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Mitigation of cyber-physical attacks in multi-area automatic generation control

机译:在多区域自动发电控制中减轻网络物理攻击

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摘要

In recent years, several cyber-attacks have been recorded against sensitive monitoring systems. Among them is the automatic generation control (AGC) system, a fundamental control system used in all power networks. AGC systems keep the network frequency at its desired value and maintain the tie-line power exchanges at their scheduled values. Motivated by the increasing need for robust and safe operation of AGCs, we introduce an attack resilient control scheme for the AGC system based on attack detection using state estimation. The proposed approach requires redundancy of sensors available at the transmission level in the power network and leverages recent results on attack detection using mixed integer linear programming (MILP). The proposed algorithm detects and identifies the sensors under attack in the presence of noise. The non-attacked sensors are then averaged and made available to the feedback controller. No assumptions about the nature of the attack signal are made. The proposed method is simulated using a large range of attack signals and uncertain sensors measurements.
机译:近年来,已经针对敏感的监视系统记录了数次网络攻击。其中包括自动发电控制(AGC)系统,这是所有电力网络中使用的基本控制系统。 AGC系统将网络频率保持在其期望值,并将联络线功率交换保持在其计划值。基于对AGC鲁棒性和安全性操作的日益增长的需求,我们引入了基于攻击检测的AGC系统基于状态估计的攻击弹性控制方案。提出的方法需要冗余的电力网传输级别上可用的传感器,并利用混合整数线性规划(MILP)利用最新的攻击检测结果。所提出的算法在存在噪声的情况下检测并识别受到攻击的传感器。然后将未攻击的传感器求平均值,并提供给反馈控制器。没有关于攻击信号的性质的假设。所提出的方法是使用大范围的攻击信号和不确定的传感器测量结果进行仿真的。

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