DocumentCode
3186721
Title
Learning continuous grasp stability for a humanoid robot hand based on tactile sensing
Author
Schill, J. ; Laaksonen, J. ; Przybylski, M. ; Kyrki, V. ; Asfour, T. ; Dillmann, R.
Author_Institution
Humanoids & Intell. Syst. Lab., Karlsruhe Inst. of Technol., Karlsruhe, Germany
fYear
2012
fDate
24-27 June 2012
Firstpage
1901
Lastpage
1906
Abstract
Grasp stability estimation with complex robots in environments with uncertainty is a major research challenge. Analytical measures such as force closure based grasp quality metrics are often impractical because tactile sensors are unable to measure contacts accurately enough especially in soft contact cases. Recently, an alternative approach of learning the stability based on examples has been proposed. Current approaches of stability learning analyze the tactile sensor readings only at the end of the grasp attempt, which makes them somewhat time consuming, because the grasp can be stable already earlier. In this paper, we propose an approach for grasp stability learning, which estimates the stability continuously during the grasp attempt. The approach is based on temporal filtering of a support vector machine classifier output. Experimental evaluation is performed on an anthropomorphic ARMAR-IIIb. The results demonstrate that the continuous estimation provides equal performance to the earlier approaches while reducing the time to reach a stable grasp significantly. Moreover, the results demonstrate for the first time that the learning based stability estimation can be used with a flexible, pneumatically actuated hand, in contrast to the rigid hands used in earlier works.
Keywords
humanoid robots; learning (artificial intelligence); manipulators; pattern classification; pneumatic actuators; stability; support vector machines; tactile sensors; anthropomorphic ARMAR-IIIb; complex robots; continuous grasp stability learning; flexible pneumatically actuated hand; force closure; grasp quality metrics; grasp stability estimation; humanoid robot hand; support vector machine classifier output; tactile sensing; tactile sensors; temporal filtering; uncertainty; Joints; Stability criteria; Support vector machines; Tactile sensors;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Robotics and Biomechatronics (BioRob), 2012 4th IEEE RAS & EMBS International Conference on
Conference_Location
Rome
ISSN
2155-1774
Print_ISBN
978-1-4577-1199-2
Type
conf
DOI
10.1109/BioRob.2012.6290749
Filename
6290749
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