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A Novel Data Integrity Attack on Consensus-Based Distributed Energy Management Algorithm Using Local Information

机译:基于局部信息的基于共识的分布式能源管理算法的数据完整性攻击

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This paper introduces a novel data integrity attack on the well-developed consensus-based energy management algorithm. In particular, we show that by sending out elaborately falsified information during the consensus iterations, attackers could manipulate the system operating point and gain extra economic benefits. Meanwhile, the system-level and device-level constraints are still satisfied, e.g., the power generation and demand are balanced, and the operation of individual device respects physical constraints. This data integrity attack has two major features: First, attackers rely only on local information to complete the attack; neither additional information about system topology nor additional colluders are required; second, the attacking effect is accumulative, which enables attackers to choose to finish in either single or multiple iterations. By revealing such vulnerability of consensus-based applications to data integrity attack, this paper conveys the message that besides the efforts of designing novel distributed energy management algorithms to address the renewable energy integration challenges, it is equally important to protect the distributed energy management algorithms from possible malicious attacks to avoid potential economic losses. The proposed attack is illustrated in the Future Renewable Electric Energy Delivery and Management system.
机译:本文介绍了一种基于完善的基于共识的能源管理算法的新型数据完整性攻击。特别是,我们表明,通过在共识迭代期间发送精心制造的虚假信息,攻击者可以操纵系统的工作点并获得额外的经济利益。同时,仍然满足系统级别和设备级别的约束,例如,发电和需求是平衡的,并且单个设备的操作遵守物理约束。这种数据完整性攻击具有两个主要特征:首先,攻击者仅依靠本地信息来完成攻击。既不需要有关系统拓扑的其他信息,也不需要其他的共谋者;其次,攻击效果是累积性的,这使攻击者可以选择完成一次还是多次迭代。通过揭示基于共识的应用程序对数据完整性攻击的这种脆弱性,本文传达的信息是,除了努力设计新颖的分布式能源管理算法来应对可再生能源集成挑战之外,保护分布式能源管理算法同样重要可能的恶意攻击,以避免潜在的经济损失。未来可再生电能输送和管理系统中说明了拟议的攻击。

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