DocumentCode :
1756716
Title :
Improving Secrecy Rate via Spectrum Leasing for Friendly Jamming
Author :
Stanojev, I. ; Yener, Aylin
Author_Institution :
Dept. of Gen. Eng., Univ. of Wisconsin-Platteville, Platteville, WI, USA
Volume :
12
Issue :
1
fYear :
2013
fDate :
41275
Firstpage :
134
Lastpage :
145
Abstract :
Cooperative jamming paradigm in secure communications enlists network nodes to transmit noise or structured codewords, in order to impair the eavesdropper´s ability to decode messages to be kept confidential from it. Such an approach can significantly help in facilitating secure communication between legitimate parties but, by definition, assumes dedicated and/or altruistic nodes willing to act as cooperative jammers. In this paper, it is demonstrated that cooperative jamming leads to meaningful secrecy rate improvements even when this assumption is removed. A distributed mechanism is developed that motivates jamming participation of otherwise non-cooperative terminals, by compensating them with an opportunity to use the fraction of legitimate parties´ spectrum for their own data traffic. With the goal of maximizing their data transmission rate priced by the invested power, cooperative jammers provide the jamming/transmitting power that is generally proportional to the amount of leased bandwidth. The fully decentralized framework is facilitated through a game-theoretic model, with the legitimate parties as the spectrum owners acting as the game leader, and the set of assisting jammers constituting the follower. To facilitate the behavior of non-cooperative and competitive multiple jammers, auctioning and power control mechanisms are applied for a follower sub-game in a two-layer leader-follower game framework.
Keywords :
cooperative communication; game theory; jamming; radio spectrum management; telecommunication security; telecommunication traffic; auctioning mechanism; competitive multiple jammers; cooperative jamming; data traffic; data transmission rate; decentralized framework; distributed mechanism; game-theoretic model; noncooperative multiple jammers; noncooperative terminal; power control mechanism; secrecy rate; secure communication; spectrum leasing; transmitting power; two-layer leader-follower game framewor; Bandwidth; Communication system security; Data communication; Games; Jamming; Power control; Wireless communication; Information theoretic security; Stackelberg game; auctions; cooperative jamming; game theory;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2012.120412.112001
Filename :
6378498
Link To Document :
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