论文标题
太阳能在纳米醇测试床上平滑
Solar Power Smoothing in a Nanogrid Testbed
论文作者
论文摘要
太阳能的高渗透引入了分配系统运行中的新挑战。考虑到由于云覆盖率的变化而导致的太阳能输出的高度波动性,维持功率平衡和在坡道速率限制内运行可能是一个问题。可以通过在配备有弹性资源(例如电动车辆和电池存储系统)的单个站点上平滑太阳能输出来带来巨大的好处。本文提出了几种方法,通过利用位于佛罗里达州公用事业公司的“纳米格莱德”测试床中的电池存储和电动电动机充电控制方法来实现太阳能平滑应用。控制算法侧重于实时应用和预测控制,具体取决于预测。然后,使用来自纳米格莱德站点的实际数据比较太阳能平滑模型,以呈现提出的模型的有效性并比较其结果。此外,将控制方法应用于奥兰多公用事业委员会(OUC)纳米格里德,以确认模拟结果。
High penetration of solar power introduces new challenges in the operation of distribution systems. Considering the highly volatile nature of solar power output due to changes in cloud coverage, maintaining the power balance and operating within ramp rate limits can be an issue. Great benefits can be brought to the grid by smoothing solar power output at individual sites equipped with flexible resources such as electrical vehicles and battery storage systems. This paper proposes several approaches to a solar smoothing application by utilizing battery storage and EV charging control in a "Nanogrid" testbed located at a utility in Florida. The control algorithms focus on both real-time application and predictive control depending on forecasts. The solar smoothing models are then compared using real data from the Nanogrid site to present the effectiveness of the proposed models and compare their results. Furthermore, the control methods are applied to the Orlando Utilities Commission (OUC) Nanogrid to confirm the simulation results.