DocumentCode
2633860
Title
Autonomous Surface Vehicle Docking Manoeuvre with Visual Information
Author
Martins, Alfredo ; Almeida, J.M. ; Ferreira, H. ; Silva, H. ; Dias, N. ; Dias, A. ; Almeida, C. ; Silva, E.P.
Author_Institution
Autonomous Syst. Lab., Instituto Superior de Engenharia do Porto
fYear
2007
fDate
10-14 April 2007
Firstpage
4994
Lastpage
4999
Abstract
This work presents a hybrid coordinated manoeuvre for docking an autonomous surface vehicle with an autonomous underwater vehicle. The control manoeuvre uses visual information to estimate the AUV relative position and attitude in relation to the ASV and steers the ASV in order to dock with the AUV. The AUV is assumed to be at surface with only a small fraction of its volume visible. The system implemented in the autonomous surface vehicle ROAZ, developed by LSA-ISEP to perform missions in river environment, test autonomous AUV docking capabilities and multiple AUV/ASV coordinated missions is presented. Information from a low cost embedded robotics vision system (LSAVision), along with inertial navigation sensors is fused in an extended Kalman filter and used to determine AUV relative position and orientation to the surface vehicle The real time vision processing system is described and results are presented in operational scenario.
Keywords
Kalman filters; attitude control; mobile robots; motion control; position control; remotely operated vehicles; robot vision; underwater vehicles; AUV attitude estimation; AUV relative position estimation; LSA-ISEP; LSAVision; ROAZ; autonomous surface vehicle docking manoeuvre; autonomous underwater vehicle; extended Kalman filter; inertial navigation sensors; robotics vision system; Attitude control; Costs; Machine vision; Marine vehicles; Mobile robots; Performance evaluation; Remotely operated vehicles; Rivers; System testing; Underwater vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation, 2007 IEEE International Conference on
Conference_Location
Roma
ISSN
1050-4729
Print_ISBN
1-4244-0601-3
Electronic_ISBN
1050-4729
Type
conf
DOI
10.1109/ROBOT.2007.364249
Filename
4209867
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