Title :
Beamforming for fading wiretap channels with partial channel information
Author :
Gerbracht, Sabrina ; Wolf, Anne ; Jorswieck, Eduard A.
Author_Institution :
Dept. of Electr. Eng., Dresden Univ. of Technol., Dresden, Germany
Abstract :
Secrecy on the physical layer receives increased research interest. Especially in the wireless communication scenarios, the interest in confidentiality of messages increases. In this paper, we discuss the effectiveness of the beamforming strategies maximum ratio transmission (MRT), zero forcing (ZF), and an optimized beamforming (BF) strategy for the transmission under secrecy constraints. The applied channel model is the flat-fading MISO (multiple-input single-output) wiretap channel, where the channel to the eavesdropper is only partly known at the transmitter. The scenario with perfect and no channel information to the eavesdropper are included as special cases. We show that under certain conditions the achievable secrecy rates for the transmission with optimized beam-forming can be increased by transmitting artificial noise (AN) in the null space of the channel to the intended receiver, which produces additional interference only at the eavesdropper. We provide a characterization of the optimal beamforming and artificial noise beamforming and analyze the optimal power allocation for asymptotic cases (low and high SNR as well as no and perfect channel information). Numerical simulations illustrate the results.
Keywords :
array signal processing; channel capacity; fading channels; radio receivers; radio transmitters; radiofrequency interference; telecommunication security; artificial noise; channel model; eavesdropper; flat-fading MISO wiretap channel; interference; maximum ratio transmission; message confidentiality; multiple-input single-output wiretap channel; optimal power allocation; optimized beamforming; partial channel information; receiver; secrecy capacity; secrecy constraint; secrecy rate; transmitter; wireless communication; zero forcing; Array signal processing; Constraint optimization; Fading; Filtering theory; Information analysis; Interference; Null space; Physical layer; Transmitters; Wireless communication; Secrecy capacity; artificial noise; beamforming; optimization; partial CSI;
Conference_Titel :
Smart Antennas (WSA), 2010 International ITG Workshop on
Conference_Location :
Bremen
Print_ISBN :
978-1-4244-6070-0
Electronic_ISBN :
978-1-4244-6071-7
DOI :
10.1109/WSA.2010.5456398