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Impact Analysis of Cyber Attack under Stable State of Power System: Voltage Stability

机译:电力系统稳定状态下网络攻击的影响分析:电压稳定性

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Smart grids offer improved environmental performance along with increased resilience; however, they are susceptible to a wide range of cyber attacks owing to the wide communication network deployed. In this paper, two cyber attack models are proposed based on bus voltage magnitude and angle which can be realized through available cyber attacks. Simulations are performed on IEEE 9 bus test system to compute steady state voltage stability limit i.e. L index to analyse the impact of proposed cyber attack models at each bus using Siemens PSS/E and MATLAB softwares. Further, a cyber attack constant (CAC) is proposed to mislead the system state data which an attacker may utilize. The results of above work reveal that the proposed cyber attack models may initiate false corrective actions by energy management center (EMC) operator. Thus, the idea of proposed work can support the EMC operator for intelligent corrective actions during cyber attacks in the smart electric grid.
机译:智能电网可改善环境性能,并增强弹性;但是,由于部署了广泛的通信网络,它们容易受到广泛的网络攻击。本文提出了两种基于总线电压大小和角度的网络攻击模型,可以通过可用的网络攻击来实现。在IEEE 9总线测试系统上进行了仿真,以计算稳态电压稳定性极限(即L指数),以使用Siemens PSS / E和MATLAB软件分析建议的网络攻击模型在每条总线上的影响。此外,提出了网络攻击常量(CAC)来误导攻击者可能利用的系统状态数据。以上工作的结果表明,建议的网络攻击模型可能会引发能源管理中心(EMC)运营商的错误纠正措施。因此,建议的工作思路可以支持EMC操作员在智能电网中的网络攻击期间采取智能纠正措施。

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