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Adequacy of Generator Coherency for Online Islanding of Transmission Power Systems

机译:发电机相干性对输电系统在线孤岛的充分性

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Controlled Islanding is the last countermeasure for a severely disturbed power system to avoid wide-area blackouts. As generator coherency is dependent on the type and location of the disturbance, it is necessary to perform the coherency analysis and power system clustering in an online manner. The impact of generator coherency for solving power system islanding problems has been studied and compared to typical islanding requirements such as minimal power flow disruption or minimal load imbalance. The K-Harmonic Means Clustering was used to identify coherent generators online. Coherent generator groups defined the constraints of the subsequent Constrained Spectral Clustering of the transmission system to create coherent islands with minimal power flow disruption on the boundaries.A Coherency Fitness Index is introduced to study the adequacy of generator coherency and its impact on the islanding process. Results show that if coherency is completely considered, solving the islanding problem can ensure the wide-area stability of the islanded system by creating self-operating and stable island grids. A study case is performed on the IEEE 39 bus system. With less than 0.3 s needed to solve the islanding problem for the middle-sized test system, the suggested approach is assumed to be capable for real-time power system islanding.
机译:对于严重受干扰的电力系统,避免孤岛是大面积停电的最后对策。由于发电机的相干性取决于干扰的类型和位置,因此有必要以在线方式进行相干性分析和电力系统聚类。已经研究了发电机相干性对解决电力系统孤岛问题的影响,并将其与典型的孤岛需求(例如最小的潮流中断或最小的负载不平衡)进行了比较。 K谐波均值聚类用于在线识别相干发生器。相干发电机组定义了传输系统随后的受约束谱聚类的约束条件,以创建边界上的功率流扰动最小的相干孤岛。引入相干适应性指数来研究发电机相干性的充分性及其对孤岛过程的影响。结果表明,如果完全考虑连贯性,则解决孤岛问题可以通过创建自运行且稳定的孤岛网格来确保孤岛系统的广域稳定性。一个研究案例是在IEEE 39总线系统上执行的。解决中型测试系统的孤岛问题所需的时间少于0.3 s,因此该建议方法可用于实时电力系统孤岛。

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