Title :
Secure Connectivity Using Randomize-and-Forward Strategy in Cooperative Wireless Networks
Author :
Chunxiao Cai ; Yueming Cai ; Weiwei Yang ; Wendong Yang
Author_Institution :
Inst. of Commun. Eng., PLA Univ. of Sci. & Technol., Nanjing, China
Abstract :
In this letter, we study the problem of secure connectivity for colluding eavesdropper using randomize-and-forward (RF) strategy in cooperative wireless networks, where the distribution of the eavesdroppers is a homogenous Poisson point process (PPP). Considering the case of fixed relay, the exact expression for the secure connectivity probability is obtained. Then we obtain the lower bound and find that the lower bound gives accurate approximation of the exact secure connectivity probability when the eavesdropper density is small. Based on the lower bound expression, we obtain the optimal area of relay location and the approximate farthest secure distance between the source and destination for a given secure connectivity probability in the small eavesdropper density regime. Furthermore, we extend the model of fixed relay to random relay, and get the lower bound expression for the secure connectivity probability.
Keywords :
approximation theory; cooperative communication; probability; radio networks; stochastic processes; telecommunication security; PPP; RF strategy; cooperative wireless networks; eavesdropper collusion; eavesdropper density regime; eavesdropper distribution; exact secure connectivity probability approximation; fixed relay model; homogenous Poisson point process; lower bound expression; random relay model; randomize-and-forward strategy; relay location; Radio frequency; Relays; Security; Signal to noise ratio; Transmitters; Wireless networks; Homogenous Poisson point process; cooperative wireless networks; secure connectivity probability;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2013.052013.122902