Secure Transmission for Hierarchical Information Accessibility in Downlink MU-MIMO

  • Lee, Kanguk; 
  • Choi, Jinseok; 
  • Kim, Dong Ku; 
  • Park, Jeonghun
Citations

WEB OF SCIENCE

4
Citations

SCOPUS

6

초록

Physical layer security is a useful tool to prevent illegal wiretapping to confidential information. In this paper, we consider a generalized model of conventional physical layer security, referred as hierarchical information accessibility (HIA). A main feature of the HIA model is that a network has a hierarchy in information access, wherein decoding feasibility is determined by each user's priority. Under this HIA model, we formulate a sum secrecy rate maximization problem with regard to precoding vectors. This problem is challenging since multiple non-smooth functions are involved into the secrecy rate to fulfill the HIA conditions and also the problem is non-convex. To address the challenges, we approximate the minimum function by using the LogSumExp technique, thereafter obtain the first-order optimality condition. One key observation is that the derived condition is cast as a functional eigenvalue problem, where the eigenvalue is equivalent to the approximated objective function of the formulated problem. Accordingly, we show that finding a principal eigenvector is equivalent to finding a local optimal solution. To this end, we develop a novel method called generalized power iteration for HIA (GPI-HIA). Simulations demonstrate that the GPI-HIA significantly outperforms other baseline methods in terms of the secrecy rate.

키워드

Security; Precoding; NOMA; Downlink; Optimization; Physical layer security; Quality of service; Physical layer security; hierarchical security; MU-MIMO; multigroup multicast; beamforming optimization; PHYSICAL LAYER SECURITY; BEAMFORMING DESIGN; RATE OPTIMIZATION; POWER ALLOCATION; UNICAST; ROBUST
제목
Secure Transmission for Hierarchical Information Accessibility in Downlink MU-MIMO
저자
Lee, Kanguk; Choi, Jinseok; Kim, Dong Ku; Park, Jeonghun
DOI
10.1109/TCOMM.2022.3189386
발행일
2022-09
유형
Article
저널명
IEEE Transactions on Communications
권
70
호
9
페이지
6181 ~ 6195