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Security attacks on smart grid scheduling and their defences: a game-theoretic approach

机译:安全攻击智能电网调度及其防御:一种游戏 - 理论方法

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The introduction of advanced communication infrastructure into the power grid raises a plethora of new opportunities to tackle climate change. This paper is concerned with the security of energy management systems which are expected to be implemented in the future smart grid. The existence of a novel class of false data injection attacks that are based on modifying forecasted demand data is demonstrated, and the impact of the attacks on a typical system's parameters is identified, using a simulated scenario. Monitoring strategies that the utility company may employ in order to detect the attacks are proposed, and a game-theoretic approach is used to support the utility company's decision-making process for the allocation of their defence resources. Informed by these findings, a generic security game is devised and solved, revealing the existence of several Nash equilibrium strategies. The practical outcomes of these results for the utility company are discussed in detail, and a proposal is made, suggesting how the generic model may be applied to other scenarios.
机译:引入高级通信基础设施进入电网提高了一种解决气候变化的多种新机会。本文涉及能源管理系统的安全性,预计将在未来的智能电网中实施。证明了基于修改预测需求数据的小型虚假数据注入攻击的存在,并且使用模拟场景来识别攻击对典型系统参数的影响。监测公用事业公司可能雇用以检测攻击的策略,以及游戏理论方法,用于支持公用事业公司的防御资源分配的决策过程。这些调查结果通知,设计并解决了一般的安全游戏,揭示了几种纳什均衡策略的存在。本公用公司的这些结果的实际结果将详细讨论,提出提案,旨在如何将通用模型应用于其他方案。

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