Highly-reverberate underwater environments pose challenges for conventional localization techniques due to the highly non-linear nature of reflective surfaces, multi-path, and scattering fields. In this paper, we compare different machine learning methods for passive localization and tracking of single, non-stationary, underwater acoustic sources using multiple underwater acoustic vector sensors. We incorporate ordinal classification for localization in a novel approach to acoustic localization and compare the results with other standard methods. Realworld experiments demonstrate that both categorical and ordinal classification using deep LSTM networks significantly reduce localization error
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Underwater source localization is an important task, especially for real-time operation. Recently, m...
Target localization, which aims to estimate the location of an unknown target, is one of the key iss...
Ice environments pose challenges for conventional underwater acoustic localization techniques due to...
Ice environments pose challenges for conventional underwater acoustic localization techniques due to...
This paper introduces ongoing experiments and early results for the underwater localization and rang...
This paper introduces ongoing experiments and early results for the underwater localization and rang...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
A novel approach to 3D localization of narrowband acoustic sources in a shallow ocean using a horizo...
A novel approach to 3D localization of narrowband acoustic sources in a shallow ocean using a horizo...
The localization and tracking of underwater objects have many applications. In a proactive underwate...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Underwater source localization is an important task, especially for real-time operation. Recently, m...
Target localization, which aims to estimate the location of an unknown target, is one of the key iss...
Ice environments pose challenges for conventional underwater acoustic localization techniques due to...
Ice environments pose challenges for conventional underwater acoustic localization techniques due to...
This paper introduces ongoing experiments and early results for the underwater localization and rang...
This paper introduces ongoing experiments and early results for the underwater localization and rang...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
International audienceIn this paper, we show the potential of machine learning regarding the task of...
A novel approach to 3D localization of narrowband acoustic sources in a shallow ocean using a horizo...
A novel approach to 3D localization of narrowband acoustic sources in a shallow ocean using a horizo...
The localization and tracking of underwater objects have many applications. In a proactive underwate...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Conventional direction-of-arrival (DOA) estimation algorithms for shallow water environments usually...
Underwater source localization is an important task, especially for real-time operation. Recently, m...
Target localization, which aims to estimate the location of an unknown target, is one of the key iss...