Towards Improving Data Validity of Cyber-Physical Systems through Path Redundancy

Zhiyuan Zheng, A. Reddy
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引用次数: 18

Abstract

Cyber-physical systems have shown to be susceptible to cyber-attacks. Incidents such as Stuxnet Attack and Ukraine power outage have shown that attackers are capable of penetrating into industrial control systems, compromising PLCs, and sending false commands to physical devices while reporting normal sensing values. Therefore, one of the critical needs of CPS is to ensure the validity of the sensor values. In this paper, we explore path diversity in SCADA networks and develop Path Redundancy to improve data validity. The proposed solution is shown to be able to effectively prevent data integrity attacks and detect false command attacks from a single compromised path or PLC. We provide detailed analysis on solution design and implement an application of the technique in building automation networks. Our cost-efficient and easy-to-deploy solution improves the resilience of SCADA networks.
利用路径冗余提高信息物理系统数据有效性的研究
网络物理系统很容易受到网络攻击。Stuxnet攻击和乌克兰停电等事件表明,攻击者能够渗透到工业控制系统,破坏plc,并在报告正常传感值的同时向物理设备发送错误命令。因此,CPS的关键需求之一是确保传感器值的有效性。本文探讨了SCADA网络中的路径多样性,并开发了路径冗余来提高数据的有效性。所提出的解决方案能够有效地防止数据完整性攻击,并检测来自单个受损路径或PLC的错误命令攻击。详细分析了该技术的方案设计,并在楼宇自动化网络中实现了应用。我们经济高效且易于部署的解决方案提高了SCADA网络的弹性。
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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