DocumentCode
1747377
Title
Closed loop time invariant control of 3D underactuated underwater vehicles
Author
Aicardi, M. ; Casalino, G. ; Indiveri, G.
Author_Institution
Dept. of Commun. Comput. & Syst. Sci., Genoa Univ., Italy
Volume
1
fYear
2001
fDate
2001
Firstpage
903
Abstract
A novel strategy to design time invariant motion controllers for underactuated mobile systems is applied to the position and attitude control of an underactuated 3D vehicle. The idea consists in defining a velocity vector field such that an ideal, fully actuated system would exponentially achieve the control objective by simply following such field. Then a steering law for the given underactuated system is designed such that it is exponentially stabilized parallel to the above mentioned velocity vector field. For the particular problem here addressed, due to the use of polar like coordinates, this method yields a discontinuous control law. Both the design process and the resulting solution have a most clear physical interpretation. Important practical requirements as approaching the target on a curvature path, avoiding cusps in the whole path and moving in only one given forward direction are easily satisfied within this framework.
Keywords
asymptotic stability; attitude control; closed loop systems; control system synthesis; position control; underwater vehicles; 3D underactuated underwater vehicles; attitude control; closed loop time invariant control; cusp avoidance; discontinuous control law; exponential stabilization; null curvature path; polar like coordinates; position control; steering law; time invariant motion controller design; velocity vector field; Automatic control; Control systems; Feedback; Kinematics; Motion control; Process design; Time varying systems; Underwater vehicles; Vectors; Velocity control;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation, 2001. Proceedings 2001 ICRA. IEEE International Conference on
ISSN
1050-4729
Print_ISBN
0-7803-6576-3
Type
conf
DOI
10.1109/ROBOT.2001.932665
Filename
932665
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