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Towards a Cyber Defense Framework for SCADA Systems Based on Power Consumption Monitoring

机译:基于功耗监测的sCaDa系统网络防御框架

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摘要

Supervisory control and data acquisition (SCADA) systems are industrial automation systems that remotely monitor and control critical infrastructures. SCADA systems are major targets for espionage and sabotage attackers. We describe recent SCADA attacks that have caused serious financial losses and physical infrastructure damages Current commercial off-the-shelf security solutions are insufficient in protecting SCADA systems against sophisticated cyber-attacks. SCADA systems are often not monitored to the same level as business computer systems. Furthermore, these breaches are not detected in real-time or fast enough to prevent further damages. To address this challenge we did a feasibility study to prove that monitoring power consumption of SCADA devices is an effective approach to detect cyber-attacks. We built a testbed containing a Programmable Logic Controller (PLC) that was instrumented to record its power usage.Three SCADA-specific cyber-attacks were simulated and we report the power consumption of the PLC under these normal and anomalous scenarios. We show that it is possible to distinguish the PLC power utilization between these scenarios.
机译:监督控制和数据采集(SCADA)系统是工业自动化系统,可远程监视和控制关键基础架构。 SCADA系统是间谍和破坏攻击者的主要目标。我们描述了最近的SCADA攻击,这些攻击已造成严重的财务损失和物理基础设施损坏。当前的商用现货安全解决方案不足以保护SCADA系统免受复杂的网络攻击。 SCADA系统通常不会被监视到与商用计算机系统相同的级别。此外,无法实时或足够快地检测到这些破坏,以防止进一步的损害。为了应对这一挑战,我们进行了可行性研究,以证明监视SCADA设备的功耗是检测网络攻击的有效方法。我们建立了一个包含可编程逻辑控制器(PLC)的测试平台,该平台用于记录其电源使用情况。模拟了三个SCADA特定的网络攻击,并报告了在这些正常和异常情况下PLC的功耗。我们表明可以区分这些情况下的PLC功率利用率。

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