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Block-Phasor: A Decentralized Blockchain Framework to Enhance Security of Synchrophasor

机译:区块相量:增强同步相量安全性的去中心化区块链框架

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The synchrophasor technology has been changing the wide-area monitoring system (WAMS) of power grids; as it facilitates real-time grid situational awareness, observability and state estimation, and online stability assessment. However, the measurement samples inside the substations, or in phasor data concentrators (PDCs) can become a target for cyber-attacks, such as false data injection and data tampering attacks. Moreover, the synchrophasors are vulnerable to a single point of failure. Blockchain, the main technology behind the bitcoin, can simultaneously ensure reliability, security, and integrity with decentralization properties in a peer-to-peer system. Therefore, to mitigate the issues in the synchrophasor network, in this paper, we propose a blockchain-based synchrophasor network protection framework to enhance the self-defensive capability of its monitoring system. Our proposed model can mitigate data manipulation attacks from malicious entities by introducing bloom filter based fast phasor data identity validation, and Merkle tree-based fast data verification. Finally, the blockchain consensus can help to keep the consistency in the system and eliminate malicious entities from manipulating the overall security of the protection framework. Our experimental results show that the proposed system is scalable and fast in terms of synchrophasor data verification.
机译:同步相量技术一直在改变电网的广域监视系统(WAMS);因为它促进了实时电网态势感知,可观察性和状态估计以及在线稳定性评估。但是,变电站内部或相量数据集中器(PDC)中的测量样本可能成为网络攻击的目标,例如错误的数据注入和数据篡改攻击。此外,同步相量易受单点故障的影响。区块链是比特币背后的主要技术,可以通过点对点系统中的去中心化特性同时确保可靠性,安全性和完整性。因此,为缓解同步相量网络中的问题,本文提出了一种基于区块链的同步相量网络保护框架,以增强其监控系统的自防御能力。我们提出的模型可以通过引入基于Bloom Filter的快速相量数据身份验证和基于Merkle树的快速数据验证来减轻来自恶意实体的数据操纵攻击。最后,区块链共识可以帮助保持系统的一致性,并消除恶意实体操纵保护框架的整体安全性。我们的实验结果表明,所提出的系统在同步相量数据验证方面具有可扩展性和快速性。

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