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Probabilistic power flow analysis based on the stochastic response surface method

机译:基于随机响应面法的概率潮流分析

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Summary form only given. This paper proposes a probabilistic power flow analysis technique based on the stochastic response surface method. The probability distributions and statistics of power flow responses can be accurately and efficiently estimated by the proposed method without using series expansions such as the Gram-Charlier, Cornish-Fisher, or Edgeworth series. The stochastic continuous input variables following normal distributions such as loads or non-normal distributions such as photovoltaic generation and wind power and their multiple correlations can be easily modeled. The correctness, effectiveness and adaptability of the proposed method are demonstrated by comparing the probabilistic power flow analysis results of the IEEE 14-bus and 57-bus standard test systems obtained from the proposed method, the point estimate method, and the Monte Carlo simulation method.
机译:仅提供摘要表格。本文提出了一种基于随机响应面法的概率潮流分析技术。可以通过提出的方法准确而有效地估计潮流响应的概率分布和统计量,而无需使用诸如Gram-Charlier,Cornish-Fisher或Edgeworth系列之类的级数展开。服从正态分布(例如负载)或非正态分布(例如光伏发电和风能)的随机连续输入变量及其多重相关性可以轻松建模。通过比较从该方法,点估计方法和蒙特卡洛模拟方法获得的IEEE 14总线和57总线标准测试系统的概率潮流分析结果,证明了该方法的正确性,有效性和适应性。 。

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