• DocumentCode
    359430
  • Title

    Array measurements and characterizations with relative velocity as a parameter

  • Author

    Carey, William M.

  • Author_Institution
    Dept. of Aerosp. & Mech. Eng., Boston Univ., MA, USA
  • Volume
    1
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    181
  • Abstract
    Space and time are usually treated as independent random variables with assumed ergodicity; however, dynamic sound fields are produced by moving sources in a multipath/modal sound channel. Can the velocity and range of a source be utilized in a space-time processor to increase gain, cancel noise and improve resolution? This paper summarizes experiments performed with horizontal arrays and processing which used source-receiver relative velocity as a processing variable, that is space-time processing. Results obtained in a shipping noise field showed the relative velocity acted as a filter that improved the signal-to noise ratio for sources with known relative velocity but reduced it for sources having unknown or mismatched relative velocities. A shallow water experiment conducted with a vertical array, moving source, and Hankel transform processing showed that the depth dependent horizontal wavenumber spectra were measurable when source position and velocity were known and comparable to calculated spectra in both amplitude and phase. Thus, measurement and cancellation of moving surface ships is possible and enhanced if the relative velocity is known. In addition if the region in the vicinity of the measurement array is known; the dynamic modal variations can be adaptively modeled
  • Keywords
    acoustic imaging; oceanographic techniques; sonar; underwater sound; Hankel transform; acoustic array; array measurements; characterization; dynamic modal variation; dynamic sound field; measurement technique; moving source; moving surface ship; multipath modal sound channe; ocean; relative velocity; shipping noise field; sonar; space-time processor; underwater sound; Acoustic noise; Filters; Noise cancellation; Noise reduction; Phased arrays; Random variables; Signal resolution; Signal to noise ratio; Velocity measurement; Water resources;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    OCEANS 2000 MTS/IEEE Conference and Exhibition
  • Conference_Location
    Providence, RI
  • Print_ISBN
    0-7803-6551-8
  • Type

    conf

  • DOI
    10.1109/OCEANS.2000.881257
  • Filename
    881257