Title :
Smart Grid Mesh Network Security Using Dynamic Key Distribution With Merkle Tree 4-Way Handshaking
Author :
Bin Hu ; Gharavi, Hamid
Author_Institution :
Adv. Network Technol., Nat. Inst. of Stand. & Technol., Gaithersburg, MD, USA
Abstract :
Distributed mesh sensor networks provide cost-effective communications for deployment in various smart grid domains, such as home area networks (HAN), neighborhood area networks (NAN), and substation/plant-generation local area networks. This paper introduces a dynamically updating key distribution strategy to enhance mesh network security against cyber attack. The scheme has been applied to two security protocols known as simultaneous authentication of equals (SAE) and efficient mesh security association (EMSA). Since both protocols utilize 4-way handshaking, we propose a Merkle-tree based handshaking scheme, which is capable of improving the resiliency of the network in a situation where an intruder carries a denial of service attack. Finally, by developing a denial of service attack model, we can then evaluate the security of the proposed schemes against cyber attack, as well as network performance in terms of delay and overhead.
Keywords :
computer network performance evaluation; computer network security; cryptographic protocols; home networks; smart power grids; substations; trees (mathematics); wireless LAN; wireless mesh networks; wireless sensor networks; EMSA; HAN; IEEE 802.11s; Merkle tree 4-way handshaking scheme; NAN; SAE; WLAN; cost-ef- fective communications; cyber attack; denial-of-service attack model; distributed mesh sensor networks; dynamic key distribution strategy updating; efficient mesh security association; home area networks; neighborhood area networks; network performance; network resiliency improvement; plant-generation local area networks; security protocols; simultaneous authentication-of-equals; smart grid mesh network security enhancement; substation local area networks; wireless local area networks; Authentication; Computer crime; Logic gates; Mesh networks; Protocols; Smart grids; EMSA; IEEE 802.11s; SAE; security attacks; security protocols; smart grid; wireless mesh networks;
Journal_Title :
Smart Grid, IEEE Transactions on
DOI :
10.1109/TSG.2013.2277963