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MANIPULATION

Interaction skills for a coat-check robot: Identifying and handling the boundary components of clothes

Lukas Twardon, Helge Ritter

Year
2015
Citations
27

Abstract

Identifying the relevant functional degrees of freedom is a key prerequisite for the proper handling of everyday objects. Recognizing and exploiting these degrees of freedom in the context of non-rigid objects poses challenges that are significantly different from the rigid case. As a major generic subtask, we consider the identification and exploitation of boundary components during clothes manipulation, combining RGBD vision with uni- and bi-manual handling through a robot. Specifically, we present a novel graph-based approach to detecting boundary components by extracting closed contours from depth images. Based on that, we suggest a planner minimizing a heuristic energy function for an optimal grasp pose of a robot hand around the boundary of a garment. We demonstrate the effectiveness of the approach in interactive perception and regrasping experiments with a dual arm and two attached anthropomorphic hands. Furthermore, we show how to make use of these capabilities to implement a basic skill for a coat-check robot: hanging up a knit cap on a hat-stand.

Keywords

GRASPComputer visionArtificial intelligenceComputer scienceRobotClothingContext (archaeology)Boundary (topology)HeuristicDegrees of freedom (physics and chemistry)

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