Protection from Vampire Attacks on Routing Protocol
Keywords:
Denial of service, routing, security, ad-hoc networks, wireless networks, sensor networksAbstract
In sensing and pervasive computing ad-hoc low-power wireless networks are an exciting research. Prior security work has first focused on denial of communication at the routing or levels of media access control. This paper examine resource depletion attacks at routing protocol layer, which disable networks by quickly draining node's battery power. These “Vampire” attacks are not specific to any particular protocol, but rather depend on the properties of many well known classes of routing protocols. We find that all examined protocols are affected to Vampire attacks ,which are destructing, hard to detect, and are easy to carry out using as few as one malicious insider sending only protocol compliant messages. In case of worst case, a single Vampire can increase network-wide energy usage by a factor of O(N), where N in the number of nodes of network. The methods we discuss to mitigate these types of attacks which includes a new proof-of- concept protocol that bounds the damage caused by Vampires during the packet forwarding phase.
References
[1] Imad Aad, Jean-Pierre Hubaux, and Edward W. Knightly, Denial of service resilience in ad hoc networks, MobiCom, 2004.
[2] Haowen Chan and Adrian Perrig, Security and privacy in sensor networks,Computer 36 (2003), no. 10.
[3] Jae-Hwan Chang and Leandros Tassiulas, Maximum lifetime routing inwireless sensor networks, IEEE/ACM Transactions on Networking 12(2004), no. 4.
[4] Jing Deng, Richard Han, and Shivakant Mishra, Defending against path based DoS attacks in wireless sensor networks, ACM workshop on security of ad hoc and sensor networks, 2005.
[5] Sheetalkumar Doshi, Shweta Bhandare, and Timothy X. Brown, An on demand minimum energy routing protocol for a wireless ad hoc network,ACM SIGMOBILE Mobile Computing and Communications Review 6(2002), no. 3.
[6] Sharon Goldberg, David Xiao, Eran Tromer, Boaz Barak, and Jennifer Rexford, Path-quality monitoring in the presence of adversaries, SIGMETRICS,2008.
[7] Mina Guirguis, Azer Bestavros, Ibrahim Matta, and Yuting Zhang,Reduction of quality (RoQ) attacks on Internet end-systems, INFOCOM,2005.
[8] Yih-Chun Hu, Adrian Perrig, and David B. Johnson, Ariadne: A secure on-demand routing protocol for ad hoc networks, MobiCom, 2002
[9] Packet leashes: A defense against wormhole attacks in wireless ad hoc networks, INFOCOM, 2003.
[10] Bryan Parno, Mark Luk, Evan Gaustad, and Adrian Perrig, Secure sensornetwork routing: A clean-slate approach, CoNEXT, 2006.
[11] David R. Raymond, Randy C. Marchany, Michael I. Brownfield, and Scott F. Midkiff, Effects of denial-of-sleep attacks on wireless sensor network MAC protocols, IEEE Transactions on Vehicular Technology 58 (2009), no. 1.
[12] David R. Raymond and Scott F. Midkiff, Denial-of- service in wireless sensor networks: Attacks and defenses, IEEE Pervasive Computing 7(2008), no. 1.
[13] Frank Stajano and Ross Anderson, The resurrecting duckling: security issues for ad-hoc wireless networks, International workshop on security protocols, 1999.
[14] Lakshminarayanan Subramanian, Randy H. Katz, Volker Roth, Scott Shenker, and Ion Stoica, Reliable broadcast in unknown fixed-identity networks, Annual ACM SIGACT-SIGOPS symposium on principles of distributed computing, 2005.
[15]
Downloads
Published
Issue
Section
Categories
License

This work is licensed under a Creative Commons Attribution 4.0 International License.
This work is licensed under a Creative Commons Attribution 4.0 International License.
Under this license, authors retain ownership of the copyright for their articles. By submitting to the International Journal of Advanced Research in Science, Management, and Technology (IJARSMT), authors grant the journal the right of first publication. Users are free to share, copy, and redistribute the material in any medium or format, and to adapt, remix, transform, and build upon the material for any purpose, including commercially, provided that appropriate credit is given to the original author(s) and the journal, a link to the license is provided, and any changes made are indicated.
