DocumentCode
2963070
Title
EYEWATCHME—3D Hand and object tracking for inside out activity analysis
Author
Li Sun ; Klank, Ulrich ; Beetz, Michael
Author_Institution
Sch. of Electron. & Inf. Eng., Xi´an Jiaotong Univ., Xi´an, China
fYear
2009
fDate
20-25 June 2009
Firstpage
9
Lastpage
16
Abstract
This paper investigates the “inside-out” recognition of everyday manipulation tasks using a gaze-directed camera, which is a camera that actively directs at the visual attention focus of the person wearing the camera. We present EYEWATCHME, an integrated vision and state estimation system that at the same time tracks the positions and the poses of the acting hands, the pose that the manipulated object, and the pose of the observing camera. Taken together, EYEWATCHME provides comprehensive data for learning predictive models of vision-guided manipulation that include the objects people are attending, the interaction of attention and reaching/grasping, and the segmentation of reaching and grasping using visual attention as evidence. Key technical contributions of this paper include an ego view hand tracking system that estimates 27 DOF hand poses. The hand tracking system is capable of detecting hands and estimating their poses despite substantial self-occlusion caused by the hand and occlusions caused by the manipulated object. EYEWATCHME can also cope with blurred images that are caused by rapid eye movements. The second key contribution is the of the integrated activity recognition system that simultaneously tracks the attention of the person, the hand poses, and the poses of the manipulated objects in terms of a global scene coordinates. We demonstrate the operation of EYEWATCHME in the context of kitchen tasks including filling a cup with water.
Keywords
computer graphics; human computer interaction; image restoration; image segmentation; image sensors; object recognition; tracking; 3D hand tracking; 3D object tracking; EYEWATCHME; blurred images; gaze-directed camera; grasping segmentation; inside out activity analysis; integrated activity recognition system; reaching segmentation; state estimation system; substantial self-occlusion; vision-guided manipulation; Focusing; Grasping; Informatics; Information analysis; Intelligent systems; Smart cameras; State estimation; Sun; Tracking; Watches;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition Workshops, 2009. CVPR Workshops 2009. IEEE Computer Society Conference on
Conference_Location
Miami, FL
ISSN
2160-7508
Print_ISBN
978-1-4244-3994-2
Type
conf
DOI
10.1109/CVPRW.2009.5204358
Filename
5204358
Link To Document