• DocumentCode
    59640
  • Title

    Robust Outage Secrecy Rate Optimizations for a MIMO Secrecy Channel

  • Author

    Zheng Chu ; Cumanan, Kanapathippillai ; Zhiguo Ding ; Johnston, Martin ; Le Goff, Stephane

  • Author_Institution
    Sch. of Electr. & Electron. Eng., Newcastle Univ., Newcastle upon Tyne, UK
  • Volume
    4
  • Issue
    1
  • fYear
    2015
  • fDate
    Feb. 2015
  • Firstpage
    86
  • Lastpage
    89
  • Abstract
    This letter investigates robust secrecy rate optimization techniques for a multiple-input-multiple-output (MIMO) wiretap channel in the presence of a multiantenna eavesdropper. In particular, two robust secrecy rate optimization problems are studied: robust power minimization with an outage secrecy rate constraint and robust secrecy rate maximization subject to the outage secrecy rate and transmit power constraints. Here, it is assumed that the legitimate transmitter has perfect channel state information (CSI) of the legitimate receiver and imperfect CSI of the eavesdropper. Both robust problems are not convex in terms of transmit covariance matrix and the outage secrecy rate constraint. Hence, we propose a conservative approximation approach to reformulate this outage secrecy rate constraint by exploiting the Bernstein-type inequality to obtain a tractable solution for these two robust problems. Numerical results have been provided to validate the convergence and the performance of the proposed robust algorithms.
  • Keywords
    MIMO communication; antenna arrays; approximation theory; covariance matrices; optimisation; wireless channels; Bernstein-type inequality; MIMO secrecy channel; conservative approximation approach; multiantenna eavesdropper; robust outage secrecy rate optimization; robust secrecy rate optimization problem; transmit covariance matrix; wiretap channel; Approximation methods; MIMO; Minimization; Optimization; Robustness; Transmitters; Uncertainty; Bernstein-type inequality; MIMO system; Multiple-input-multiple-output (MIMO) system; convex optimization; outage secrecy rate; physical-layer secrecy;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications Letters, IEEE
  • Publisher
    ieee
  • ISSN
    2162-2337
  • Type

    jour

  • DOI
    10.1109/LWC.2014.2374611
  • Filename
    6967767