Voltage Control of Unbalanced Distribution Systems with Penetration of Renewable Sources: A Gradient-Based Optimization Approach

R. Ebadi, Hande Šenyüz, F. Aboshady, O. Ceylan, I. Pisica, A. Ozdemir
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Abstract

The penetration of distributed energy resources (DERs), including renewable energy sources (RES), into electric power systems has led to several challenges for the system operators. Despite various economic and environmental benefits offered by RES, the issue of voltage rise due to active power injection from RES is still an open problem. On the other hand, voltage decrease due to high load in distribution systems is another challenge faced by operators. In this study, we investigated the problem of over-voltage and under-voltage in the operation of unbalanced 3-phase distribution systems with penetration of RES. Moreover, We utilize derivative-based Exterior Penalty Function (EPF) optimization to solve the voltage deviation problem. The results of the tests conducted on a modified IEEE 13 Bus Test System have confirmed that the use of the tap changer voltage regulators and reactive power from PVs connected close to inverters can effectively contribute to the voltage control problem.
可再生能源渗透不平衡配电系统的电压控制:一种基于梯度的优化方法
分布式能源(DERs),包括可再生能源(RES),在电力系统中的渗透给系统运营商带来了一些挑战。尽管可再生能源提供了各种经济和环境效益,但由于可再生能源的有功功率注入引起的电压上升问题仍然是一个悬而未决的问题。另一方面,配电系统高负荷引起的电压降低是运营商面临的另一个挑战。本文研究了非平衡三相配电系统的过电压和欠电压问题,并利用基于导数的外部惩罚函数(EPF)优化来解决电压偏差问题。在改进的IEEE 13总线测试系统上进行的测试结果证实,使用分接开关稳压器和靠近逆变器连接的pv的无功功率可以有效地解决电压控制问题。
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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