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Cyber-Security Problems in Smart Grid Cyber Attacks Detecting Methods and Modelling Attack Scenarios on Electric Power Systems

机译:智能电网网络攻击中的网络安全问题检测电力系统上的方法和建模攻击情景

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The intellectualization of an electrical power system (EPS) creates a required infrastructure for the efficient transmission, distribution and consumption of electrical energy, and is based on the integration of the EPS with information networks. Significant disadvantages of such integration are related to the problems of cyber security which have become particularly important in recent times. Currently, the applied methods of cyber security are taken from information technology and in no way are connected with the specifics of electrical power systems. The purpose of this article is to develop an algorithm to detect cyber-attacks based on continuous monitoring of the EPS parameters. The method is based on the algorithm of additional authentication of the SV-messages of the IEC 61850 Protocol sent between microprocessor devices of relay protection and automation (MDRPA). This authentication is based on the results of beforehand simulation of many regimes of the analyzed electrical network. Additionally, the authors presented the analysis of the scenarios and damage from cyber-attacks which includes the sequential outages of power generation facilities. The cyber-attack scenario is the result of an iterative calculation of the steady state modes of the electrical network depending on the indices of the elements.
机译:电力系统的智能化(EPS)为电能的有效传输,分配和消耗产生了所需的基础设施,并且基于EPS与信息网络的集成。这种整合的显着缺点与网络安全问题有关,近来已经变得尤为重要。目前,网络安全的应用方法是从信息技术中取出的,并且无法与电力系统的细节连接。本文的目的是开发一种基于对EPS参数的连续监测来检测网络攻击的算法。该方法基于在中继保护和自动化(MDRPA)的微处理器设备之间发送的IEC 61850协议的SV-MEARCE的额外认证算法。该认证基于分析的电气网络的许多制度的预先模拟结果。此外,作者介绍了对网络攻击的情景和损坏的分析,包括发电设施的连续中断。网络攻击场景是根据元件的指标对电网稳态模式进行迭代计算的结果。

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