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Denial of Service Attack on Tie-Line Bias Control in a Power System With PV Plant

机译:光伏电站电力系统中对联络线偏置控制的拒绝服务攻击

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The use of synchrophasor networks consisting of phasor measurement units (PMUs) makes it possible to monitor, analyzes, and control the electric power grid in real-time. PMU measurements of frequencies, currents, voltages, and phase angles are transmitted to system control centers through synchrophasor networks. Delayed or missing measurements from PMUs in closed-loop applications could lead to power system instability. Although the use of virtual private network (VPN) tunnels eliminates many security vulnerabilities, VPNs are still vulnerable to denial of service (DoS) attack that exploits a side-channel vulnerability. In this paper, the authors detail their analysis of DoS attack on a two-area four machine power system with a utility-scale photovoltaic (PV) plant. Automatic generation control (AGC) is used to implement a tie-line bias control in one of the areas. The impact of PMU packet dropping on AGC operation and countermeasures are presented in this paper. Cellular computational network (CCN) prediction of PMU data is used to implement a virtual synchrophasor network (VSN). The data from VSN is used by the AGC when the PMU packets are disrupted by DoS attacks. Real-time experimental results show the CCN based VSN effectively inferred the missing data and mitigated the negative impacts of DoS attacks.
机译:使用由相量测量单元(PMU)组成的同步相量网络,可以实时监视,分析和控制电网。频率,电流,电压和相角的PMU测量值通过同步相量网络传输到系统控制中心。闭环应用中PMU的测量延迟或丢失可能会导致电力系统不稳定。尽管使用虚拟专用网(VPN)隧道消除了许多安全漏洞,但VPN仍然容易受到利用旁通道漏洞的拒绝服务(DoS)攻击。在本文中,作者详细介绍了他们对具有公用事业规模光伏(PV)工厂的两区域四机电源系统的DoS攻击的分析。自动生成控制(AGC)用于在其中一个区域中实现联络线偏置控制。介绍了PMU丢包对AGC操作的影响及对策。 PMU数据的蜂窝计算网络(CCN)预测用于实现虚拟同步相量网络(VSN)。当PMU数据包被DoS攻击破坏时,AGC会使用VSN的数据。实时实验结果表明,基于CCN的VSN有效地推断出丢失的数据并减轻了DoS攻击的负面影响。

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