Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Cataloged from PDF version of thesis.Includes bibliographical references (pages 59-61).Many technologies rely on underwater acoustics. Most of these applications are able to denoise Gaussian noise from the surrounding, but have trouble removing impulse like noises. One source of impulse-like noise is the snapping shrimps. The acoustic signals they emit from snapping their claws hinder technologies, but can also be used as a source of ambient noise illumination due to the rough uniformity in their spatial distribution. Understanding the spatial distributions of these acoustic signals can be useful in working to mitigate or amplify their effects. O...
There is increasing interest in deploying swarms of underwater vehicles for marine surveys. One of t...
Our work deals with the detection and localization of acoustic sources in shallow underwater channel...
In this paper, a low-complexity algorithm SAGE-USL is presented for 3-dimensional (3-D) localization...
In this paper, we apply a block-based compressive sensing (BCS) architecture to address the reconstr...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
There is increasing interest in deploying swarms of underwater vehicles for marine surveys. In such ...
Snapping shrimp are crustaceans that live in sponges or reefs on the sea floor. They produce a loud ...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
This paper presents a novel Kriged Compressive Sensing (KCS) approach for the reconstruction of unde...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
International audienceThis paper presents a new technique for acoustic transducers position offset c...
International audienceThis paper presents a new technique for acoustic transducers position offset c...
There is increasing interest in deploying swarms of underwater vehicles for marine surveys. One of t...
Our work deals with the detection and localization of acoustic sources in shallow underwater channel...
In this paper, a low-complexity algorithm SAGE-USL is presented for 3-dimensional (3-D) localization...
In this paper, we apply a block-based compressive sensing (BCS) architecture to address the reconstr...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
There is increasing interest in deploying swarms of underwater vehicles for marine surveys. In such ...
Snapping shrimp are crustaceans that live in sponges or reefs on the sea floor. They produce a loud ...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
Monitoring ocean acoustic noise has been the subject of considerable recent study, motivated by the ...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
This paper presents a novel Kriged Compressive Sensing (KCS) approach for the reconstruction of unde...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
This article presents a kriged compressive sensing (KCS) approach to reconstruct acoustic fields usi...
International audienceThis paper presents a new technique for acoustic transducers position offset c...
International audienceThis paper presents a new technique for acoustic transducers position offset c...
There is increasing interest in deploying swarms of underwater vehicles for marine surveys. One of t...
Our work deals with the detection and localization of acoustic sources in shallow underwater channel...
In this paper, a low-complexity algorithm SAGE-USL is presented for 3-dimensional (3-D) localization...