DocumentCode
2535939
Title
SRDP: securing route discovery in DSR
Author
Kim, Jihye ; Tsudik, Gene
Author_Institution
Dept. of Comput. Sci., California Univ., Irvine, CA, USA
fYear
2005
fDate
17-21 July 2005
Firstpage
247
Lastpage
258
Abstract
Routing is a critical function in multi-hop mobile ad hoc networks (MANETs). A number of MANET-oriented routing protocols have been proposed, of which DSR is widely considered both the simplest and the most effective. At the same time, security in MANETs-especially, routing security-presents a number of new and interesting challenges. Many security techniques geared for MANETs have been developed, among which Ariadne is the flagship protocol for securing DSR. The focus of this work is on securing the route discovery process in DSR. Our goal is to explore a range of suitable cryptographic techniques with varying flavors of security, efficiency and robustness. The Ariadne approach (with TESLA), while very efficient, assumes loose time synchronization among MANET nodes and does not offer non-repudiation. If the fanner is not possible or the latter is desired, an alternative approach is necessary. To this end, we construct a secure route discovery protocol (SRDP) which allows the source to securely discover an authenticated route to the destination using either aggregated message authentication codes (MACs) or multi-signatures. Several concrete techniques are presented and their efficiency and security are compared and evaluated.
Keywords
ad hoc networks; cryptography; message authentication; mobile radio; routing protocols; synchronisation; telecommunication security; Ariadne; DSR; MAC; MANET; SRDP; concrete technique; cryptographic technique; dynamic source routing; flagship protocol; message authentication code; multihop mobile ad hoc network; multisignature; routing protocol; secure route discovery protocol; security technique; time synchronization; Bandwidth; Computer science; Cryptographic protocols; Cryptography; Intelligent networks; Message authentication; Mobile ad hoc networks; Routing protocols; Security; Spread spectrum communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Mobile and Ubiquitous Systems: Networking and Services, 2005. MobiQuitous 2005. The Second Annual International Conference on
Print_ISBN
0-7695-2375-7
Type
conf
DOI
10.1109/MOBIQUITOUS.2005.54
Filename
1541005
Link To Document