Title :
Adaptive Acoustical-Environmental Assessment for the Focused Acoustic Field-05 At-sea Exercise
Author :
Wang, Ding ; Lermusiaux, Pierre F. J. ; Haley, P.J. ; Leslie, W.G. ; Schmidt, Heidemarie
Author_Institution :
Dept. of Mech. Eng., Massachusetts Inst. of Technol., Cambridge, MA
Abstract :
Variabilities in the coastal ocean environment span a wide range of spatial and temporal scales. From an acoustic viewpoint, the limited oceanographic measurements and today´s ocean modeling capabilities cannot always provide oceanic-acoustic predictions in sufficient detail and with enough accuracy. Adaptive Rapid Environmental Assessment (AREA) is a new adaptive sampling concept being developed in connection with the emergence of the Autonomous Ocean Sampling Network (AOSN) technology. By adaptively and optimally deploying in situ measurement resources and assimilating these data in coupled nested ocean and acoustic models, AREA can dramatically improve the ocean estimation that matters for acoustic predictions and so be essential for such predictions. These concepts are outlined and preliminary methods are developed and illustrated based on the Focused Acoustic Forecasting-05 (FAF05) exercise. During FAF05, AREA simulations were run in real-time and engineering tests carried out, within the context of an at-sea experiment with autonomous underwater vehicles (AUV) in the northern Tyrrhenian Sea, on the eastern side of the Corsican Channel
Keywords :
data assimilation; oceanographic regions; oceanographic techniques; remotely operated vehicles; underwater sound; underwater vehicles; AOSN technology; AREA; AUV; Adaptive Rapid Environmental Assessment; Autonomous Ocean Sampling Network; Autonomous Underwater Vehicles; Corsican Channel; FAF05; Focused Acoustic Forecasting-05; adaptive acoustical-environmental assessment; coastal ocean environment; data assimilation; in situ measurement resources; northern Tyrrhenian Sea; oceanic-acoustic predictions; oceanographic measurements; Acoustic measurements; Acoustical engineering; Area measurement; Context modeling; Marine technology; Oceans; Predictive models; Sampling methods; Sea measurements; Underwater acoustics;
Conference_Titel :
OCEANS 2006
Conference_Location :
Boston, MA
Print_ISBN :
1-4244-0114-3
Electronic_ISBN :
1-4244-0115-1
DOI :
10.1109/OCEANS.2006.306904