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Arbitrary Polynomial Chaos Based Simulation of Probabilistic Power Flow Including Renewable Energies

机译:基于任意多项式混沌的概率功率流模拟,包括可再生能量

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In this paper, a method is introduced for probabilistic power flow calculations based on arbitrary polynomial chaos. For the polynomial chaos, orthogonal polynomial sets are used to represent the uncertainties of renewable power generation, and these orthogonal polynomials are generated from actual data. The aforementioned method is applied to probabilistic power flow calculations, and its applicability is confirmed in application to an actual transmission network. The calculation time and accuracy achieved using the arbitrary polynomial-chaos method are compared with those achieved using the popular Monte Carlo method. The results show that the calculation speed is 246-680 times greater than that with the direct Monte Carlo method, while the accuracy is almost same.
机译:本文基于任意多项式混沌引入了一种方法,用于基于任意多项式混沌的概率功率流量计算。对于多项式混沌,正交多项式组用于表示可再生能力的不确定性,并且这些正交多项式是从实际数据产生的。上述方法应用于概率功率流量计算,并且在应用于实际传输网络的应用中确认了其适用性。将使用任意多项式混沌方法实现的计算时间和精度与使用流行的蒙特卡罗方法实现的那些进行比较。结果表明,计算速度比直接蒙特卡罗方法大246-680倍,而准确率几乎相同。

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