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Power System Reliability Evaluation With SCADA Cybersecurity Considerations

机译:考虑SCADA网络安全考虑的电力系统可靠性评估

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摘要

As information and communication networks are highly interconnected with the power grid, cyber security of the supervisory control and data acquisition (SCADA) system has become a critical issue in the electric power sector. By exploiting the vulnerabilities in cyber components and intruding into the local area networks of the control center, corporation, substations, or by injecting false information into communication links, the attackers are able to eavesdrop critical data, reconfigure devices, and send trip commands to the intelligent electronic devices that control the system breakers. Reliability of the power system can thus be impacted by various cyber attacks. In this paper, four attack scenarios for cyber components in networks of the SCADA system are considered, which may trip breakers of physical components. Two Bayesian attack graph models are built to illustrate the attack procedures and to evaluate the probabilities of successful cyber attacks. A mean time-to-compromise model is modified and adopted considering the known and zero-day vulnerabilities on the cyber components, and the frequencies of intrusions through various paths are estimated. With increased breaker trips resulting from the cyber attacks, the loss of load probabilities in the IEEE reliability test system 79 are estimated. The simulation results demonstrate that the power system becomes less reliable as the frequency of successful attacks on the cyber components increases and the skill levels of attackers increase.
机译:随着信息和通信网络与电网高度互连,监督控制和数据采集(SCADA)系统的网络安全已成为电力领域的关键问题。通过利用网络组件中的漏洞并侵入控制中心,公司,变电站的局域网中,或者通过向通信链路中注入虚假信息,攻击者能够窃听关键数据,重新配置设备并将跳闸命令发送给控制系统断路器的智能电子设备。因此,电力系统的可靠性会受到各种网络攻击的影响。本文考虑了SCADA系统网络中网络组件的四种攻击情形,它们可能会使物理组件的破坏者跳闸。建立了两个贝叶斯攻击图模型来说明攻击程序并评估成功的网络攻击的可能性。考虑到网络组件的已知漏洞和零日漏洞,修改并采用了平均损坏时间模型,并估算了通过各种路径进行入侵的频率。随着网络攻击导致断路器跳闸次数的增加,估计了IEEE可靠性测试系统79中负载概率的损失。仿真结果表明,随着对网络组件成功攻击的频率增加并且攻击者的技能水平提高,电力系统的可靠性也会降低。

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