Title :
Cooperative Secret Key Generation from Phase Estimation in Narrowband Fading Channels
Author :
Wang, Qian ; Xu, Kaihe ; Ren, Kui
Author_Institution :
State Key Lab. of Software Eng., Wuhan Univ., Wuhan, China
fDate :
10/1/2012 12:00:00 AM
Abstract :
By exploiting multipath fading channels as a source of common randomness, physical layer (PHY) based key generation protocols allow two terminals with correlated observations to generate secret keys with information-theoretical security. The state of the art, however, still suffers from major limitations,e.g., low key generation rate, lower entropy of key bits and a high reliance on node mobility. In this paper, a novel cooperative key generation protocol is developed to facilitate high-rate key generation in narrowband fading channels, where two keying nodes extract the phase randomness of the fading channel with the aid of relay node(s). For the first time, we explicitly consider the effect of estimation methods on the extraction of secret key bits from the underlying fading channels and focus on a popular statistical method - maximum likelihood estimation (MLE). The performance of the cooperative key generation scheme is extensively evaluated theoretically. We successfully establish both a theoretical upper bound on the maximum secret key rate from mutual information of correlated random sources and a more practical upper bound from Cramer-Rao bound (CRB) in estimation theory. Numerical examples and simulation studies are also presented to demonstrate the performance of the cooperative key generation system. The results show that the key rate can be improved by a couple of orders of magnitude compared to the existing approaches.
Keywords :
cooperative communication; cryptographic protocols; fading channels; maximum likelihood estimation; phase estimation; telecommunication security; CRB; Cramer-Rao bound; MLE; PHY based key generation protocol; cooperative secret key generation; estimation methods; estimation theory; information-theoretical security; lower entropy; multipath fading channels; mutual information; narrowband fading channel; node mobility; phase estimation; phase randomness; physical layer based key generation protocol; secret key bits extraction; statistical method-maximum likelihood estimation; Barium; Fading; Maximum likelihood estimation; Narrowband; Protocols; Relays; Steady-state; Key generation; cooperative networking; maximum likelihood estimation; multipath channel; single-tone estimation; wireless network;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2012.121010