电子:一种具有联邦检测、动态风险评估和自我修复功能的智能电网安全体系结构框架

Panagiotis I. Radoglou-Grammatikis, Athanasios Liatifis, Christos Dalamagkas, A. Lekidis, Konstantinos Voulgaridis, T. Lagkas, Nikolaos Fotos, S. Menesidou, T. Krousarlis, Pedro Ruzafa Alcazar, Juan Francisco Martinez, A. Skarmeta, Alberto Molinuevo Martín, Iñaki Angulo, Jesus Villalobos Nieto, Hristo Koshutanski, Rodrigo Diaz Rodriguez, Ilias Siniosoglou, Orestis Mavropoulos, Konstantinos Kyranou, Theocharis Saoulidis, Allon Adir, Ramy Masalha, E. Bellini, N. Kolokotronis, S. Shiaeles, J. G. Franquelo, George Lalas, A. Zalonis, A. Voulgaridis, A. Bintoudi, K. Votis, D. Pampliega, P. Sarigiannidis
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引用次数: 0

摘要

多年来,电网发生了重大演变,从而创造了一种智能范式,即众所周知的智能电网。然而,由于工业系统的脆弱性和新技术的参与,这种演变产生了严重的网络安全风险。因此,本文提出了电子体系结构作为一个集成平台来及时检测、减轻和预防潜在的网络威胁。ELECTRON以协作的方式结合了网络安全和能源防御机制。ELECTRON的关键方面是(a)动态风险评估,(b)资产认证,(c)联合入侵检测和关联,(d)软件定义网络(SDN)缓解,(e)主动孤岛和(f)网络安全培训和认证。
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ELECTRON: An Architectural Framework for Securing the Smart Electrical Grid with Federated Detection, Dynamic Risk Assessment and Self-Healing
The electrical grid has significantly evolved over the years, thus creating a smart paradigm, which is well known as the smart electrical grid. However, this evolution creates critical cybersecurity risks due to the vulnerable nature of the industrial systems and the involvement of new technologies. Therefore, in this paper, the ELECTRON architecture is presented as an integrated platform to detect, mitigate and prevent potential cyberthreats timely. ELECTRON combines both cybersecurity and energy defence mechanisms in a collaborative way. The key aspects of ELECTRON are (a) dynamic risk assessment, (b) asset certification, (c) federated intrusion detection and correlation, (d) Software Defined Networking (SDN) mitigation, (e) proactive islanding and (f) cybersecurity training and certification.
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