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Two-stage network processor for an independent HVDC grid supervisory control

机译:两级网络处理器,用于独立的HVDC电网监控

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This paper proposes a two-stage network processor for the supervisory control of multi-terminal HVDC grid that connects different AC areas. The proposed network processor processes the DC substation topology locally in the first stage and analyzes the HVDC grid connectivity at the supervisory controller. The processor uses the k-means clustering method to detect the islands in HVDC grid and prepares required information to carry out the converter control mode assignation. The performance of the method has been tested for an islading scenario in a 7-terminal HVDC grid using a real-time co-simulation platform. The output of network processor helps the control application at the supervisory level to make decisions based on the control modes of the available converters in the islands. This two-stage architecture has been compared with the centralized architecture in terms of computational complexity.
机译:本文提出了一种两级网络处理器,用于连接不同AC区域的多终端HVDC网格的监控控制器。所提出的网络处理器在第一阶段本地处理DC变电站拓扑,并在监控控制器处分析HVDC网格连接。处理器使用K-means聚类方法检测HVDC网格中的岛屿,并准备所需信息以执行转换器控制模式分配。使用实时共模平台,已经在7端子HVDC网格中进行了对该方法的性能进行了测试。网络处理器的输出有助于监控级别的控制应用,以根据岛中可用转换器的控制模式进行决策。在计算复杂性方面,这种两级架构与集中式架构进行了比较。

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