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Power grid adequacy evaluation involving substation cybersecurity issues

机译:涉及变电站网络安全问题的电网充足性评估

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Modern power systems heavily rely on the associated cyber network, so it is crucial to develop novel methods to evaluate the overall power system adequacy considering the substation cybersecurity issues. In this study, human dynamic is applied to simulate the temporal behavior pattern of cyber attackers. The Markov game and static game are utilized to model the intelligent attack/defense behaviors in different attack scenarios. A novel framework for power system adequacy assessment incorporating the cyber and physical failures is proposed. Simulations are conducted based on a representative reliability test system, and the influences of critical parameters on system adequacy are carefully examined. It is concluded that effective measures should be implemented to ensure the overall system adequacy, and informed decisions should be made to allocate the limited resources for enhancing the cybersecurity of cyber-physical power grids.
机译:现代电力系统严重依赖于相关的网络,因此考虑变电站网络安全问题,开发新颖的方法来评估整体电力系统的充分性至关重要。在这项研究中,人类动态被用来模拟网络攻击者的时间行为模式。利用马尔可夫博弈和静态博弈对不同攻击场景下的智能攻击/防御行为进行建模。提出了一种结合了网络和物理故障的电力系统充分性评估的新颖框架。基于具有代表性的可靠性测试系统进行了仿真,并仔细研究了关键参数对系统充分性的影响。结论是应采取有效措施以确保整个系统的适当性,并应做出明智的决定以分配有限的资源来增强网络物理物理网络的网络安全性。

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