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Experimental study on adaptive control of underwater robots

J. Yuh, Jing Nie, C.S.G. Lee

Year
2003
Citations
57

Abstract

The control of underwater robots presents a number of unique and formidable challenges. Underwater robot dynamics are highly nonlinear, coupled, and time-varying, and subject to hydrodynamic uncertainties and external disturbances such as current. Unlike land mobile robots, underwater robots cannot use GPS. Most popular underwater positioning sensors are sonar-based, such as long-base line. However, autonomous processing of sonar measurements is plagued by noise, drop-outs, missed detection, false reading, poor resolution, etc. The paper presents a new adaptive control of underwater robots with sonar-based position measurements. Experimental results show robustness of the control system in the presence of unmodelled dynamics and various noise.

Keywords

UnderwaterSonarRobustness (evolution)RobotMobile robotComputer scienceNoise (video)EngineeringControl engineeringArtificial intelligence

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