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Planning grasps for robotic hands using a novel object representation based on the medial axis transform

Markus Przybylski, Tamim Asfour, Rüdiger Dillmann

Year
2011
Citations
49

Abstract

We introduce an approach for enabling sampling-based planners to compute motions with humanlike appearance. The proposed method is based on a space of blendable example motions collected by motion capture. This space is explored by a sampling-based planner that is able to produce motions around obstacles while keeping solutions similar to the original examples. The results therefore largely maintain the humanlike characteristics observed in the example motions. The method is applied to generic upper-body actions and is complemented by a locomotion planner that searches for suitable body placements for executing upper-body actions successfully. As a result, our overall multi-modal planning method is able to automatically coordinate whole-body motions for action execution among obstacles, and the produced motions remain similar to example motions given as input to the system.

Keywords

Computer scienceRepresentation (politics)Object (grammar)Computer visionMotion (physics)Artificial intelligenceModalAction (physics)Space (punctuation)Sampling (signal processing)

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