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NODE-FAILURE AND ISLANDING IN NATIONAL GRID SCALE ELECTRICITY DISTRIBUTION NETWORKS

机译:国家网格尺度电力分配网络中的节点失败与岛屿

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Electrical power distribution networks are becoming more complex with increased variability in the type and properties of power station generators. National grid scale distribution networks are governed by many physical and geographic constraints and it is difficult to identify points of vulnerability. We employ some static graph analysis metrics to study how an approximation of the UK National Grid islands first into regions then small clusters of generators and substations. We use a progressive node culling procedure based upon the between-ness centrality metric to investigate numerically the properties of the overall network and individual islands as nodes and hence distribution lines fail. We find that the UK Grid system breaks first into regional islands, but is remarkably stable against node failures, breaking further into islands that are potentially viable at some service provision level. The between-ness metric identifies the most critical nodes in the network.
机译:电力分配网络随着电站发生器类型和特性的增加而变得更加复杂。国家网格规模分配网络受许多物理和地理约束的管辖,很难识别漏洞点。我们采用了一些静态图形分析指标来研究英国国家网格群岛首先进入地区的近似值,然后是小集群的发电机和变电站。我们使用基于NESS中心度量的渐进节点剔除过程来对整个网络和各个岛屿的属性进行测量,作为节点,因此分配行失败。我们发现英国电网系统首先突破到区域群岛中,但对节点故障相当稳定,进一步突破岛屿,在某些服务拨款水平上可能可行。 -NESS度量标准识别网络中最关键的节点。

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