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An Actuarial Framework for Power System Reliability Considering Cybersecurity Threats

机译:考虑网络安全威胁的电力系统可靠性的精算框架

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Cybersecurity has become an emerging issue for the secure operation of power systems. Besides hardening the power system to improve its cybersecurity, cyber insurance is emerging as a promising tool in cyber risk management. In this paper, an actuarial framework is established to capture and reduce the riskiness raised by interdependence among cyber risks, with the aim to enhance cyber insurance market for power systems. Absorbing semi-Markov process (SMP) is proposed to model the cyberattacks on the power grid. Also a stochastic model is developed to reflect the correlation of cyber risks across the power system. A sequential Monte Carlo simulations (MCS) framework is developed to evaluate the interruptions of the power system considering both the physical failures of the components and malicious cyberattacks. Then, the detailed insurance schemes are designed to manage the risks of the power system considering the financial consequences of cybersecurity threats. Case studies are conducted on a test system based on the IEEE Reliability Test System (RTS-79) to illustrate the application of the proposed insurance pricing schemes.
机译:网络安全已成为电力系统安全运行的新兴问题。除了强化电力系统以改善其网络安全,网络保险是在网络风险管理中作为一个有前途的工具。在本文中,建立了一项精算框架,以捕获和降低网络风险相互依存的风险,旨在增强电力系统的网络保险市场。建议吸收半马尔可夫过程(SMP)以模拟电网上的网络图案。还开发了一种随机模型,以反映电力系统的网络风险的相关性。开发了一个序贯蒙特卡罗模拟(MCS)框架,以评估考虑组件和恶意网络攻击的物理故障的电力系统的中断。然后,详细的保险计划旨在管理考虑网络安全威胁的财务后果的电力系统的风险。案例研究是在基于IEEE可靠性测试系统(RTS-79)的测试系统上进行的,以说明所提出的保险定价方案的应用。

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