High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring

The source properties and radiation patterns of animal vocalisations define, along with propagation and noise conditions, the active space in which these vocalisations can be detected by conspecifics, predators, prey, and by passive acoustic monitoring (PAM). This study reports the 4π (360° horizont...

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Published in:The Journal of the Acoustical Society of America
Main Authors: MacAulay, Jamie Donald John, Malinka, Chloe Elizabeth, Gillespie, Douglas Michael, Madsen, Peter T.
Format: Article in Journal/Newspaper
Language:English
Published: 2020
Subjects:
Online Access:https://risweb.st-andrews.ac.uk/portal/en/researchoutput/high-resolution-threedimensional-beam-radiation-pattern-of-harbour-porpoise-clicks-with-implications-for-passive-acoustic-monitoring(39f40a40-e581-4dcd-816e-35206908744b).html
https://doi.org/10.1121/10.0001376
https://research-repository.st-andrews.ac.uk/bitstream/10023/21205/1/MacAulay_2020_High_resolution_JASA_4175.pdf
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spelling ftunstandrewcris:oai:risweb.st-andrews.ac.uk:publications/39f40a40-e581-4dcd-816e-35206908744b 2023-05-15T16:33:19+02:00 High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring MacAulay, Jamie Donald John Malinka, Chloe Elizabeth Gillespie, Douglas Michael Madsen, Peter T. 2020-06-25 application/pdf https://risweb.st-andrews.ac.uk/portal/en/researchoutput/high-resolution-threedimensional-beam-radiation-pattern-of-harbour-porpoise-clicks-with-implications-for-passive-acoustic-monitoring(39f40a40-e581-4dcd-816e-35206908744b).html https://doi.org/10.1121/10.0001376 https://research-repository.st-andrews.ac.uk/bitstream/10023/21205/1/MacAulay_2020_High_resolution_JASA_4175.pdf eng eng info:eu-repo/semantics/openAccess MacAulay , J D J , Malinka , C E , Gillespie , D M & Madsen , P T 2020 , ' High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring ' , Journal of the Acoustical Society of America , vol. 147 , no. 6 , pp. 4175-4188 . https://doi.org/10.1121/10.0001376 article 2020 ftunstandrewcris https://doi.org/10.1121/10.0001376 2022-06-02T07:51:55Z The source properties and radiation patterns of animal vocalisations define, along with propagation and noise conditions, the active space in which these vocalisations can be detected by conspecifics, predators, prey, and by passive acoustic monitoring (PAM). This study reports the 4π (360° horizontal and vertical) beam profile of a free-swimming, trained harbour porpoise measured using a 27-element hydrophone array. The forward echolocation beam is highly directional, as predicted by a piston model, and is consistent with previous measurements. However, at off-axis angles greater than ±30°, the beam attenuates more rapidly than the piston model and no side lobes are present. A diffuse back beam is also present with levels about −30 dB relative to the source level. In PAM, up to 50% of detections can be from portions of the beam profile with distorted click spectra, although this drops substantially for higher detection thresholds. Simulations of the probability of acoustically detecting a harbour porpoise show that a traditional piston model can underestimate the probability of detection compared to the actual three-dimensional radiation pattern documented here. This highlights the importance of empirical 4π measurements of beam profiles of toothed whales, both to improve understanding of toothed whale biology and to inform PAM. Article in Journal/Newspaper Harbour porpoise toothed whale toothed whales University of St Andrews: Research Portal The Journal of the Acoustical Society of America 147 6 4175 4188
institution Open Polar
collection University of St Andrews: Research Portal
op_collection_id ftunstandrewcris
language English
description The source properties and radiation patterns of animal vocalisations define, along with propagation and noise conditions, the active space in which these vocalisations can be detected by conspecifics, predators, prey, and by passive acoustic monitoring (PAM). This study reports the 4π (360° horizontal and vertical) beam profile of a free-swimming, trained harbour porpoise measured using a 27-element hydrophone array. The forward echolocation beam is highly directional, as predicted by a piston model, and is consistent with previous measurements. However, at off-axis angles greater than ±30°, the beam attenuates more rapidly than the piston model and no side lobes are present. A diffuse back beam is also present with levels about −30 dB relative to the source level. In PAM, up to 50% of detections can be from portions of the beam profile with distorted click spectra, although this drops substantially for higher detection thresholds. Simulations of the probability of acoustically detecting a harbour porpoise show that a traditional piston model can underestimate the probability of detection compared to the actual three-dimensional radiation pattern documented here. This highlights the importance of empirical 4π measurements of beam profiles of toothed whales, both to improve understanding of toothed whale biology and to inform PAM.
format Article in Journal/Newspaper
author MacAulay, Jamie Donald John
Malinka, Chloe Elizabeth
Gillespie, Douglas Michael
Madsen, Peter T.
spellingShingle MacAulay, Jamie Donald John
Malinka, Chloe Elizabeth
Gillespie, Douglas Michael
Madsen, Peter T.
High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
author_facet MacAulay, Jamie Donald John
Malinka, Chloe Elizabeth
Gillespie, Douglas Michael
Madsen, Peter T.
author_sort MacAulay, Jamie Donald John
title High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
title_short High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
title_full High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
title_fullStr High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
title_full_unstemmed High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
title_sort high resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring
publishDate 2020
url https://risweb.st-andrews.ac.uk/portal/en/researchoutput/high-resolution-threedimensional-beam-radiation-pattern-of-harbour-porpoise-clicks-with-implications-for-passive-acoustic-monitoring(39f40a40-e581-4dcd-816e-35206908744b).html
https://doi.org/10.1121/10.0001376
https://research-repository.st-andrews.ac.uk/bitstream/10023/21205/1/MacAulay_2020_High_resolution_JASA_4175.pdf
genre Harbour porpoise
toothed whale
toothed whales
genre_facet Harbour porpoise
toothed whale
toothed whales
op_source MacAulay , J D J , Malinka , C E , Gillespie , D M & Madsen , P T 2020 , ' High resolution three-dimensional beam radiation pattern of harbour porpoise clicks with implications for passive acoustic monitoring ' , Journal of the Acoustical Society of America , vol. 147 , no. 6 , pp. 4175-4188 . https://doi.org/10.1121/10.0001376
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1121/10.0001376
container_title The Journal of the Acoustical Society of America
container_volume 147
container_issue 6
container_start_page 4175
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