DocumentCode :
2127434
Title :
OptaSense® Distributed Acoustic and Seismic Sensing Performance for Multi-threat, Multi-environment Border Monitoring
Author :
Duckworth, Gregory ; Owen, Archibald ; Worsley, Jerry ; Stephenson, Henry
Author_Institution :
OptaSense, Cambridge, MA, USA
fYear :
2013
fDate :
12-14 Aug. 2013
Firstpage :
273
Lastpage :
276
Abstract :
The OptaSense® Distributed Acoustic Sensing (DAS) technology turns any cable with single-mode optical fiber into a very large and densely sampled acoustic/seismic sensor array, covering up to a 50-kilometer aperture per system with """"virtual"""" sensor separations as small as one eter. The system uses Rayleigh scattering from the mperfections in the fiber to return optical signals measuring local fiber strain from seismic, air and water acoustic disturbances. The scalable system architecture can provide border monitoring over long distances at low cost, high sensitivity, and high location accuracy. This paper presents system performance examples for detection, localization, and classification of multiple threats (e.g. digging and tunneling, personnel footsteps, gunshots, and aircraft) in a variety of environments, including snow cover.
Keywords :
Rayleigh scattering; acoustic transducer arrays; fibre optic sensors; national security; police data processing; seismology; signal classification; signal detection; DAS technology; OptaSense; Rayleigh scattering; air acoustic disturbance; aircraft; densely sampled acoustic-seismic sensor array; digging; distributed acoustic sensing technology; gunshots; local fiber strain measurement; location accuracy; multithreat multienvironment border monitoring; optical signal return; personnel footstep; scalable system architecture; seismic disturbance; seismic sensing performance; single-mode optical fiber; snow cover; threat classification; threat detection; threat localization; tunneling; water acoustic disturbance; Acoustics; Aircraft; Monitoring; Optical fiber cables; Optical fibers; Sensors; Tunneling; COTDR; DAS; OptaSense; Rayleigh; aircraft; classification; coherent optical time domain reflectometry; detection; digging; distributed acoustic sensing; gunshot; interferometry; localization; snow cover; tunneling; vehicles; walking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligence and Security Informatics Conference (EISIC), 2013 European
Conference_Location :
Uppsala
Type :
conf
DOI :
10.1109/EISIC.2013.70
Filename :
6657181
Link To Document :
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