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Using a Distributed Agent-Based Communication Enabled Special Protection System to Enhance Smart Grid Security

机译:使用基于代理的基于分布式通信的特殊保护系统来增强智能电网安全性

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摘要

Future smart grid capabilities promise to leverage network technologies to revolutionize the production, transmission, distribution, and consumption of electrical power. This smart grid revolution is more than just smart meters. Improvements in situational awareness are also likely to enhance security and reliability in power transmission systems. However, reliance on Internet-like communication networks also exposes vulnerabilities to increased risk from cyber-attack and other forms of Byzantine (i.e., anomalous) behavior. This article advocates the use of an agent-based decentralized protection system using peer-to-peer communications, reputation-based trust and a data retransmission scheme to combat malicious attacks and other Byzantine failures. The research presented used the electric power and communication synchronizing simulator (EPOCHS) federated simulation platform to demonstrate the added robustness provided to a special protection system in the face of an adversary by successfully defending against malicious attacks. Simulation results show promise for this approach.
机译:未来的智能电网功能有望利用网络技术来彻底改变电力的生产,传输,分配和消耗。智能电网的革命不仅仅是智能电表。态势感知能力的提高也可能会增强输电系统的安全性和可靠性。但是,对类似Internet的通信网络的依赖也使漏洞更容易受到网络攻击和其他形式的拜占庭(即异常)行为的威胁。本文主张使用基于代理的分散式保护系统,该系统使用对等通信,基于信誉的信任和数据重传方案来对抗恶意攻击和其他拜占庭式故障。提出的研究使用电力和通信同步仿真器(EPOCHS)联合仿真平台,通过成功防御恶意攻击,展示了在面对敌人时为特殊保护系统提供的增强的鲁棒性。仿真结果表明了这种方法的前景。

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