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Con-Resistant Trust for Improved Reliability in a Smart-Grid Special Protection System

机译:在智能电网特殊保护系统中提高可靠性的抵制信任

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摘要

This paper applies a con-resistant trust mechanism to improve the performance of a communications-based special protection system to enhance its effectiveness and resiliency. Smart grids incorporate modern information technologies to increase reliability and efficiency through better situational awareness. However, with the benefits of this new technology come the added risks associated with threats and vulnerabilities to the technology and to the critical infrastructure it supports. The research in this paper uses con-resistant trust to quickly identify malicious or malfunctioning (untrustworthy) protection system nodes to mitigate instabilities. The con-resistant trust mechanism allows protection system nodes to make trust assessments based on the node's cooperative and defective behaviors. These behaviors are observed via frequency readings which are prediodically reported. The trust architecture is tested in experiments by comparing a simulated special protection system with a con-resistant trust mechanism to one without the mechanism via an analysis of the variance statistical model. Simulation results show promise for the proposed con-resistant trust mechanism.
机译:本文采用了一种抵制信任机制来改善基于通信的特殊保护系统的性能,以增强其有效性和弹性。智能电网结合了现代信息技术,可通过更好的态势感知来提高可靠性和效率。但是,随着这项新技术的好处,随之而来的还有与该技术及其支持的关键基础架构的威胁和漏洞相关的额外风险。本文的研究使用抗性信任来快速识别恶意或故障(不可信)的保护系统节点,以减轻不稳定。抵制信任机制允许保护系统节点根据节点的协作行为和不良行为进行信任评估。这些行为是通过定期报告的频率读数观察到的。通过对方差统计模型进行分析,将具有抗性信任机制的模拟特殊保护系统与没有抗信任机制的模拟特殊保护系统进行比较,从而对信任体系结构进行了实验测试。仿真结果表明了所提出的抵制信任机制的前景。

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