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Risk assessment of cascading failures in power grid based on complex network theory

机译:基于复杂网络理论的电网连锁故障风险评估

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Cascading failure is an intrinsic threat of power grid to cause enormous cost of society, and it is very challenging to be analyzed. The risk of cascading failure depends both on its probability and the severity of consequence. It is impossible to analyze all of the intrinsic attacks, only the critical and high probability initial events should be found to estimate the risk of cascading failure efficiently. To recognize the critical and high probability events, a cascading failure analysis model for power transmission grid is established based on complex network theory (CNT) in this paper. The risk coefficient of transmission line considering the betweenness, load rate and changeable outage probability is proposed to determine the initial events of power grid. The development tendency of cascading failure is determined by the network topology, the power flow and boundary conditions. The indicators of expected percentage of load loss and line cut are used to estimate the risk of cascading failure caused by the given initial malfunction of power grid. Simulation results from the IEEE RTS-79 test system show that the risk of cascading failure has close relations with the risk coefficient of transmission lines. The value of risk coefficient could be useful to make vulnerability assessment and to design specific action to reduce the topological weakness and the risk of cascading failure of power grid.
机译:级联故障是电网造成巨大社会成本的内在威胁,对其进行分析非常具有挑战性。级联失败的风险取决于其可能性和后果的严重性。无法分析所有内部攻击,仅应发现关键事件和高概率初始事件,以有效估计级联故障的风险。为了识别关键事件和高概率事件,本文基于复杂网络理论(CNT)建立了输电网的级联故障分析模型。为了确定电网的初始事件,提出了考虑输电线路的间断性,负荷率和变停概率的输电线路风险系数。级联故障的发展趋势取决于网络拓扑,潮流和边界条件。预期的负载损耗百分比和线路割断率的指标用于估计由给定的初始电网故障引起的级联故障的风险。 IEEE RTS-79测试系统的仿真结果表明,级联故障的风险与传输线的风险系数密切相关。风险系数的值可用于进行脆弱性评估和设计具体措施以减少拓扑缺陷和电网连锁故障的风险。

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