Real-time Linkage and Active Defense Architecture of Electric Power Industrial Control System

Wei Li, Xin-hang Xu, Xiaoliang Zhang, Zhuo Lv, Cen Chen
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Abstract

Electric power industry is the most important fundamental energy industry in the development of national economy, and it is the cornerstone of economic development and social progress. The traditional security defense system of industrial control system adopts the passive working mode composed of traditional security products, which is difficult to resist the increasingly serious network attacks of industrial control system and eliminate hidden dangers fundamentally. In this regard, it is necessary to explore the active security defense system architecture to improve the comprehensive defense capabilities of industrial control systems and effectively resist cyberspace threats. Through in-depth analysis of the security status, protection strategy, particularity and vulnerability of power industrial control system, this paper proposes a real-time linkage active defense system including five modules of prediction, defense, detection, response and learning, and expounds the architecture and technology of each part. The active defense system proposed in this paper can prevent the vast majority of external attacks, and can flexibly adapt to and predict changes in enemy attacks.
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电力工业控制系统实时联动与主动防御体系结构
电力工业是国民经济发展中最重要的基础能源产业,是经济发展和社会进步的基石。传统的工控系统安全防御系统采用传统安全产品构成的被动工作模式,难以抵御日益严重的工控系统网络攻击,难以从根本上消除隐患。为此,有必要探索主动安全防御体系架构,提高工控系统综合防御能力,有效抵御网络空间威胁。通过深入分析电力工业控制系统的安全现状、防护策略、特殊性和脆弱性,提出了一种包括预测、防御、检测、响应和学习五大模块的实时联动主动防御系统,并对各部分的体系结构和技术进行了阐述。本文提出的主动防御系统能够防范绝大多数的外部攻击,并能灵活地适应和预测敌方攻击的变化。
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