TY - JOUR
T1 - Physical Layer Security Based on Interference Alignment in K-User MIMO y Wiretap Channels
AU - Fan, Ye
AU - Liao, Xuewen
AU - Vasilakos, Athanasios V.
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2017
Y1 - 2017
N2 - This paper studies the secure degree of freedom (SDOF) of the multiway relay wiretap system K -user MIMO Y wiretap channel, where each legitimate user equipped with M antennas intends to convey independent signals via an intermediate relay with N antennas. There exists an eavesdropper which is equipped with Ne antennas close to the legitimate users. In order to eliminate the multiuser interference and keep the system security, interference alignment is mainly utilized in the proposed broadcast wiretap channel (BWC) and multi-access BWC (MBWC), and cooperative jamming is adopted as a supplementary approach in the MBWC model. The general feasibility conditions of the interference alignment are deduced as M ≥ K-1, 2M > N and N ≥ ((K(K-1))/2). In the BWC model, we have deduced the secure degrees of freedom (SDOF) as K\min M,N\ Ne,K(K-1)/2 , which is always a positive value. While in the MBWC model, the SDOF is given by K M,N. Finally, since the relay transmits the synthesized signals of the legal signal and the jamming signal in the MBWC model, we propose a power allocation scheme to maximize the secrecy rate. Simulation results demonstrate that our proposed power allocation scheme can improve secrecy rate under various antenna configurations.
AB - This paper studies the secure degree of freedom (SDOF) of the multiway relay wiretap system K -user MIMO Y wiretap channel, where each legitimate user equipped with M antennas intends to convey independent signals via an intermediate relay with N antennas. There exists an eavesdropper which is equipped with Ne antennas close to the legitimate users. In order to eliminate the multiuser interference and keep the system security, interference alignment is mainly utilized in the proposed broadcast wiretap channel (BWC) and multi-access BWC (MBWC), and cooperative jamming is adopted as a supplementary approach in the MBWC model. The general feasibility conditions of the interference alignment are deduced as M ≥ K-1, 2M > N and N ≥ ((K(K-1))/2). In the BWC model, we have deduced the secure degrees of freedom (SDOF) as K\min M,N\ Ne,K(K-1)/2 , which is always a positive value. While in the MBWC model, the SDOF is given by K M,N. Finally, since the relay transmits the synthesized signals of the legal signal and the jamming signal in the MBWC model, we propose a power allocation scheme to maximize the secrecy rate. Simulation results demonstrate that our proposed power allocation scheme can improve secrecy rate under various antenna configurations.
KW - cooperative jamming
KW - interference alignment
KW - MIMO Y wiretap channels
KW - Physical layer security
KW - power allocation
KW - secure degrees of freedom
UR - http://www.scopus.com/inward/record.url?scp=85028048342&partnerID=8YFLogxK
U2 - 10.1109/ACCESS.2017.2694478
DO - 10.1109/ACCESS.2017.2694478
M3 - 文章
AN - SCOPUS:85028048342
SN - 2169-3536
VL - 5
SP - 5747
EP - 5759
JO - IEEE Access
JF - IEEE Access
M1 - 7900379
ER -