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Stochastic Economic Dispatch of Power Systems with Renewable Energy Using Sparse Grid Based Stochastic Collocation Method

机译:基于稀疏网格的随机配置方法的可再生能源电力系统随机经济调度

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The uncertainty of renewable energy has raised significant challenges for power system, which results that conventional dispatch deterministic methods are not well applicable. Therefore, this paper proposes the stochastic collocation method (SCM) for economic dispatch problem based on sparse grid. The SCM utilizes the orthogonal property of generalized polynomial chaos (gPC) to avoid solving the complex optimization model with random variables, by calculating the deterministic gPC coefficients. Meanwhile, to mitigate the computational burden, sparse grid is utilized to decrease the number of collocation points. However, the collocation points selected by conventional sparse grid do not satisfy the nested property. Hence, a strategy of constructing collocation points based on nested sparse grid is proposed to make the selected collocation points satisfy the nested property. The accuracy, effectiveness, and practicality of the proposed algorithm are verified by the simulations on the modified IEEE 39-bus system and a practical power system.
机译:可再生能源的不确定性给电力系统提出了巨大的挑战,这导致传统的调度确定性方法不能很好地应用。因此,本文提出了一种基于稀疏网格的经济调度问题的随机配置方法。 SCM通过计算确定性gPC系数,利用广义多项式混沌(gPC)的正交属性来避免求解具有随机变量的复杂优化模型。同时,为了减轻计算负担,利用稀疏网格来减少配置点的数量。但是,常规稀疏网格选择的并置点不能满足嵌套属性。因此,提出了一种基于嵌套稀疏网格构造搭配点的策略,以使所选择的搭配点满足嵌套特性。通过在改进的IEEE 39总线系统和实际电力系统上的仿真,验证了所提算法的准确性,有效性和实用性。

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