|
08. Bioacoustics and Soundscape |
Cetacean Audiogram Modelling
|
Darlene Ketten, Andrew Tubelli, Aleks Zosuls |
|
08. Bioacoustics and Soundscape |
Are soundscape metrics good indicators of ecosystem dynamics related to an unusual dinoflagellate bloom in the Gulf of Maine?
|
Jennifer L. Miksis-Olds, Sujay Balebail |
|
08. Bioacoustics and Soundscape |
Density estimates of fin whales across the Wake Island and Diego Garcia CTBTO sites
|
Kerri D. Seger, John K. Boyle, David K. Mellinger, Kevin D. Heaney, Jennifer L. Miksis-Olds, Danielle Harris |
|
08. Bioacoustics and Soundscape |
An Algorithm for Reproducing Small Yellow Croaker (Larimichthys polyactis) Sounds Based on Wavelet Synthesis
|
Beomsik Kim, Jongwook Choi, Sunhyo Kim, Hansoo Kim, Sungho Cho, Donhyug Kang, Jee Woong Choi |
|
08. Bioacoustics and Soundscape |
Monitoring the Mobility of Sea Turtles in Video Footage
|
Marko Barišić |
|
08. Bioacoustics and Soundscape |
Characterization of local fish biophonies facing Monte Conero coast by passive acoustic analysis
|
Greta Di Martino, Ilaria Biagiotti, Ilaria Costantini, Iole Leonori |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
A Machine Learning Approach for Model Selection in Underwater Acoustic Propagation
|
Finn Henman, Stewart Haslinger, Joshua Wakefield |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
RAINDROP: A Framework for Real-Time Holistic Underwater Acoustic Maps
|
Tiago Gomes, Guilherme Vaz |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Measurements of sea-floor backscattering strength of very low frequency acoustic waves in western Mediterranean Sea; a comparison to GABIM [1]
|
Iannis Bennaceur, Nathan Ivkovic, Xavier Cristol, Adrien Rondeau, Benoit Theckes |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Time-frequency structure of normal modes in range-dependent waveguides: numerical modeling and field experiment.
|
Danila Sidorov, Devi Bodjona, Dmitrii Kovzel, Vladimir Bezotvetnykh, Andrey Lunkov |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Sound scattering by nested cylindrically symmetric and linearly invariant anomalies
|
Sven Ivansson |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Correlated random matrix ensembles for underwater sound propagation
|
Tarun Chandrayadula |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
deep SSP: Enhanced Split Step Pade methods using deep learning
|
Daniel Walsken |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Absorbing Boundary Conditions for simulation of acoustic wave propagation using Physics-Informed Neural Networks
|
Márcio Marques, Arthur Bizzi, Leonardo Da Costa Lima Xavier de Mendonça, Leonardo Machado Moreira, Christian Júnior Oliveira, Deborah Sampaio Antunes de Oliveira, Lucas Schwengber, Daniel Yukimura, Lucas Dos Santos Fernandez, Tiago Novello, Pavel Petrov, João Pereira, Lucas Nissenbaum |
|
09. Modeling techniques for underwater acoustic scattering and propagation (including 3D effects) |
Modeling vertical and short-range seismo-acoustic propagation using the wave number integration technique
|
Nathan Ivkovic, Xavier Cristol, Iannis Bennaceur, Benoît Oudompheng, Dominique Fattaccioli |
|
10. New frontiers in fisheries acoustics: applications, analysis, decision and management tools |
In situ measurements of Lateral target strength (TS) of Atlantic bluefin tuna (Thunnus thynnus) from purse seiners
|
Vicente Puig-Pons, Sergio Morell-Monzó, Hector Peña, Isabel Pérez-Arjona, Victor Espinosa |
|
10. New frontiers in fisheries acoustics: applications, analysis, decision and management tools |
Advances in biomass estimation of Nile tilapia aquaculture with acoustic methods
|
Luis Lorenzo Carrillo La Rosa, Vicente Puig-Pons, Sergio Morell-Monzó, Isabel Pérez-Arjona, Víctor Espinosa |
|
10. New frontiers in fisheries acoustics: applications, analysis, decision and management tools |
Characterisation of aggregated Baltic herring – technique for assessment of possible vessel avoidance reaction
|
Aleksander Żytko, Natalia Gorska, Dezhang Chu, Beata Schmidt |
|
10. New frontiers in fisheries acoustics: applications, analysis, decision and management tools |
Using open FEM/BEM software for modeling fish target strength
|
Marek Moszyński, Isabel Pérez Arjona, Víctor Espinosa Roselló, Anderson Ladino Velasquez |
|
10. New frontiers in fisheries acoustics: applications, analysis, decision and management tools |
Improving Fish School Detection Using Phase Information in Continuous-Wave Underwater Acoustic Signals: A Study Based on Cylindrical Sonar Data
|
Yohann Gourret, Karl Thomas Hjelmervik, Tommi Brander, Hector Pena, Henrik Berg, Bjarte Berntsen |