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A parallel primal-dual interior-point method for DC optimal power flow

机译:直流最优潮流的并行原对偶内点法

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Optimal power flow (OPF) seeks the operation point of a power system that maximizes a given objective function and satisfies operational and physical constraints. Given real-time operating conditions and the large scale of the power system, it is demanding to develop algorithms that allow for OPF to be decomposed and efficiently solved on parallel computing systems. In our work, we develop a parallel algorithm for applying the primal-dual interior point method to solve OPF. The primal-dual interior point method has a much faster convergence rate than gradient-based algorithms but requires solving a series of large, sparse linear systems. We design efficient parallelized and iterative methods to solve such linear systems which utilize the sparsity structure of the system matrix.
机译:最佳功率流(OPF)寻求电力系统的操作点,其最大化给定的目标函数并满足操作和物理限制。考虑到实时操作条件和大规模的电力系统,要求开发允许OPF在并行计算系统上分解和有效地解决的算法。在我们的工作中,我们开发了一种用于应用原始 - 双内部点法解决OPF的并行算法。原始 - 双内点方法具有比基于梯度的算法更快的收敛速度,但需要求解一系列大型稀疏的线性系统。我们设计有效的并行化和迭代方法来解决利用系统矩阵的稀疏结构的这种线性系统。

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