Local Smart Inverter Control to Mitigate the Effects of Photovoltaic (PV) Generation Variability

R. Jha, A. Dubey
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引用次数: 3

Abstract

The rapidly transforming electric power distribution system due to the integration of distributed energy resources (DERs) specifically roof-top photovoltaic (PV) generation may lead to significant operational challenges. In this paper, we address the challenges related to variable power generation profile from PV resources leading to voltage fluctuations at the secondary feeder level. The objective is to develop local smart inverter control methods to reduce the voltage fluctuations at distribution buses using reactive power support. Towards this goal, an approach based on the power flow measurements of the lines connected to the PV generation buses and the local PV generation measurements is proposed to obtain the required reactive power support to mitigate voltage fluctuations. The proposed method is validated using two three-phase unbalanced test systems: IEEE-123 bus and the modified R3-12.47-2 taxonomy feeder with 329-buses. It is shown that the proposed local control approach is effective in mitigating voltage violations resulting from large changes in active power injections of the PV generators and in reducing overall voltage fluctuations due to PV generation variability. Further, it is validated that the proposed local control approach results in a better performance with regard to decreasing the voltage fluctuations compared to a standard Thevenin impedance-based method.
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局部智能逆变器控制减轻光伏发电变异性的影响
由于分布式能源(DERs)特别是屋顶光伏发电(PV)的整合,电力分配系统的快速变化可能会带来重大的运营挑战。在本文中,我们解决了与光伏资源导致二次馈线电压波动的可变发电剖面相关的挑战。目标是开发局部智能逆变器控制方法,以减少无功支持配电母线的电压波动。为此,提出了一种基于与光伏发电母线相连的线路的潮流测量和本地光伏发电测量的方法,以获得所需的无功支持,以减轻电压波动。采用IEEE-123母线和改进型R3-12.47-2型329母线分类馈线两种三相不平衡测试系统对该方法进行了验证。结果表明,所提出的局部控制方法可以有效地缓解由于光伏发电机有功功率注入的巨大变化而导致的电压违规,并减少由于光伏发电的可变性而导致的总体电压波动。此外,与基于标准Thevenin阻抗的方法相比,所提出的局部控制方法在降低电压波动方面具有更好的性能。
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