You are in:Home/Publications/“A Lightweight Message Authentication Scheme for Smart Grid Communications,” IEEE Transactions on Smart Grid, vol. 2, no. 4, pp. 675-685, December 2011.

Dr. Mostafa Fouda :: Publications:

Title:
“A Lightweight Message Authentication Scheme for Smart Grid Communications,” IEEE Transactions on Smart Grid, vol. 2, no. 4, pp. 675-685, December 2011.
Authors: Mostafa M. Fouda, Zubair Md. Fadlullah, Nei Kato, Rongxing Lu, and Xuemin (Sherman) Shen
Year: 2011
Keywords: Not Available
Journal: Not Available
Volume: Not Available
Issue: Not Available
Pages: Not Available
Publisher: Not Available
Local/International: International
Paper Link:
Full paper Mustafa Mohamed Mustafa Abd Eldaim Fouda_2011.Trans_SG.pdf
Supplementary materials Not Available
Abstract:

Smart grid (SG) communication has recently received significant attentions to facilitate intelligent and distributed electric power transmission systems. However, communication trust and security issues still present practical concerns to the deployment of SG. In this paper, to cope with these challenging concerns, we propose a lightweight message authentication scheme features as a basic yet crucial component for secure SG communication framework. Specifically, in the proposed scheme, the smart meters which are distributed at different hierarchical networks of the SG can first achieve mutual authentication and establish the shared session key with Diffie-Hellman exchange protocol. Then, with the shared session key between smart meters and hash-based authentication code technique, the subsequent messages can be authenticated in a lightweight way. Detailed security analysis shows that the proposed scheme can satisfy the desirable security requirements of SG communications. In addition, extensive simulations have also been conducted to demonstrate the effectiveness of the proposed scheme in terms of low latency and few signal message exchanges.

Google ScholarAcdemia.eduResearch GateLinkedinFacebookTwitterGoogle PlusYoutubeWordpressInstagramMendeleyZoteroEvernoteORCIDScopus