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首页> 外文期刊>Photovoltaics, IEEE Journal of >Probabilistic Load Flow for Power Grids With High PV Penetrations Using Copula-Based Modeling of Spatially Correlated Solar Irradiance
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Probabilistic Load Flow for Power Grids With High PV Penetrations Using Copula-Based Modeling of Spatially Correlated Solar Irradiance

机译:基于Copula的空间相关太阳辐照度建模的高PV穿透力电网的概率潮流

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摘要

This paper presents and applies an improved model for the instantaneous power generation from distributed photovoltaic (PV) systems intended for probabilistic load flow (PLF) simulations. The model combines a probability distribution model for the instantaneous solar irradiance at individual sites with an improved spatial correlation model and uses a Gaussian copula to allow correlated sampling from the distributions for an arbitrary set of distributed PV systems. We show that the model realistically reproduces the spatially distributed clear-sky index over a set of sites, based on comparisons with irradiance sensor network data. We also demonstrate that the probability distributions for system parameters such as customer voltage, substation loading, and power losses, obtained from PLF simulations with the model, differ substantially from those of a nonspatial approach. The results show that spatial irradiance modeling needs to be incorporated in PLF simulations in order not to overestimate the grid impacts of PV systems.
机译:本文介绍并应用了一种改进的模型,该模型用于分布式光伏(PV)系统的瞬时发电,旨在用于概率潮流(PLF)模拟。该模型将单个站点瞬时太阳辐照度的概率分布模型与改进的空间相关性模型相结合,并使用高斯copula来允许从任意一组分布式PV系统的分布中进行相关采样。我们显示,该模型基于与辐照度传感器网络数据的比较,真实地再现了一组站点上空间分布的晴空指数。我们还证明,从带有模型的PLF仿真获得的系统参数(如客户电压,变电站负荷和功率损耗)的概率分布与非空间方法的分布大不相同。结果表明,空间辐照度建模需要纳入PLF仿真中,以免高估光伏系统的网格影响。

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