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Adaptive homography-based visual servo tyacking

J. Chen, D.M. Dawson, Warren E. Dixon, Aman Behal

Year
2004
Citations
13

Abstract

In this paper, a homography-based adaptive visual servo controller is described to enable a robot end-effector to track a desired Euclidean space trajectory as determined by a sequence of images for the fixed camera configuration. To achieve the objective, a Lyapunov-based adaptive control strategy is employed to actively compensate for unknown depth measurements and the lack of an object model. The error systems are constructed as a hybrid of pixel information and reconstructed Euclidean variables obtained by comparing the images and decomposing a homographic relationship.

Keywords

HomographyComputer visionArtificial intelligenceComputer scienceServo controlServoTrajectoryRobotControl theory (sociology)Controller (irrigation)

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