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Enabling real-time full-body imitation: a natural way of transferring human movement to humanoids

Marcia Riley, Aleš Ude, Kimberley A. Wade, Christopher G. Atkeson

Year
2004
Citations
78

Abstract

We seek intuitive, efficient ways to create and direct human-like behaviors for humanoid robots. Here we present a method to enable humanoid robots to acquire movements by imitation. The robot uses 3D vision to perceive the movements of a human teacher, and then estimates the teacher's body postures using a fast full-body inverse kinematics method that incorporates a kinematic model of the teacher. This solution is then mapped to the robot and reproduced in real-time. The robustness of the method is tested on a 30-degree-of-freedom Sarcos humanoid robot located at ATR using 3D vision data from external cameras and from head-mounted cameras.

Keywords

Humanoid robotInverse kinematicsComputer visionKinematicsComputer scienceRobustness (evolution)RobotArtificial intelligenceImitationMovement (music)

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