作者: Junjian Qi , Adam Hahn , Xiaonan Lu , Jianhui Wang , Chen-Ching Liu
DOI: 10.1049/IET-CPS.2016.0018
关键词: Computer security 、 Resilience (network) 、 Grid 、 Architecture 、 Smart grid 、 Reliability (computer networking) 、 Dependency (project management) 、 Engineering 、 Distributed generation 、 Electric power system
摘要: The increased penetration of distributed energy resources (DER) will significantly increase the number devices that are owned and controlled by consumers third-parties. These have a significant dependency on digital communication control, which presents growing risk from cyber-attacks. This study proposes holistic attack-resilient framework to protect integrated DER critical power grid infrastructure malicious cyber-attacks, helping ensure secure integration without harming reliability stability. Specifically, authors discuss architecture cyber-physical system with high analyse unique cybersecurity challenges introduced integration. Next, they summarise important attack scenarios against DER, propose systematic resilience analysis methodology, develop effective quantifiable metrics design principles. Finally, introduce prevention, detection, response measures specifically designed for across cyber, physical device, utility layers future smart grid.