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Controlled islanding schemes for interconnected power systems based on coherent generator group identification and wide-area measurements

机译:基于相干发电机组识别和广域测量的互连电力系统受控孤岛方案

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摘要

A reasonable islanding strategy of a power system is the final resort for preventing a cascading failure and/or a large-area blackout from occurrence. In recent years, the applications of wide area measurement systems(WAMS) in emergency control of power systems are increasing. Therefore, a new WAMS-based controlled islanding scheme for interconnected power systems is proposed. First, four similarity indexes associated with the trajectories of generators are defined, and the weights of these four indexes are determined by using the well-developed entropy theory. Then, a coherency identification algorithm based on hierarchical clustering is presented to determine the coherent groups of generators.Secondly, an optimization model for determining controlled islanding schemes based on the coherent groups of generators is developed to seek the optimal cutset. Finally, a 16-generator68-bus power system and a reduced WECC 29-unit 179-bus power system are employed to demonstrate the proposed WAMS-based controlled islanding schemes, and comparisons with existing slow coherency based controlled islanding strategies are also carried out.
机译:电力系统的合理岛屿战略是防止级联故障和/或发生的大面积遮光的最终手段。近年来,广域测量系统(WAMS)在电力系统的紧急控制中的应用正在增加。因此,提出了一种用于互联电力系统的新的WAMS受控岛地方案。首先,定义了与发电机轨迹相关联的四个相似性指标,并且通过使用良好开发的熵理论来确定这四个索引的权重。然后,提出了一种基于分层聚类的一致性识别算法以确定生成器的相干组。第二,开发了一种基于相干发电机组确定受控岛文方案的优化模型以寻求最佳削波。最后,采用16-Generator68总线电力系统和减少的WECC 29-单元179总线电力系统来展示所提出的基于WAMS的受控岛方案,并且还执行与现有的基于缓慢一致性的受控岛策略的比较。

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