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Testing the effects of near-shore environmental variables on acoustic detections: Implications on telemetry array design and data interpretation
Stocks, J.R.; Gray, C.A.; Taylor, M.D. (2014). Testing the effects of near-shore environmental variables on acoustic detections: Implications on telemetry array design and data interpretation. Mar. Technol. Soc. J. 48(1): 28-35. http://dx.doi.org/10.4031/mtsj.48.1.8
In: Marine Technology Society Journal. Marine Technology Society (MTS): Washington, D.C.. ISSN 0025-3324; e-ISSN 1948-1209, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Trefwoorden
    Measurement > Telemetry > Acoustic telemetry
    Marien/Kust
Author keywords
    detection frequency; detection range; range terst

Auteurs  Top 
  • Stocks, J.R.
  • Gray, C.A.
  • Taylor, M.D.

Abstract
    Acoustic technology is a common means to study the movements and habitat utilization of aquatic organisms. This study simultaneously assesses the relative importance of a number of major environmental variables affecting the detection range and detection frequency of acoustic tracking technology in near-shore marine environments. Transmitter power output and diel index in order of relative importance were the most influential variables affecting detection range within a temperate reef habitat. Wave height, transmitter power output, and diel index in order of relative importance were the most influential variables affecting detection range within the wash zone. Similar models resulted when examining detection frequency at 100 m within the two habitat types. Attention is also drawn to the selection of transmitter power output based upon the habitat type and environmental conditions of the study site. This study demonstrates the importance of in situ range test studies in array design and interpretation of acoustic telemetry data.

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