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Enhancement to the combination of point estimate method and Gram-Charlier Expansion method for probabilistic load flow computations

机译:改进了点估计法和Gram-Charlier展开法相结合的概率潮流计算

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Due to growing uncertainties in the grid, probabilistic load flow methods achieve more attention. The Point Estimate Method (PEM) was introduced in 1975 first and was enhanced since then. In a first step, this paper evaluates the applicability of the method considering different input data to analyze the limitations of the method. Different input data exist through the diversity of generators and loads with diverse characteristics. Discrete probability mass functions (PMF) and continuous probability distribution functions (PDF), e.g. Normal, Weibull and Student-t distributions are considered for input data with different standard deviations. The statistical moments are calculated with the PEM. Often the evaluation of statistical moments is not sufficient, but rather the PDF and cumulative distribution function (CDF) of the output variables are of interest. Therefore, the method can be extended by expansion methods. Nowadays, Gram-Charlier Expansion (GCE), Edgeworth- and Cornish-Fisher-Expansions are mainly used. This paper shows that the existing expansion methods cannot deal with discrete PMF as they lead to PDF and CDF with multimodality. Therefore, this paper amplifies the method to determine the PDF and CDF of the output variables with given discrete PMF as input variables. In addition, modifications are shown to reduce the computational burden regarding a greater amount of input data in a large grid.
机译:由于电网中不确定性的增加,概率潮流方法越来越受到关注。点估计法(PEM)于1975年首次引入,此后得到了改进。在第一步中,本文评估了考虑不同输入数据的方法的适用性,以分析该方法的局限性。通过不同类型的发电机和负载,存在不同的输入数据。离散概率质量函数(PMF)和连续概率分布函数(PDF),例如对于具有不同标准偏差的输入数据,考虑正态分布,威布尔分布和学生t分布。统计力矩是使用PEM计算的。通常,对统计矩的评估是不够的,但是关注输出变量的PDF和累积分布函数(CDF)。因此,可以通过扩展方法扩展该方法。如今,主要使用Gram-Charlier扩充(GCE),Edgeworth-和Cornish-Fisher扩充。本文表明,现有的扩展方法无法处理离散的PMF,因为它们会导致PDF和CDF具有多模态。因此,本文以给定的离散PMF作为输入变量,放大了确定输出变量的PDF和CDF的方法。另外,示出了修改以减少关于大网格中的大量输入数据的计算负担。

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