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Study on a fast controlled partition scheme based on improved Dinic max-flow strategy

机译:基于改进大餐最大流量策略的快速控制分区方案研究

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When power system is subjected to severe disturbances and then will be out of step. The interconnected power grid should be split into several islands to avoid blackout. The controlled islanding is an active control technique based on the information from Wide Area Measurement System (WAMS) to accomplish the islanding task. This paper proposes a fast islanding strategy for large power networks. Firstly, the grid structure is mapped to point sets and edge sets in the graph theory. Secondly, the model is built by adopting the minimum power flow impact as the objective function and considering several constraints which includes generator coherency constraint and connective constraint. Finally, the optimal splitting strategy is searched by the improved Dinic maximum flow algorithm. Simulation results on IEEE 118-bus power system show that the proposed strategy is correct, effective and fast.
机译:当电力系统受到严重的干扰时,然后远离步骤。互连的电网应该分成几个岛屿,以避免停电。受控岛是一种基于来自广域测量系统(WAMS)的信息来实现岛屿任务的主动控制技术。本文提出了大型电网的快速岛屿战略。首先,网格结构映射到图论中的点集和边缘集。其次,通过将最小功率影响作为目标函数,并考虑包括发电机一致约束和连接约束的几个约束来构建模型。最后,通过改进的大道最大流量算法搜索最佳分裂策略。 IEEE 118总线电力系统的仿真结果表明,所提出的策略是正确的,有效且快速的。

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