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Computational algorithms for unstable and stable (load flow) equilibria of a power system

机译:电力系统不稳定和稳定(潮流)平衡的计算算法

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Fast parallel algorithms to compute unstable equilibria in the state space of a large electric power system are introduced and analyzed. The approach utilizes cluster separation. The algorithm proposed for finding stable equilibria is a novel and is much faster in parallel implementation than the sparse Newton-Raphson technique. The algorithm proposed for finding unstable equilibria is not only novel but is the only available algorithm for computing unstable equilibria. Necessary and sufficient conditions for stability and instability checking have been developed. These conditions give some indications how the (N-1) unstable equilibria can be located through cluster structures. Simulation results are also given to show the convergence of the algorithms. Time-complexity analysis of parallel implementation is described and shows the potential of the algorithms.
机译:介绍并分析了计算大型电力系统状态空间中不稳定平衡的快速并行算法。该方法利用群集分离。为找到稳定的平衡而提出的算法是一种新颖的算法,与稀疏的Newton-Raphson技术相比,并行实现要快得多。提出的用于寻找不稳定平衡的算法不仅新颖,而且是计算不稳定平衡的唯一可用算法。已经开发出用于稳定性和不稳定性检查的必要和充分条件。这些条件为如何通过簇结构定位(N-1)不稳定平衡提供了一些指示。仿真结果也表明了算法的收敛性。描述了并行实现的时间复杂度分析,并显示了算法的潜力。

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