DocumentCode
3346108
Title
Towards a Theory of Robust Localization Against Malicious Beacon Nodes
Author
Sheng Zhong ; Jadliwala, Murtuza ; Upadhyaya, S. ; Chunming Qiao
Author_Institution
State Univ. of New York at Buffalo, Buffalo
fYear
2008
fDate
13-18 April 2008
Abstract
Localization in the presence of malicious beacon nodes is an important problem in wireless networks. Although significant progress has been made on this problem, some fundamental theoretical questions still remain unanswered: in the presence of malicious beacon nodes, what are the necessary and sufficient conditions to guarantee a bounded error during 2-dimensional location estimation? Under these necessary and sufficient conditions, what class of localization algorithms can provide that error bound? In this paper, we try to answer these questions. Specifically, we show that, when the number of malicious beacons is greater than or equal to some threshold, there is no localization algorithm that can have a bounded error. Furthermore, when the number of malicious beacons is below that threshold, we identify a class of localization algorithms that can ensure that the localization error is bounded. We also outline two algorithms in this class, one of which is guaranteed to finish in polynomial time (in the number of beacons providing information) in the worst case, while the other is based on a heuristic and is practically efficient. For completeness, we also extend the above results to the 3-dimensional case. Experimental results demonstrate that our solution has very good localization accuracy and computational efficiency.
Keywords
radio networks; 2-dimensional location estimation; localization algorithm; malicious beacon nodes; polynomial time; wireless networks; Broadcasting; Communications Society; Computational complexity; Computational efficiency; Computer science; Peer to peer computing; Polynomials; Robustness; Sufficient conditions; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM 2008. The 27th Conference on Computer Communications. IEEE
Conference_Location
Phoenix, AZ
ISSN
0743-166X
Print_ISBN
978-1-4244-2025-4
Type
conf
DOI
10.1109/INFOCOM.2008.197
Filename
4509792
Link To Document