流最优潮流(ACOPF),提出了分布式能源(DERs)和光伏智能逆变器的运行调度模型。基于IEEE 1547-2018标准,提出了分布式混相光伏智能逆变器局部电压- var下垂控制器的数学混合整数模型,并将其集成到不平衡ACOPF中,实现了对电压- var控制器的有效利用,既缓解了局部电压问题,也缓解了馈线电压问题。该模型在亚利桑那州配电馈线的两个实际快照上进行了测试。同时,将本文提出的考虑伏var下垂控制器的光伏智能逆变器运行调度方法与已有的光伏智能逆变器调度方法进行了比较。结果表明,该模型可通过逆变器局部控制器实现光伏智能逆变器调度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Volt-VAr Optimization of PV Smart Inverters in Unbalanced Distribution Systems
This paper proposes an operational scheduling model of distributed energy resources (DERs) and PV smart inverters with Volt-VAr controller using an accurate AC optimal power flow (ACOPF) in an unbalanced distribution network. A mathematical mixed-integer model of local Volt-VAr droop controller of the distributed mixed-phase PV smart inverters is proposed based on the IEEE 1547-2018 standard and is incorporated in the unbalanced ACOPF, which enables effective utilization of the Volt-VAr controllers to not only alleviate voltage issues locally but also at the feeder level. The proposed model is tested on two actual snapshots of a distribution feeder in Arizona. Also, the proposed operational scheduling method considering the Volt-VAr droop controller of PV smart inverters is compared with a recent work in scheduling of the PV smart inverters. The results illustrate that the PV smart inverters dispatches obtained by the proposed model can be practically implemented by local controller of inverters.
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