论文标题
具有分布式能源的低压分配网格的电压估计
Voltage Estimation in Low-Voltage Distribution Grids with Distributed Energy Resources
论文作者
论文摘要
当前的分布网格通常具有有限的传感能力,因此以低观测性为特征。改善的可观察性是提高分布电网中太阳能光伏(PV)等分布式能源的托管能力的先决条件。在这种情况下,本文使用有线电视(CATV)网络的未开发但易于分布的传感器提出了学习辅助的低压估计。 CATV传感器提供5分钟分辨率的及时局部电压幅度传感,并且比当前部署的实用程序传感器可以提供有关分配系统状态的数量级数据。提出的解决方案考虑了观测值的时空方面的相邻CATV传感器的电压读数,并使用随机森林估算所有非监控总线的单相电压幅度。使用SMART-DS数据集的1572-BUS馈线证明了所提出的方法的有效性 - 被动分配馈线(无PV)和主动分配馈线(带有PV)。对模拟数据进行了分析,结果表明,即使在可观察到的节点的百分比极低的情况下,电压估计值也很高。
The present distribution grids generally have limited sensing capabilities and are therefore characterized by low observability. Improved observability is a prerequisite for increasing the hosting capacity of distributed energy resources such as solar photovoltaics (PV) in distribution grids. In this context, this paper presents learning-aided low-voltage estimation using untapped but readily available and widely distributed sensors from cable television (CATV) networks. The CATV sensors offer timely local voltage magnitude sensing with 5-minute resolution and can provide an order of magnitude more data on the state of a distribution system than currently deployed utility sensors. The proposed solution incorporates voltage readings from neighboring CATV sensors, taking into account spatio-temporal aspects of the observations, and estimates single-phase voltage magnitudes at all non-monitored buses using random forest. The effectiveness of the proposed approach was demonstrated using a 1572-bus feeder from the SMART-DS data set for two case studies - passive distribution feeder (without PV) and active distribution feeder (with PV). The analysis was conducted on simulated data, and the results show voltage estimates with a high degree of accuracy, even at extremely low percentages of observable nodes.