Cross-layer security framework for smart grid: Physical security layer

Mohammed M. Farag, M. Azab, B. Mokhtar
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引用次数: 21

Abstract

Security is a major challenge preventing wide deployment of the smart grid technology. Typically, the classical power grid is protected with a set of isolated security tools applied to individual grid components and layers ignoring their cross-layer interaction. Such an approach does not address the smart grid security requirements because usually intricate attacks are cross-layer exploiting multiple vulnerabilities at various grid layers and domains. We advance a conceptual layering model of the smart grid and a high-level overview of a security framework, termed CyNetPhy, towards enabling cross-layer security of the smart grid. CyNetPhy tightly integrates and coordinates between three interrelated, and highly cooperative real-time security systems crossing section various layers of the grid cyber and physical domains to simultaneously address the grid's operational and security requirements. In this article, we present in detail the physical security layer (PSL) in CyNetPhy. We describe an attack scenario raising the emerging hardware Trojan threat in process control systems (PCSes) and its novel PSL resolution leveraging the model predictive control principles. Initial simulation results illustrate the feasibility and effectiveness of the PSL.
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智能电网跨层安全框架:物理安全层
安全是阻碍智能电网技术广泛应用的主要挑战。通常,传统的电网是通过一组隔离的安全工具来保护的,这些工具应用于各个电网组件和层,忽略了它们的跨层交互。这种方法不能解决智能电网的安全需求,因为复杂的攻击通常是跨层的,利用了不同网格层和域的多个漏洞。我们提出了智能电网的概念分层模型和称为CyNetPhy的安全框架的高级概述,以实现智能电网的跨层安全。CyNetPhy紧密集成和协调三个相互关联的、高度协作的实时安全系统,跨越网格网络和物理领域的各个层,同时解决网格的操作和安全要求。在本文中,我们详细介绍了CyNetPhy中的物理安全层(PSL)。我们描述了一种攻击场景,提高了过程控制系统(pcse)中新兴的硬件木马威胁及其利用模型预测控制原理的新颖PSL解决方案。初步仿真结果验证了该方法的可行性和有效性。
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