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Influence of enhanced interconnecting links on cascading failures in smart grid

机译:增强的互连链路对智能电网级联故障的影响

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A smart grid is an interdependent system of its electricity network and data communication network. Failures in either of networks could cause cascading failures to both networks and threaten the stability of the whole smart grid system. The interdependence between a power grid and a communication network can be represented using graph theory as unidirectional or directional inter-edges that connect both networks together. Optimizing the allocation of these interlinks can alleviate the severity of cascading failures and effectively enhance the robustness of the system. In this paper, we propose a practical smart grid model as two mutual dependent complex networks with improved inter-links allocation strategy, which is enhancing a fraction of communication nodes with backup power supply. Because of the enhanced communication nodes, the proposed system is more robust against random failures, which is proved by case studies.
机译:智能电网是其电力网络和数据通信网络的相互依存的系统。两个网络中的任何一个故障都可能导致两个网络的级联故障,并威胁整个智能电网系统的稳定性。可以使用图论将电网和通信网络之间的相互依赖性表示为将两个网络连接在一起的单向或定向边缘。优化这些互连的分配可以减轻级联故障的严重性,并有效地增强系统的鲁棒性。在本文中,我们提出了一种实用的智能电网模型,将其作为两个相互依赖的复杂网络,具有改进的链路间分配策略,从而通过备用电源增强了一部分通信节点。由于增强了通信节点,因此所提出的系统对随机故障具有更强的鲁棒性,这已通过案例研究证明。

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