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A cloud shadow model for analysis of solar photovoltaic power variability in high-penetration PV distribution networks

机译:用于高渗透率光伏配电网中太阳能光伏发电功率可变性分析的云影模型

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摘要

The primary challenge with high penetrations of solar power into power distribution feeders lies in the solar resource's inherent variability and uncertainty during partly cloudy days. To avoid unnecessary limitations to the rapid integration of PV to the grid, there is a need to understand and characterize PV variability from the prospective of utility operators and planners. To this end, this paper presents an easily implemented cloud shadow model to simulate realistic solar power variability of both distributed and large centralized PVs at various locations on a feeder at one second intervals. Power of four actual PV plants installed on an EPRI test feeder is simulated using the cloud shadow model and compared to actual one second measured data. The practical usefulness of the proposed model is confirmed by examining the distribution of PV ramp rates at time windows ranging from 10 to 60 seconds as well as the correlation between modeled and measured power output.
机译:太阳能高度渗透到配电馈线中的主要挑战在于,在部分阴天期间,太阳能的固有可变性和不确定性。为了避免将PV迅速集成到电网中带来不必要的限制,有必要从潜在的公用事业运营商和规划者那里了解和表征PV的可变性。为此,本文提出了一种易于实施的云影模型,以一秒钟的间隔来模拟馈线在各个位置上的分布式和大型集中式PV的实际太阳能功率变异性。使用云影模型对安装在EPRI测试馈线上的四个实际光伏电站的功率进行了仿真,并将其与实际的一秒钟测量数据进行了比较。通过检查在10到60秒的时间窗口内PV斜坡速率的分布以及建模和测量的功率输出之间的相关性,可以验证所提出模型的实际实用性。

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