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Human-Robot Cooperative Object Manipulation with Contact Changes

Michael Gienger, Dirk Ruiken, Tamas Bates, Mohamed Regaieg, Michael Meiβner, Jens Kober, Philipp Seiwald, Arne-Christoph Hildebrandt

Year
2018
Citations
21

Abstract

This paper presents a system for cooperatively manipulating large objects between a human and a robot. This physical interaction system is designed to handle, transport, or manipulate large objects of different shapes in cooperation with a human. Unique points are the bi-manual physical cooperation, the sequential characteristic of the cooperation including contact changes, and a novel architecture combining force interaction cues, interactive search-based planning, and online trajectory and motion generation. The resulting system implements a mixed initiative collaboration strategy, deferring to the human when his intentions are unclear, and driving the task once understood. This results in an easy and intuitive human-robot interaction. It is evaluated in simulations and on a bi-manual mobile robot with 32 degrees of freedom.

Keywords

Computer scienceHuman–computer interactionRobotTask (project management)Human–robot interactionTrajectoryObject (grammar)Motion (physics)Mobile robotArtificial intelligence

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