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Kinodynamic planning for visual servoing

Moslem Kazemi, Mehran Mehrandezh, Kamal Gupta

Year
2011
Citations
10

Abstract

In this paper we incorporate a randomized kinodynamic path planning approach with image-based control for a robotic arm equipped with an in-hand camera in a servoing task. The proposed approach yields C <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> -smooth camera trajectories by taking camera dynamics into account while accounting for a critical set of image and physical constraints. The proposed planner explores the camera state space (i.e., a space of camera poses and velocities) for permissible trajectories by iteratively extending a search tree in this space and simultaneously tracking these trajectories in the robot configuration space (i.e., joint space). The planned camera trajectories are then projected into the image space to obtain desired feature trajectories. In the execution stage an image-based visual servoing scheme is then adopted to track the feature trajectories. The effectiveness of the proposed approach has been experimentally demonstrated on a robotic arm with an in-hand camera executing servoing tasks in complex environments.

Keywords

Visual servoingArtificial intelligenceComputer visionComputer scienceRobotFeature (linguistics)Robotic armTrajectoryImage (mathematics)Camera auto-calibration

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