• DocumentCode
    4711
  • Title

    Multi-User Linear Precoding for Multi-Polarized Massive MIMO System Under Imperfect CSIT

  • Author

    Jaehyun Park ; Clerckx, Bruno

  • Author_Institution
    Dept. of Electron. Eng., Pukyong Nat. Univ., Busan, South Korea
  • Volume
    14
  • Issue
    5
  • fYear
    2015
  • fDate
    May-15
  • Firstpage
    2532
  • Lastpage
    2547
  • Abstract
    The space limitation and channel acquisition prevent Massive MIMO from being easily deployed in a practical setup. Motivated by current deployments of LTE-Advanced, the use of multi-polarized antenna elements can be an efficient solution to address the space constraint. Furthermore, the dual-structured precoding, in which a preprocessing based on the spatial correlation and a subsequent linear precoding based on the short-term channel state information at the transmitter (CSIT) are concatenated, can reduce the feedback overhead efficiently. By grouping and preprocessing spatially correlated mobile stations (MSs), the dimension of the precoding signal space is reduced and the corresponding short-term CSIT dimension is reduced. In this paper, to reduce the feedback overhead further, we propose a dual-structured multi-user linear precoding, in which the subgrouping method based on co-polarization is additionally applied to the spatially grouped MSs in the preprocessing stage. Furthermore, under imperfect CSIT, the proposed scheme is asymptotically analyzed based on random matrix theory. By investigating the behavior of the asymptotic performance, we also propose a new dual-structured precoding in which the precoding mode is switched between two dual-structured precoding strategies with 1) the preprocessing based only on the spatial correlation and 2) the preprocessing based on both the spatial correlation and polarization. Finally, we extend it to 3D dual-structured precoding.
  • Keywords
    Long Term Evolution; MIMO communication; matrix algebra; precoding; radio transmitters; wireless channels; CSIT; LTE advanced; MS; asymptotic performance; channel acquisition; dual structured precoding; linear precoding; mobile stations; multipolarized antenna elements; multipolarized massive MIMO system; multiuser linear precoding; precoding signal space; random matrix theory; short-term channel state information at the transmitter; space constraint; space limitation; spatial correlation; spatial polarization; Correlation; Covariance matrices; Interference; MIMO; Transmitting antennas; Vectors; Dual structured precoding with long-term/short-term CSIT; Multi-polarized Massive MIMO; Multi-polarized massive MIMO; dual structured precoding with long-term/short-term CSIT;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2014.2388207
  • Filename
    7001705