• DocumentCode
    1253598
  • Title

    Precoder Design for Physical Layer Multicasting

  • Author

    Zhu, Hao ; Prasad, Narayan ; Rangarajan, Sampath

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Univ. of Minnesota, Minneapolis, MN, USA
  • Volume
    60
  • Issue
    11
  • fYear
    2012
  • Firstpage
    5932
  • Lastpage
    5947
  • Abstract
    This paper studies the instantaneous rate maximization and the weighted sum delay minimization problems over a K-user multicast channel, where multiple antennas are available at the transmitter as well as at all the receivers. Motivated by the degree of freedom optimality and the simplicity offered by linear precoding schemes, we consider the design of linear precoders using the aforementioned two criteria. We first consider the scenario wherein the linear precoder can be any complex-valued matrix subject to rank and power constraints. We propose cyclic alternating ascent based precoder design algorithms and establish their convergence to respective stationary points. Simulation results reveal that our proposed algorithms considerably outperform known competing solutions. We then consider a scenario in which the linear precoder can be formed by selecting and concatenating precoders from a given finite codebook of precoding matrices, subject to rank and power constraints. We show that under this scenario, the instantaneous rate maximization problem is equivalent to a robust submodular maximization problem which is strongly NP hard. We propose a deterministic approximation algorithm and show that it yields a bicriteria approximation. For the weighted sum delay minimization problem we propose a simple deterministic greedy algorithm, which at each step entails approximately maximizing a submodular set function subject to multiple knapsack constraints, and establish its performance guarantee.
  • Keywords
    computational complexity; concatenated codes; cyclic codes; knapsack problems; linear codes; matrix algebra; multicast communication; optimisation; precoding; NP hard problem; complex-valued matrix; concatenating precoders; cyclic alternating ascent based precoder design algorithms; finite codebook; instantaneous rate maximization; k-user multicast channel; linear precoding schemes; multiple antennas; multiple knapsack constraints; physical layer multicasting; precoder design; precoding matrices; rank-power constraints; receivers; robust submodular maximization problem; stationary points; submodular set function; transmitter; weighted sum delay minimization problems; Algorithm design and analysis; Array signal processing; Delay; Multicast communication; Signal processing algorithms; Transmitting antennas; Vectors; Cyclic alternating ascent; NP hard; multicast; submodular set function;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2012.2210710
  • Filename
    6252072