Title :
Security analysis for Rayleigh fading channel by artificial noise
Author :
Hao Wei ; Xiaoyun Hou ; Yan Zhu ; Dongming Wang
Author_Institution :
Nat. Mobile Commun. Res. Lab., Southeast Univ., Nanjing, China
Abstract :
In classical three-node communication scenario, two legitimate users (Alice and Bob) communicate over a fading channel and a third one (Eve) observes their transmission as an eavesdropper. Alice can transmit the signal with artificial noise to ensure security communication. The artificial noise degrades the performance of Eve, and it can be cancelled by Bob because of pre-knowing. In this paper, a new concept - equivalent security SNR is denned for clarity and simplicity. And we make analysis for the existence probability of positive security capacity and the security outage probability. Then we derive the optimal factor of power allocation for artificial noise and give the theoretical results when the eavesdropper´s channel quality is very high. Theory analysis and simulation results show that by using artificial noise, the security capacity is increased greatly and the security of the physical layer communication is promised.
Keywords :
Rayleigh channels; cooperative communication; cryptography; interference suppression; jamming; probability; telecommunication network reliability; telecommunication security; Rayleigh fading channel security analysis; artificial noise degradation; cooperative jammer; cryptographic security mechanism; eavesdropper channel quality; equivalent security SNR; outage probability security; physical layer communication security; positive security capacity probability; power allocation optimal factor; signal transmission; three-node communication security; Capacity planning; Jamming; Physical layer; Security; Signal to noise ratio; Simulation; artificial noise; equivalent security SNR; existence probability; security outage probability;
Conference_Titel :
Wireless Communications and Signal Processing (WCSP), 2014 Sixth International Conference on
Conference_Location :
Hefei
DOI :
10.1109/WCSP.2014.6992187