• DocumentCode
    1808113
  • Title

    Direct downconversion architecture performance in compact pulse-Doppler phased array radar receivers

  • Author

    Vallant, Georg ; Allen, M. ; Singh, Sushil ; Epp, Michael ; Chartier, Sebastien ; Valkama, Mikko

  • Author_Institution
    Cassidian, Ulm, Germany
  • fYear
    2013
  • fDate
    21-23 Jan. 2013
  • Firstpage
    102
  • Lastpage
    104
  • Abstract
    Following the design trend of integrated receivers, the direct downconversion (DD) principle is investigated from radar system-level perspective, but with a strong focus on the analog mechanisms. While most modern radar receivers favor a digital downconversion to avoid I/Q mismatches, they demand discrete realization and larger form factors. Recent advances in digital correction algorithms originating from wireless communications, and the ongoing technology scaling of digital circuitry, allows the DD receiver to be pushed into a higher performance class. With analog and digital parts closely interacting, a receiver on chip can provide spurious-free dynamic range beyond 60 dB, suitable for deployment in phased arrays. By evaluating measurement data from self-designed single receivers and applying adequate digital correction methodology, we give essential metrics and performance results to show the feasibility of DD for phased-array radar applications.
  • Keywords
    Doppler radar; phased array radar; radar receivers; analog mechanism; compact pulse Doppler phased array radar receiver; digital downconversion; direct downconversion architecture; discrete realization; integrated receiver; wireless communication; Doppler effect; Mirrors; Mixers; Pulse measurements; Radar; Radio frequency; Receivers; I/Q imbalance; direct downconversion receiver; image rejection ratio; pulse-Doppler radar; spurious-free dynamic range; system-on-chip;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Silicon Monolithic Integrated Circuits in RF Systems (SiRF), 2013 IEEE 13th Topical Meeting on
  • Conference_Location
    Austin, TX
  • Print_ISBN
    978-1-4673-1552-4
  • Electronic_ISBN
    978-1-4673-1551-7
  • Type

    conf

  • DOI
    10.1109/SiRF.2013.6489446
  • Filename
    6489446