Abstract: A theoretical model is developed to describe how autonomous underwater vehicle (AUV)-based current measurements are influenced by a surface wave field. The model quantifies a quasi-Lagrangian, wave-induced velocity bias as a function of the local wave conditions, and the vehicle’s depth and velocity using a first-order expansion of the linear wave solution. The theoretical bias is verified via field experiments carried out off the coast of Oahu, Hawaii. Spatially averaged along- and cross-track AUV velocity measurements are calculated over one effective wavelength and compared with time-averaged, fixed ADCP measurements in a range of wave and current conditions. The wave-induced bias is calculated using wave directional spectra d...
In March 2003 several autonomous underwater vehicle (AUV) missions were carried out under sea ice in...
The objective of this thesis is to contribute to Autonomous Underwater Vehicle (AUV) navigation by e...
Thesis (S.M. in Oceanographic Engineering)--Joint Program in Applied Ocean Science and Engineering (...
AbstractA theoretical model is developed to describe how autonomous underwater vehicle (AUV)-based c...
Directional wave energy and wave spectra play an important role in the physical processes associated...
The present work examines the hydrodynamics of the inner-shelf region, focusing on tidally-driven al...
Directional wave energy and wave spectra play an important role in the physical processes associated...
The ability to make oceanographic scientific measurements without the need for fixed hardware is of in...
OCEANS 2017, 19-22 June 2017, AberdeenMost Autonomous Underwater Vehicles (AUVs) mount an Acoustic D...
This work introduces a new method to calculate the water velocity components of a turbulent water co...
This work introduces a new method to calculate the water velocity components of a turbulent water co...
For accurate control and navigation of an autonomous underwater vehicle (AUV) it is criticalto know ...
The WVAM method is a nonacoustic method to calculate the velocity components of a turbulent water co...
Autonomous underwater vehicles (AUVs) use secondary velocity over ground measurements to aid the Ine...
Autonomous Underwater Vehicles (AUVs) arebeing used as specialised tools for various ocean missions,...
In March 2003 several autonomous underwater vehicle (AUV) missions were carried out under sea ice in...
The objective of this thesis is to contribute to Autonomous Underwater Vehicle (AUV) navigation by e...
Thesis (S.M. in Oceanographic Engineering)--Joint Program in Applied Ocean Science and Engineering (...
AbstractA theoretical model is developed to describe how autonomous underwater vehicle (AUV)-based c...
Directional wave energy and wave spectra play an important role in the physical processes associated...
The present work examines the hydrodynamics of the inner-shelf region, focusing on tidally-driven al...
Directional wave energy and wave spectra play an important role in the physical processes associated...
The ability to make oceanographic scientific measurements without the need for fixed hardware is of in...
OCEANS 2017, 19-22 June 2017, AberdeenMost Autonomous Underwater Vehicles (AUVs) mount an Acoustic D...
This work introduces a new method to calculate the water velocity components of a turbulent water co...
This work introduces a new method to calculate the water velocity components of a turbulent water co...
For accurate control and navigation of an autonomous underwater vehicle (AUV) it is criticalto know ...
The WVAM method is a nonacoustic method to calculate the velocity components of a turbulent water co...
Autonomous underwater vehicles (AUVs) use secondary velocity over ground measurements to aid the Ine...
Autonomous Underwater Vehicles (AUVs) arebeing used as specialised tools for various ocean missions,...
In March 2003 several autonomous underwater vehicle (AUV) missions were carried out under sea ice in...
The objective of this thesis is to contribute to Autonomous Underwater Vehicle (AUV) navigation by e...
Thesis (S.M. in Oceanographic Engineering)--Joint Program in Applied Ocean Science and Engineering (...