论文标题
协调逆变器控制的附加值
The Added Value of Coordinating Inverter Control
论文作者
论文摘要
通过削减的集中协调的协调光伏逆变器控制可以增加从低压(LV)分配网络发送到网格的能量量,同时尊重电压约束。首先,本文根据平衡网络中的PV减少和线路损失,量化了这种方法相对于自动下垂控制的改进。然后,它将协调的逆变器控制扩展到不平衡的分布网络。最后,它为不同目标制定了控制算法,例如PV削减的分布和奖励PV客户在本地利用多余的功率。 在114节点和906-BUS LV欧洲测试馈线上测试了协调的逆变器控制算法,电缆尺寸在50mm^2至240mm^2之间,并参考了Opendss验证。结果表明,与自动逆变器相比,当应用于高阻抗LV网络和受分布变压器容量限制的高阻抗LV网络和LV网络时,协调的逆变器控制是优越的。在95mm^2的高架线上,在使用的PV输出中,在较高的渗透水平下,某些PV位置的平均量增加了2%,高达5%。对于PV系统聚类,观察到PV托管能力的增加20%。
Coordinated photovoltaic inverter control with centralized coordination of curtailment can increase the amount of energy sent from low-voltage (LV) distribution networks to the grid while respecting voltage constraints. First, this paper quantifies the improvement of such an approach relative to autonomous droop control, in terms of PV curtailment and line losses in balanced networks. It then extends the coordinated inverter control to unbalanced distribution networks. Finally, it formulates a control algorithm for different objectives such as the fairer distribution of PV curtailment and rewarding PV customers for utilizing the excess power locally. The coordinated inverter control algorithm is tested on the 114-node and 906-bus LV European test feeders with cable sizes between 50mm^2 and 240mm^2 and validated with reference to OpenDSS. The results demonstrate that coordinated inverter control is superior when applied to high impedance LV networks and LV networks constrained by the distribution transformer capacity limits compared to autonomous inverters. On the 95mm^2 overhead line, it yields a 2% increase on average in the utilized PV output with up to 5% increase for some PV locations at higher penetration levels. Up to a 20% increase in PV hosting capacity was observed for location scenarios with PV system clustering.