DocumentCode
565543
Title
Strategies for human-in-the-loop robotic grasping
Author
Leeper, Adam ; Hsiao, Kaijen ; Ciocarlie, Matei ; Takayama, Leila ; Gossow, David
Author_Institution
Willow Garage, Inc., Menlo Park, CA, USA
fYear
2012
fDate
5-8 March 2012
Firstpage
1
Lastpage
8
Abstract
Human-in-the loop robotic systems have the potential to handle complex tasks in unstructured environments, by combining the cognitive skills of a human operator with autonomous tools and behaviors. Along these lines, we present a system for remote human-in-the-loop grasp execution. An operator uses a computer interface to visualize a physical robot and its surroundings, and a point-and-click mouse interface to command the robot. We implemented and analyzed four different strategies for performing grasping tasks, ranging from direct, real-time operator control of the end-effector pose, to autonomous motion and grasp planning that is simply adjusted or confirmed by the operator. Our controlled experiment (N=48) results indicate that people were able to successfully grasp more objects and caused fewer unwanted collisions when using the strategies with more autonomous assistance. We used an untethered robot over wireless communications, making our strategies applicable for remote, human-in-the-loop robotic applications.
Keywords
control engineering computing; end effectors; human-robot interaction; mouse controllers (computers); telerobotics; user interfaces; autonomous assistance; autonomous tools; cognitive skills; computer interface; end-effector pose; human operator; operator control; physical robot; point-and-click mouse interface; remote human-in-the-loop grasp execution; unstructured environments; untethered robot; unwanted collisions; wireless communications; Collision avoidance; Grasping; Grippers; Planning; Robot sensing systems; USA Councils; grasping; shared autonomy; teleoperation;
fLanguage
English
Publisher
ieee
Conference_Titel
Human-Robot Interaction (HRI), 2012 7th ACM/IEEE International Conference on
Conference_Location
Boston, MA
ISSN
2167-2121
Print_ISBN
978-1-4503-1063-5
Electronic_ISBN
2167-2121
Type
conf
Filename
6249526
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