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Division algorithm and interconnection strategy of restoration subsystems based on complex network theory

机译:基于复杂网络理论的恢复子系统划分算法和互连策略

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摘要

Reasonably dividing restoration subsystems is an essential step for speeding up the restoration procedure with the widely employed bottom-up restoration strategy. A new method based on the community structure of the complex network theory is presented for dividing restoration subsystems in this work. The locations of black-start units and the characteristics of power systems are taken into account in the developed method. The restoration subsystems are determined by removing the lines with the maximal 'betweenness' repeatedly, and the rationality of the division results is evaluated by using a modularity index. An interconnection strategy for the restoration subsystems thus obtained is proposed by following the sequence that each restoration subsystem is separated from the power network concerned in the divisive process. The essential features of the proposed method are illustrated by case studies of the well-known New England test system and the Guangzhou actual power system in China.
机译:合理划分恢复子系统是采用广泛采用的自下而上的恢复策略来加快恢复过程的重要步骤。提出了一种基于复杂网络理论社区结构的新方法,用于划分恢复子系统。在开发的方法中考虑了黑启动单元的位置和电力系统的特性。通过重复删除具有最大“中间性”的线来确定恢复子系统,并使用模块化指标评估划分结果的合理性。通过按照每个恢复子系统在分裂过程中与相关电网分离的顺序,提出了这样获得的恢复子系统的互连策略。通过对著名的新英格兰测试系统和中国广州实际电源系统的案例研究,说明了该方法的本质特征。

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