DocumentCode :
1642671
Title :
Modeling and Verifying Ad Hoc Routing Protocols
Author :
Arnaud, Mathilde ; Cortier, Véronique ; Delaune, Stéphanie
fYear :
2010
Firstpage :
59
Lastpage :
74
Abstract :
Mobile ad hoc networks consist of mobile wireless devices which autonomously organize their infrastructure. In such networks, a central issue, ensured by routing protocols, is to find a route from one device to another. Those protocols use cryptographic mechanisms in order to prevent malicious nodes from compromising the discovered route. Our contribution is twofold. We first propose a calculus for modeling and reasoning about security protocols, including in particular secured routing protocols. Our calculus extends standard symbolic models to take into account the characteristics of routing protocols and to model wireless communication in a more accurate way. Our second main contribution is a decision procedure for analyzing routing protocols for any network topology. By using constraint solving techniques, we show that it is possible to automatically discover (in NPTIME) whether there exists a network topology that would allow malicious nodes to mount an attack against the protocol, for a bounded number of sessions. We also provide a decision procedure for detecting attacks in case the network topology is given a priori. We demonstrate the usage and usefulness of our approach by analyzing the protocol SRP applied to DSR.
Keywords :
ad hoc networks; cryptography; mobile radio; routing protocols; telecommunication network topology; telecommunication security; DSR; ad hoc routing protocols; constraint solving techniques; cryptographic mechanisms; decision procedure; malicious nodes; mobile ad hoc networks; mobile wireless devices; network topology; protocol SRP; reasoning about security protocols; secured routing protocols; standard symbolic models; wireless communication; Ad hoc networks; Calculus; Cryptography; Network topology; Routing protocols;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Security Foundations Symposium (CSF), 2010 23rd IEEE
Conference_Location :
Edinburgh
ISSN :
1940-1434
Print_ISBN :
978-1-4244-7510-0
Electronic_ISBN :
1940-1434
Type :
conf
DOI :
10.1109/CSF.2010.12
Filename :
5552654
Link To Document :
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