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  • @article{Sanzgiri:2005,
    Abstract = {Initial work in ad hoc routing has considered only the problem of providing efficient mechanisms for finding paths in very dynamic networks, without considering security. Because of this, there are a number of attacks that can be used to manipulate the routing in an ad hoc network. In this paper, we describe these threats, specifically showing their effects on AODV and DSR. Our protocol, named Authenticated Routing for Ad hoc Networks (ARAN), uses public-key cryptographic mechanisms to defeat all identified attacks. We detail how ARAN can secure routing in environments where nodes are authorized to participate but untrusted to cooperate, as well as environments where participants do not need to be authorized to participate. Through both simulation and experimentation with our publicly-available implementation, we characterize and evaluate ARAN and show that it is able to effectively and efficiently discover secure routes within an ad hoc network.},
    Author = {Sanzgiri, Kimaya and Dahill, Bridget and LaFlamme, Daniel and Levine, Brian Neil and Shields, Clay and Belding-Royer, Elizabeth},
    Journal = {IEEE/ACM Journal of Selected Areas in Communications: Special issue on Wireless Ad hoc Networks (JSAC)},
    Keywords = {wireless; security; routing; Journal Paper},
    Month = {March},
    Number = {3},
    Pages = {598--610},
    Sponsors = {NSF-522564 and NSF-0080199 and 2000-DT-CX-K001},
    Title = {{Authenticated Routing for Ad hoc Networks}},
    Url = {http://forensics.umass.edu/pubs/aran_jsac05.pdf},
    Volume = {23},
    Year = {2005},
    Bdsk-Url-1 = {http://forensics.umass.edu/pubs/aran_jsac05.pdf}}

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