DocumentCode :
2843558
Title :
Secrecy capacity of the full-duplex AF relay wire-tap channel under residual self-interference
Author :
Cuong Dang ; Jimenez Rodriguez, Leonardo ; Tran, Nghi H. ; Shelly, Sachin ; Sastry, Shivakumar
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Akron, Akron, OH, USA
fYear :
2015
fDate :
9-12 March 2015
Firstpage :
99
Lastpage :
104
Abstract :
This paper studies a wire-tap channel in which a source node wants to communicate securely to a destination node in the presence of an eavesdropper and under the aid of an amplify-and-forward (AF) relay operating in full-duplex (FD) mode. The residual self-interference due to FD transmission is explicitly taken into account. The secrecy capacity and the respective optimal power allocation schemes for this system are examined under both individual and joint power constraints. At first, the related optimization problems are shown to be quasi-concave. As such, the globally optimal solution exists and is unique. Due to the non-linearity of the derivative, we apply a simple bisection method for root finding and obtain a simple expression for the optimal power allocation scheme. To further provide some insight on the solutions, we apply the method of dominant balance to analyze the capacity and power allocations in different high power regions. It is then demonstrated that full relay power is only needed when the power at the relay is sufficiently small compared to the power at the source. Comparisons with half-duplex (HD) relaying also revealed that FD can achieve a significantly higher secrecy capacity. Finally, numerical results are presented to confirm the optimality of the solutions.
Keywords :
amplify and forward communication; radiofrequency interference; relay networks (telecommunication); wireless channels; AF relay; HD relaying; amplify-and-forward; destination node; eavesdropper; full-duplex AF relay wiretap channel; half-duplex; joint power constraints; optimal power allocation scheme; optimal power allocation schemes; residual self-interference; secrecy capacity; source node; Conferences; High definition video; Joints; Optimization; Relays; Resource management; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2015 IEEE
Conference_Location :
New Orleans, LA
Type :
conf
DOI :
10.1109/WCNC.2015.7127452
Filename :
7127452
Link To Document :
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