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A versatile probability model of photovoltaic generation using pair copula construction

机译:利用双关联函数构造光伏发电的通用概率模型

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Summary form only given. Photovoltaic (PV) generation is increasingly popular in power systems. The nonlinear dependence associated with a large number of distributed PV sources adds the complexity to construct an accurate probability model and negatively affects confidence levels and reliability, thereby resulting in a more challenging operation of the systems. Most probability models have many restrictions when constructing multiple PV sources with complex dependence. This paper proposes a versatile probability model of PV generation on the basis of pair copula construction. In order to tackle the computational burden required to construct pair copula in high-dimensional cases, a systematic simplification technique is utilized that can significantly reduce the computational effort while preserving satisfactory precision. The proposed method can simplify the modeling procedure and provide a flexible and optimal probability model for the PV generation with complex dependence. The proposed model is tested using a set of historical data from colocated PV sites. It is then applied to the probabilistic load flow (PLF) study of the IEEE 118-bus system. The results demonstrate the effectiveness and accuracy of the proposed model.
机译:仅提供摘要表格。光伏(PV)发电在电力系统中越来越受欢迎。与大量分布式PV源相关的非线性相关性增加了构建精确概率模型的复杂性,并对置信度和可靠性产生了负面影响,从而导致系统的操作更具挑战性。当构造具有复杂依赖性的多个PV源时,大多数概率模型都有很多限制。本文提出了一种基于对子copula构造的光伏发电的通用概率模型。为了解决在高维情况下构造双对数所需的计算负担,利用了一种系统化的简化技术,该技术可以显着减少计算量,同时保持令人满意的精度。所提出的方法可以简化建模过程,并为具有复杂依赖性的光伏发电提供灵活,最优的概率模型。使用来自同一地点的光伏站点的一组历史数据对提出的模型进行了测试。然后将其应用于IEEE 118总线系统的概率潮流(PLF)研究。结果证明了所提模型的有效性和准确性。

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