• DocumentCode
    2435013
  • Title

    Distributed source localization with multiple sensor arrays and frequency-selective spatial coherence

  • Author

    Kozick, Richard J. ; Sadler, Brian M.

  • Author_Institution
    Bucknell Univ., Lewisburg, PA, USA
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    419
  • Lastpage
    423
  • Abstract
    Multiple sensor arrays distributed over a planar region provide the means for highly accurate localization of the (x,y) position of a source. In some applications, such as microphone arrays receiving aeroacoustic signals from ground vehicles, random fluctuations in the air lead to frequency-selective coherence of the signals that arrive at widely separated arrays. We present a performance analysis for localization of a wideband source using multiple sensor arrays. The wavefronts are modeled with perfect spatial coherence over individual arrays and with frequency-selective coherence between distinct arrays. The sensor signals are modeled as wideband Gaussian random processes, and we study the Cramer-Rao bound (CRB) on source localization accuracy for varying levels of signal coherence and for processing schemes with different levels of complexity. We show that significant improvements in source localization accuracy are possible when partial signal coherence from array to array is exploited. Further, we show that a distributed processing scheme involving bearing estimation at the individual arrays and time-delay estimation between pairs of sensors performs nearly as well as the optimum scheme that jointly processes the signals from all sensors. Results based on measured aeroacoustic data are included to illustrate frequency-selective signal coherence at distributed arrays
  • Keywords
    Gaussian processes; aeroacoustics; array signal processing; delay estimation; direction-of-arrival estimation; distributed sensors; random processes; Cramer-Rao bound; aeroacoustic signals; bearing estimation; distributed processing scheme; frequency-selective coherence; frequency-selective spatial coherence; ground vehicles; microphone arrays; multiple sensor arrays; partial signal coherence; perfect spatial coherence; performance analysis; random fluctuations; signal coherence; source localization accuracy; time-delay estimation; wideband Gaussian random processes; wideband source; Fluctuations; Frequency; Land vehicles; Microphone arrays; Performance analysis; Random processes; Sensor arrays; Signal processing; Spatial coherence; Wideband;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Statistical Signal and Array Processing, 2000. Proceedings of the Tenth IEEE Workshop on
  • Conference_Location
    Pocono Manor, PA
  • Print_ISBN
    0-7803-5988-7
  • Type

    conf

  • DOI
    10.1109/SSAP.2000.870158
  • Filename
    870158