A cross-layer attack path detection method for smart grid dynamics

Binbin Wang, Yi Wu, Naiwang Guo, Lei Zhang, Changjiang Liu
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Abstract

With the intelligent development of power system, due to the double-layer structure of smart grid and the characteristics of failure propagation across layers, the attack path also changes significantly: from single-layer to multi-layer and from static to dynamic. In response to the shortcomings of the single-layer attack path of traditional attack path identification methods, this paper proposes the idea of cross-layer attack, which integrates the threat propagation mechanism of the information layer and the failure propagation mechanism of the physical layer to establish a forward-backward bi-directional detection model. The model is mainly used to predict possible cross-layer attack paths and evaluate their path generation probabilities to provide theoretical guidance and technical support for defenders. The experimental results show that the method proposed in this paper can well identify the dynamic cross-layer attacks in the smart grid.
一种智能电网动态跨层攻击路径检测方法
随着电力系统的智能化发展,由于智能电网的双层结构和故障跨层传播的特点,攻击路径也发生了显著变化:从单层到多层,从静态到动态。针对传统攻击路径识别方法单层攻击路径的不足,本文提出了跨层攻击的思想,将信息层的威胁传播机制和物理层的失败传播机制集成在一起,建立了向前向后的双向检测模型。该模型主要用于预测可能的跨层攻击路径,并评估其路径生成概率,为防御者提供理论指导和技术支持。实验结果表明,本文提出的方法能够很好地识别智能电网中的动态跨层攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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