Title :
Amplify-and-forward relay beamforming for secrecy with cooperative jamming and imperfect CSI
Author :
Vishwakarma, Sanjay ; Chockalingam, A.
Author_Institution :
Dept. of ECE, Indian Inst. of Sci., Bangalore, India
Abstract :
In this paper, we compute worst case secrecy rates in amplify-and-forward (AF) relay beamforming with cooperative jamming (CJ) in the presence of imperfect channel state information (CSI). A source-destination pair aided by M relays is considered. Number of eavesdroppers J can be more than the number of relays. Out of the M relays, k1 relays (1 ≤ k1 ≤ M) act as data relays and the remaining k2 = M - k1 relays act as jamming relays. Data relays aid the communication by relaying data in AF mode, and jamming relays cooperate by transmitting jamming signals (artificial noise). The jamming signals are created such that they degrade the eavesdroppers´ channels but do not significantly affect the intended receiver´s channel, thereby improving secrecy rate. Imperfection in the CSI is modeled using a norm-bounded error model. We solve for the optimum (k1, k2) and the weights of data relays and jamming relays that maximize the secrecy rate subject to a total relay power constraint. We relax the rank-one constraint on the complex semi-definite data relays and jamming relays weight matrices and reformulate the optimization problem into a form that can be solved using convex semi-definite programming. Numerical results on the secrecy rate that illustrate the effect of cooperative jamming, imperfect CSI, and number of eavesdroppers are presented.
Keywords :
amplify and forward communication; convex programming; cooperative communication; jamming; matrix algebra; AF relay beamforming; CJ; amplify-and-forward relay beamforming; artificial noise; complex semidefinite data relays; convex semidefinite programming; cooperative jamming; imperfect CSI; imperfect channel state information; jamming relays weight matrices; jamming signals; norm-bounded error model; optimization problem; rank-one constraint; source-destination pair; worst case secrecy rates; Array signal processing; Information rates; Jamming; Noise; Optimization; Programming; Relays; Cooperative relay beamforming; amplify-and-forward; cooperative jamming; imperfect CSI; multiple eavesdroppers; physical layer security; secrecy rate; semi-definite programming;
Conference_Titel :
Communications (ICC), 2013 IEEE International Conference on
Conference_Location :
Budapest
DOI :
10.1109/ICC.2013.6655008