论文标题
研究基于网络物理双胞胎方法的智能网格的网络安全性
Investigating the Cybersecurity of Smart Grids Based on Cyber-Physical Twin Approach
论文作者
论文摘要
尽管信息和通信技术越来越多地渗透到分销网格中带来了许多好处,但它也打开了新的威胁景观,尤其是通过网络攻击。为了为反对这种威胁的对策提供基础,本文通过在安全,孤立和受控的实验室环境中复制电网作为网络物理环境,以研究网络攻击对智能电网的影响和表现的研究。当前,检测未经授权的第三方进入中央监控和控制网格操作员的入侵,尤其是网格周边内的攻击,这是一个重大挑战。检测和防止对电力系统进行协调和定时攻击的方法的开发和验证不仅取决于此类攻击场景中数据的可用性和质量,还取决于合适的现实调查环境。但是,为了创建一个全面的调查环境,需要对研究对象进行现实的表示,以彻底调查网格操作的关键网络攻击,并使用实际数据评估其对电网的影响。在本文中,我们在网络攻击案例研究的背景下使用微电网证明了我们的网络物理双胞胎方法。
While the increasing penetration of information and communication technology into distribution grid brings numerous benefits, it also opens up a new threat landscape, particularly through cyberattacks. To provide a basis for countermeasures against such threats, this paper addresses the investigation of the impact and manifestations of cyberattacks on smart grids by replicating the power grid in a secure, isolated, and controlled laboratory environment as a cyber-physical twin. Currently, detecting intrusions by unauthorized third parties into the central monitoring and control system of grid operators, especially attacks within the grid perimeter, is a major challenge. The development and validation of methods to detect and prevent coordinated and timed attacks on electric power systems depends not only on the availability and quality of data from such attack scenarios, but also on suitable realistic investigation environments. However, to create a comprehensive investigation environment, a realistic representation of the study object is required to thoroughly investigate critical cyberattacks on grid operations and evaluate their impact on the power grid using real data. In this paper, we demonstrate our cyber-physical twin approach using a microgrid in the context of a cyberattack case study.