• DocumentCode
    32671
  • Title

    A General Robust Linear Transceiver Design for Multi-Hop Amplify-and-Forward MIMO Relaying Systems

  • Author

    Chengwen Xing ; Shaodan Ma ; Zesong Fei ; Yik-Chung Wu ; Poor, H. Vincent

  • Author_Institution
    Sch. of Inf. & Electron., Beijing Inst. of Technol., Beijing, China
  • Volume
    61
  • Issue
    5
  • fYear
    2013
  • fDate
    1-Mar-13
  • Firstpage
    1196
  • Lastpage
    1209
  • Abstract
    In this paper, linear transceiver design for multi-hop amplify-and-forward (AF) multi-input multi-output (MIMO) relaying systems with Gaussian distributed channel estimation errors is investigated. Commonly used transceiver design criteria including weighted mean-square-error (MSE) minimization, capacity maximization, worst-MSE/MAX-MSE minimization and weighted sum-rate maximization, are considered and unified into a single matrix-variate optimization problem. A general robust design algorithm is proposed to solve the unified problem. Specifically, by exploiting majorization theory and properties of matrix-variate functions, the optimal structure of the robust transceiver is derived when either the covariance matrix of channel estimation errors seen from the transmitter side or the corresponding covariance matrix seen from the receiver side is proportional to an identity matrix. Based on the optimal structure, the original transceiver design problems are reduced to much simpler problems with only scalar variables whose solutions are readily obtained by an iterative water-filling algorithm. A number of existing transceiver design algorithms are found to be special cases of the proposed solution. The differences between our work and the existing related work are also discussed in detail. The performance advantages of the proposed robust designs are demonstrated by simulation results.
  • Keywords
    Gaussian distribution; MIMO communication; amplify and forward communication; channel estimation; covariance matrices; iterative methods; mean square error methods; minimisation; optimisation; radio receivers; AF multi-input multi-output relaying system; Gaussian distributed channel estimation errors; covariance matrix; iterative water-filling algorithm; linear transceiver design; multihop amplify-and-forward MIMO relaying system; optimal structure; robust linear transceiver design; scalar variables; single matrix-variate optimization problem; weighted mean-square-error minimization; weighted sum-rate maximization; worst-MSE-MAX-MSE minimization; Channel estimation; Covariance matrix; MIMO; Minimization; Relays; Robustness; Transceivers; Amplify-and-forward (AF); MIMO relaying; matrix-variate optimization; robust transceiver design;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2013.2243439
  • Filename
    6422411