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Embodiment-specific representation of robot grasping using graphical models and latent-space discretization

Dan Song, Carl Henrik Ek, Kai Huebner, Danica Kragić

发表年份
2011
引用次数
9

摘要

We study embodiment-specific robot grasping tasks, represented in a probabilistic framework. The framework consists of a Bayesian network (BN) integrated with a novel multi-variate discretization model. The BN models the probabilistic relationships among tasks, objects, grasping actions and constraints. The discretization model provides compact data representation that allows efficient learning of the conditional structures in the BN. To evaluate the framework, we use a database generated in a simulated environment including examples of a human and a robot hand interacting with objects. The results show that the different kinematic structures of the hands affect both the BN structure and the conditional distributions over the modeled variables. Both models achieve accurate task classification, and successfully encode the semantic task requirements in the continuous observation spaces. In an imitation experiment, we demonstrate that the representation framework can transfer task knowledge between different embodiments, therefore is a suitable model for grasp planning and imitation in a goal-directed manner.

关键词

Computer scienceArtificial intelligenceRepresentation (politics)Bayesian networkDiscretizationGraphical modelProbabilistic logicGRASPRobotTask (project management)

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