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Vulnerability Analysis of Satellite-based Synchronized Smart Grids Monitoring Systems

机译:卫星同步智能电网监测系统的脆弱性分析

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The large-scale deployment of wide-area monitoring systems could play a strategic role in supporting the evolution of traditional power systems toward smarter and self-healing grids. The correct operation of these synchronized monitoring systems requires a common and accurate timing reference usually provided by a satellite-based global positioning system. Although these satellites signals provide timing accuracy that easily exceeds the needs of the power industry, they are extremely vulnerable to radio frequency interference. Consequently, a comprehensive analysis aimed at identifying their potential vulnerabilities is of paramount importance for correct and safe wide-area monitoring system operation. Armed with such a vision, this article presents and discusses the results of an experimental analysis aimed at characterizing the vulnerability of global positioning system based wide-area monitoring systems to external interferences. The article outlines the potential strategies that could be adopted to protect global positioning system receivers from external cyber-attacks and proposes decentralized defense strategies based on self-organizing sensor networks aimed at assuring correct time synchronization in the presence of external attacks.
机译:大规模部署广域监视系统可以在支持传统电力系统向更智能和自愈的电网发展的过程中发挥战略作用。这些同步监视系统的正确操作需要通常由基于卫星的全球定位系统提供的通用且准确的时序参考。尽管这些卫星信号提供的定时精度很容易超过电力行业的需求,但它们极易受到射频干扰的影响。因此,旨在识别其潜在漏洞的全面分析对于正确和安全的广域监视系统操作至关重要。怀着这样的远见,本文介绍并讨论了旨在分析基于全球定位系统的广域监视系统对外部干扰的脆弱性的实验分析结果。本文概述了可以用来保护全球定位系统接收者免受外部网络攻击的潜在策略,并提出了基于自组织传感器网络的分散防御策略,旨在确保在存在外部攻击时进行正确的时间同步。

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