DocumentCode
2044896
Title
An Empirical Study of Collaborative Acoustic Source Localization
Author
Ali, Andreas M. ; Yao, Kung ; Collier, Travis C. ; Taylor, Charles E. ; Blumstein, Daniel T. ; Girod, Lewis
Author_Institution
Electr. Eng. UC, Los Angeles
fYear
2007
fDate
25-27 April 2007
Firstpage
41
Lastpage
50
Abstract
Field biologists use animal sounds to discover the presence of individuals and to study their behavior. Collecting bio- acoustic data has traditionally been a difficult and time- consuming process in which researchers use portable microphones to record sounds while taking notes of their own detailed observations. The recent development of new deploy- able acoustic sensor platforms presents opportunities to develop automated tools for bio-acoustic field research. In this work, we implement an AML-based source localization algorithm, and use it to localize marmot alarm-calls. We assess the performance of these techniques based on results from two field experiments: (1) a controlled test of direction-of- arrival (DOA) accuracy using a pre-recorded source signal, and (2) an experiment to detect and localize actual animals in their habitat, with a comparison to ground truth gathered from human observations. Although small arrays yield ambiguities from spatial aliasing of high frequency signals, we show that these ambiguities are readily eliminated by proper bearing crossings of the DOAs from several arrays. These results show that the AML source localization algorithm can be used to localize actual animals in their natural habitat, using a platform that is practical to deploy.
Keywords
acoustic radiators; acoustic signal processing; bioacoustics; direction-of-arrival estimation; maximum likelihood estimation; AML-based source localization algorithm; DOA accuracy; approximate maximum likelihood estimation; collaborative acoustic source localization; direction-of- arrival accuracy; high frequency signals; marmot alarm-calls; pre-recorded source signal; spatial aliasing; Acoustic sensors; Acoustic signal detection; Acoustic signal processing; Acoustic testing; Animals; Biomedical signal processing; Collaboration; Permission; Sensor arrays; Signal processing algorithms; AML; Algorithms; Bioacoustics; Experimentation; Measurement; acoustic source localization; distributed signal processing; wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Processing in Sensor Networks, 2007. IPSN 2007. 6th International Symposium on
Conference_Location
Cambridge, MA
Print_ISBN
978-1-59593-638-7
Type
conf
DOI
10.1109/IPSN.2007.4379663
Filename
4379663
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