• DocumentCode
    3755862
  • Title

    Energy-proportional single-carrier frequency domain equalization for mmWave wireless communication

  • Author

    Nicholas Preyss;Sara Rodriguez Egea;Andreas Burg

  • Author_Institution
    Telecommunications Circuits Laboratory, School of Engineering, EPF Lausanne, Lausanne, Switzerland
  • fYear
    2015
  • Firstpage
    1133
  • Lastpage
    1137
  • Abstract
    mmWave wireless communication is proposed for high-throughput and high-density applications. Due to the large channel bandwidth, mmWave systems face a large variation in the observed delay spread. Many proposed single-carrier (SC) mmWave systems rely on cyclic-prefix (CP) frequency domain equalization (FDE) in order to deal with worst case channel conditions. A downside of CP-FDE receivers is their constant energy consumption independent of the actual channel conditions. The alternative overlap-save (OS) FDE receiver can adapt its complexity, but exhibits an inferior equalization performance. By proposing a hybrid FDE approach the receiver can adapt its complexity and therefor its power consumption dynamically to the given channel conditions. Using the structural similarity of overlap-save and cyclic-prefix FDE architectures the proposed hybrid receiver can switch between the two modes of operation with minimum required hardware overhead. It is shown that the proposed hybrid receiver can significantly reduce its complexity in benign channel conditions while still matching the equalization properties of a conventional CP-FDE receivers in very frequency selective environments.
  • Keywords
    "Receivers","Complexity theory","Delays","Frequency-domain analysis","Equalizers","Wireless communication","Switches"
  • Publisher
    ieee
  • Conference_Titel
    Signals, Systems and Computers, 2015 49th Asilomar Conference on
  • Electronic_ISBN
    1058-6393
  • Type

    conf

  • DOI
    10.1109/ACSSC.2015.7421317
  • Filename
    7421317