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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Two-stage controlled islanding strategy based on Stoer-Wagner and improved Dinic algorithms
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Two-stage controlled islanding strategy based on Stoer-Wagner and improved Dinic algorithms

机译:基于Stoer-Wagner和改进的Dinic算法的两阶段受控孤岛策略

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摘要

The controlled islanding for the power system is an effective method to deal with the emergent situations caused by large disturbances. The size of the solution space would increase exponentially as the scale of the power grid increases. The goal of our controlled islanding strategy is to divide the system into several islands quickly. Meanwhile, the generator coherency and the power-flow disruption have to be taken into consideration carefully. This paper proposed a two-stage fast islanding strategy for large power networks, which is on the basis of large power grid graph theories. In the first stage, the Stoer-Wagner algorithm is employed to obtain the grouping cluster of coherent generators in the dynamic undirected liaison graph. In the second stage, the improved Dinic max-flow method is proposed to search the optimal splitting boundary so as to acquire the minimum power flow impact. Our two-stage islanding strategy does not need to reduce the whole power network. Simulations on IEEE 118-bus and 162-bus power systems showed that the proposed strategy can acquire high quality solutions effectively and efficiently.
机译:电力系统的受控孤岛是一种有效的方法来应对由大干扰引起的紧急情况。解决方案空间的大小将随着电网规模的增加而成倍增加。我们的受控孤岛策略的目标是将系统快速分为几个孤岛。同时,必须仔细考虑发电机的连贯性和功率流中断。在大电网图论的基础上,提出了大型电网的两阶段快速孤岛策略。在第一阶段,使用Stoer-Wagner算法获得动态无向联络图中的相干生成器分组簇。在第二阶段,提出了改进的Dinic最大流方法来搜索最佳分裂边界,以获得最小的潮流影响。我们的两阶段孤岛策略不需要减少整个电网。对IEEE 118总线和162总线电源系统的仿真表明,该策略可以有效地获得高质量的解决方案。

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