• DocumentCode
    3038490
  • Title

    An all digital spread spectrum processor featuring multiplier free zero-IF down-conversion, decimation and multiplexed despreading

  • Author

    MEHRNIA, ALIREZA ; Shakeri, K. ; Eftekhar, Ali Asghar ; Soheili, F. ; Nassiri, M. ; Fotowat, A.

  • Author_Institution
    PRI Res. & Dev. Corp., Torrance, CA, USA
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    363
  • Lastpage
    366
  • Abstract
    In direct-sequence spread spectrum receivers, complete detection of the modulated-spread signal after RF downconversion consists of IF-carrier and PN-code wipe-off procedures. In the widely used conventional method, the carrier wipe-off is performed using high frequency numerically-controlled oscillators (NCOs) being clocked at rates which are at least 2 times the highest frequency in the IF spectrum. This can mead to large power consumption, especially in multi-channel receivers. On the other hand, in these receivers, faster and more reliable coarse acquisition/reacquisition requires parallel correlation, while for tracking more than one channel of DS/SS data in many spread spectrum applications (e.g. GPS), we must duplicate or multiplex the correlators. This paper describes the design of a multiplier-free all digital quadrature mixer followed by a low power multiplexed multi-phase 12-channel parallel passive correlator and their comparison to some existing architectures. It is also showed that combining multiplexing, parallel passive features and the introduced mixer enables us to implement simple circuits to reduce the power consumption of the baseband receiver as much as possible. The architecture is used to design the first mixer and correlator section of a multi-channel GPS receiver baseband and is fully implemented and tested in an FPGA
  • Keywords
    Global Positioning System; correlators; frequency convertors; mixers (circuits); multiplexing; parallel processing; radio receivers; signal detection; signal processing equipment; spread spectrum communication; telecommunication channels; COs; DS/SS data channel tracking; FPGA implementation; FPGA testing; GPS; IF spectrum; IF-carrier wipe-off procedure; PN-code wipe-off procedure; RF downconversion; all digital spread spectrum processor; baseband receiver; carrier wipe-off; clock rates; correlator duplication; correlator multiplexing; decimation; direct-sequence spread spectrum receivers; high frequency numerically-controlled oscillators; low power multiplexed multi-phase multi-channel parallel passive correlator; mixer; mixer/correlator section design; modulated-spread signal detection; multi-channel GPS receiver baseband; multi-channel receivers; multiplexed despreading; multiplexing; multiplier free zero-IF down-conversion; multiplier-free all digital quadrature mixer; parallel correlation; parallel passive features; power consumption; reliable coarse acquisition; reliable coarse reacquisition; spread spectrum applications; Baseband; Circuits; Clocks; Correlators; Energy consumption; Global Positioning System; Oscillators; RF signals; Radio frequency; Spread spectrum communication;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microelectronics, 2000. ICM 2000. Proceedings of the 12th International Conference on
  • Conference_Location
    Tehran
  • Print_ISBN
    964-360-057-2
  • Type

    conf

  • DOI
    10.1109/ICM.2000.916478
  • Filename
    916478