Title :
Uncoordinated Cooperative Jamming for Secret Communications
Author :
Shuangyu Luo ; Jiangyuan Li ; Petropulu, Athina P.
Author_Institution :
Teradyne Corp., Sunnyvale, CA, USA
Abstract :
We consider a Gaussian wiretap channel model with a single-antenna source, destination and eavesdropper. The communication is assisted by multiple multiantenna helpers that transmit noise to confound the eavesdropper. First, we consider a nulling scheme, in which each helper independently transmits noise, designed to maximize the system secrecy rate while creating no interference to the destination. In this scheme, each helper requires only local relay-destination channel state information (CSI). When global CSI is available at the relays, the nulling scheme is not optimal. The optimal jamming noise structure is also provided under global CSI. Interestingly, it is shown both analytically and via simulations that, despite its reduced CSI requirements, the nulling scheme may have secrecy rate performance that is very close to the optimal one. The probability of outage of the nulling scheme is provided in closed form based on the statistics of the eavesdropper CSI.
Keywords :
Gaussian channels; antenna arrays; cooperative communication; probability; relay networks (telecommunication); telecommunication security; Gaussian wiretap channel model; eavesdropper CSI; local relay-destination CSI; local relay-destination channel state information; multiple multiantenna helpers; nulling scheme; optimal jamming noise structure; outage probability; secret communications; single-antenna source; uncoordinated cooperative jamming; Antennas; Interference; Jamming; Probability; Relays; Signal to noise ratio; Artificial noise; cooperative jamming; outage probability; physical layer security;
Journal_Title :
Information Forensics and Security, IEEE Transactions on
DOI :
10.1109/TIFS.2013.2261060