论文标题

设计基于约束的虚假数据注入攻击针对不平衡分布智能电网的攻击

Designing constraint-based false data injection attacks against the unbalanced distribution smart grids

论文作者

Tran, Nam N., Pota, Hemanshu R., Tran, Quang N., Hu, Jiankun

论文摘要

在即将到来的智能城市时代中起着至关重要的作用的智能电网的出现,伴随着一种监视工具的实施,称为州估计。对于不平衡的住宅分配网格,以区域尺度进行的国家估计操作被视为基于边缘计算的物联网(IOT)的应用。尽管状态估计的结果对随后的控制活动很重要,但其准确性在很大程度上取决于从分散的测量设备收集的信息的数据完整性。这个事实在数据驱动的攻击的效果下暴露了状态估计模块的脆弱性。其中,错误的数据注射攻击(FDI)由于其能力干扰网络的正常操作而没有被检测到,因此引起了很多关注。本文介绍了一种基于非线性物理构成模型的攻击设计方案,该模型能够以理论上隐身的特征产生FDI攻击。为了证明拟议的设计方案的有效性,进行了IEEE 13节点馈线和WSCC 9-BUS系统的模拟。实验结果表明,不仅仅是不良数据检测机制的假阳性率是100%,而且攻击的身体后果很严重。这些结果对操作员在维持测量数据的完整性方面构成了严重的挑战。

The advent of smart power grid which plays a vital role in the upcoming smart city era is accompanied with the implementation of a monitoring tool, called state estimation. For the case of the unbalanced residential distribution grid, the state estimating operation which is conducted at a regional scale is considered as an application of the edge computing-based Internet of Things (IoT). While the outcome of the state estimation is important to the subsequent control activities, its accuracy heavily depends on the data integrity of the information collected from the scattered measurement devices. This fact exposes the vulnerability of the state estimation module under the effect of data-driven attacks. Among these, false data injection attack (FDI) is attracting much attention due to its capability to interfere with the normal operation of the network without being detected. This paper presents an attack design scheme based on a nonlinear physical-constraint model that is able to produce an FDI attack with theoretically stealthy characteristic. To demonstrate the effectiveness of the proposed design scheme, simulations with the IEEE 13-node test feeder and the WSCC 9-bus system are conducted. The experimental results indicate that not only the false positive rate of the bad data detection mechanism is 100 per cent but the physical consequence of the attack is severe. These results pose a serious challenge for operators in maintaining the integrity of measurement data.

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