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Experimental validation of constraint mitigation algorithm in underwater robot depth control

Juan Luis Rosendo, Benoı̂t Clément, Fabricio Garelli

Year
2018
Citations
4

Abstract

This work explores both modeling and control of the experimental Ciscrea autonomous underwater vehicle. A 6-degree-of-freedom model is presented and validated for turn and emerge/sink maneuvers. Then, a constraint compensating algorithm is proposed based on quasi-sliding mode conditioning ideas and added to a pre-existing inaccessible proportional-derivative controller in order to improve the overall closed-loop response. By considering actuator constraints, the employed technique allows path following at greater speed than the original controller for a given error tolerance. Experimental results on the so-called Ciscrea underwater robot are presented.

Keywords

Control theory (sociology)UnderwaterConstraint (computer-aided design)ActuatorController (irrigation)Computer scienceRobotControl engineeringControl (management)Engineering

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