论文标题

基于事件的太阳能配电馈线使用Micro-PMU测量

Event-Based Analysis of Solar Power Distribution Feeder Using Micro-PMU Measurements

论文作者

Khaledian, Parviz, Aligholian, Armin, Mohsenian-Rad, Hamed

论文摘要

太阳能分配馈线通常用于整合到分配变电站中的太阳能农场中。在本文中,我们专注于现实世界太阳能分配馈线,并使用Micro-PMU测量进行基于事件的分析。感兴趣的太阳能分配馈线是一个幕后太阳能农场,其发电能力超过4兆瓦,大约200个低压分布的光伏(PV)逆变器。本研究中基于事件的分析旨在解决以下实际问题。首先,我们使用无监督的机器学习方法进行事件检测。对于每个事件,我们通过基于阻抗的分析来确定事件的源区域,并结合描述性分析方法。我们将太阳能农场(即本地引起的事件)与网格中发起的事件(即网格诱发的事件)隔离,隔离了该事件,这引起了太阳能农场的响应。其次,对于本地引起的事件,我们研究了太阳能生产水平和其他重要参数的影响,得出统计结论。第三,对于网格引起的事件,我们表征了太阳能农场的反应。并与辅助相邻馈线对相同事件的响应进行比较。第四,我们仔细检查了多个特定事件。例如通过揭示太阳能分配馈线控制系统的动力学。这项研究的结果和发现对公用事业和太阳能行业提供了信息。

Solar distribution feeders are commonly used in solar farms that are integrated into distribution substations. In this paper, we focus on a real-world solar distribution feeder and conduct an event-based analysis by using micro-PMU measurements. The solar distribution feeder of interest is a behind-the-meter solar farm with a generation capacity of over 4 MW that has about 200 low-voltage distributed photovoltaic (PV) inverters. The event-based analysis in this study seeks to address the following practical matters. First, we conduct event detection by using an unsupervised machine learning approach. For each event, we determine the event's source region by an impedance-based analysis, coupled with a descriptive analytic method. We segregate the events that are caused by the solar farm, i.e., locally-induced events, versus the events that are initiated in the grid, i.e., grid-induced events, which caused a response by the solar farm. Second, for the locally-induced events, we examine the impact of solar production level and other significant parameters to make statistical conclusions. Third, for the grid-induced events, we characterize the response of the solar farm; and make comparisons with the response of an auxiliary neighboring feeder to the same events. Fourth, we scrutinize multiple specific events; such as by revealing the dynamics to the control system of the solar distribution feeder. The results and discoveries in this study are informative to utilities and solar power industry.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源