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Identification of Vulnerable Links in Power Grid Based on Brittleness Theory of Complex System under Geomagnetic Storm Conditions

机译:基于地磁风暴条件下复杂系统脆性理论的电网脆弱环节识别

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Geomagnetic disturbances will induce GIC (Geomagnetically Induced Currents) in high voltage power grid. GIC can cause cascading failure in power system, resulting in power system collapse or blackouts. In this paper, the mechanism of cascading failure in power system under geomagnetic storm is analyzed, and a vulnerable link identification process based on brittleness theory of complex system under geomagnetic storms is proposed. The brittleness theory of complex system is used to identify the vulnerable link and cascading failure propagating process of power grid under the condition of geomagnetic storm. Finally, the proposed process is validated by using the IEEE-RTS79 system. The verification results show the validity and practicability of the proposed process. The obtained results can provide reference for quantifying and preventing the risk of power grid under geomagnetic storms.
机译:地磁干扰将在高压电网中感应出GIC(地磁感应电流)。 GIC可能会导致电源系统级联故障,从而导致电源系统崩溃或停电。本文分析了地磁风暴下电力系统级联故障的机理,提出了基于复杂系统地磁风暴脆性理论的脆弱链路识别过程。利用复杂系统的脆性理论,确定了地磁暴条件下电网的脆弱环节和连锁故障传播过程。最后,通过使用IEEE-RTS79系统对提出的过程进行了验证。验证结果表明了该方法的有效性和实用性。所得结果可为量化和预防地磁风暴下的电网风险提供参考。

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