TY - JOUR
T1 - Toward a Cyber Resilient and Secure Microgrid Using Software-Defined Networking
AU - Jin, Dong
AU - Li, Zhiyi
AU - Hannon, Christopher
AU - Chen, Chen
AU - Wang, Jianhui
AU - Shahidehpour, Mohammad
AU - Lee, Cheol Won
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/9
Y1 - 2017/9
N2 - To build a resilient and secure microgrid in the face of growing cyber-attacks and cyber-mistakes, we present a software-defined networking (SDN)-based communication network architecture for microgrid operations. We leverage the global visibility, direct networking controllability, and programmability offered by SDN to investigate multiple security applications, including self-healing communication network management, real-time and uncertainty-aware communication network verification, and specification-based intrusion detection. We also expand a novel cyber-physical testing and evaluation platform that combines a power distribution system simulator (for microgrid energy services) and an SDN emulator with a distributed control environment (for microgrid communications). Experimental results demonstrate that the SDN-based communication architecture and applications can significantly enhance the resilience and security of microgrid operations against the realization of various cyber threats.
AB - To build a resilient and secure microgrid in the face of growing cyber-attacks and cyber-mistakes, we present a software-defined networking (SDN)-based communication network architecture for microgrid operations. We leverage the global visibility, direct networking controllability, and programmability offered by SDN to investigate multiple security applications, including self-healing communication network management, real-time and uncertainty-aware communication network verification, and specification-based intrusion detection. We also expand a novel cyber-physical testing and evaluation platform that combines a power distribution system simulator (for microgrid energy services) and an SDN emulator with a distributed control environment (for microgrid communications). Experimental results demonstrate that the SDN-based communication architecture and applications can significantly enhance the resilience and security of microgrid operations against the realization of various cyber threats.
KW - Critical infrastructure protection
KW - cyber-resilience
KW - cyber-security
KW - microgrid
KW - software-defined networking
UR - https://www.scopus.com/pages/publications/85029483834
U2 - 10.1109/TSG.2017.2703911
DO - 10.1109/TSG.2017.2703911
M3 - 文章
AN - SCOPUS:85029483834
SN - 1949-3053
VL - 8
SP - 2494
EP - 2504
JO - IEEE Transactions on Smart Grid
JF - IEEE Transactions on Smart Grid
IS - 5
M1 - 7927427
ER -