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A game-theoretic study of load redistribution attack and defense in power systems

机译:电力系统负荷再分配攻击与防御的博弈论研究

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The wide deployment of advanced computer technologies in power systems monitoring and control will inevitably make the power grid more vulnerable to various cyber attacks. Load redistribution (LR) attack is regarded as a typical and viable cyber attack against power grids, which may mislead the power redispatch and cause unnecessary load loss. It is critical to develop methods for optimal allocation of limited defensive resources to safeguard the power grid, especially those considering the probabilistic behaviors of the attackers. To prevent the LR attacks, the optimal budget allocation and the game-theoretic attack and defense interaction are studied in this paper. Specifically, the attack and defense interactions are incorporated in the bilevel modeling of LR attacks. A few important substations are selected based on their criticality as cyber protection targets. For defending the critical substations, an optimal budget allocation strategy is developed to minimize the expected load loss subjected to the attacker's capability. Further, cybersecurity reinforcement strategies are studied using game-theory based approaches for different attack scenarios. The proposed methods are tested in different scenarios based on an IEEE test system, and the simulation results validate that the proposed methods are effective. This study offers new insight into preventing and mitigating the LR attack effectively. (C) 2017 Elsevier B.V. All rights reserved.
机译:电力系统监视和控制中先进计算机技术的广泛部署将不可避免地使电网更容易遭受各种网络攻击。负载重新分配(LR)攻击被认为是对电网的典型且可行的网络攻击,它可能会误导功率重新分配并导致不必要的负载损失。至关重要的是,要开发有限防御资源的最佳分配方法来保护电网,尤其是考虑到攻击者的概率性行为的方法。为了防止LR攻击,研究了最优预算分配以及博弈论的攻防互动。具体而言,攻击和防御交互被纳入LR攻击的双层模型中。根据其重要性作为网络保护目标,选择了一些重要的变电站。为了保卫关键的变电站,开发了一种最佳的预算分配策略,以最大程度地减少攻击者的能力导致的预期负载损失。此外,针对不同的攻击场景,使用基于游戏理论的方法研究了网络安全增强策略。基于IEEE测试系统,在不同的场景下对所提方法进行了测试,仿真结果验证了所提方法的有效性。这项研究为有效预防和减轻LR攻击提供了新见识。 (C)2017 Elsevier B.V.保留所有权利。

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