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Effect of animal orientation on acoustic estimates of zooplankton properties

  • Woods Hole Oceanographic Institution
  • BAE Systems

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

It is well known that the behavior of zooplankton and, in particular, their orientation distribution dramatically affects the level of backscattered acoustic energy. As a result, interpretation of acoustic survey data in the ocean is subject to error. In order to quantify these effects, laboratory data from two important classes of animals were collected. The data involved broad-band (350-650 kHz) acoustic signals insonifying individual animals whose orientation was varied over the range 0°-360° in 1° increments. The animals were from two major anatomical groups: fluid-like (decapod shrimp; Palaemonetes vulgaris) and elastic-shelled (periwinkles; Littorina littorea). The data were analyzed both in the time domain (with pulse compression processing) and the frequency domain. Averages of the laboratory data over different orientation distributions illustrate the variability in average target strength that can be expected in the ocean environment. The average target strength of the shrimp varied by 3 dB when averaged over orientation distributions centered around broadside and end-on incidence. In addition, size estimates from pulse compression processing of the broad-band echoes were made for various orientation distributions for both the shrimp and periwinkles. These results show the necessity of animal orientation information for the proper interpretation of acoustic backscatter data.

Original languageEnglish
Pages (from-to)130-138
Number of pages9
JournalIEEE Journal of Oceanic Engineering
Volume27
Issue number1
DOIs
StatePublished - Jan 2002

Keywords

  • Acoustic scattering
  • Animal orientation
  • Zooplankton

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