Title :
Interactive Markerless Articulated Hand Motion Tracking Using RGB and Depth Data
Author :
Sridhar, S. ; Oulasvirta, Antti ; Theobalt, Christian
Abstract :
Tracking the articulated 3D motion of the hand has important applications, for example, in human-computer interaction and teleoperation. We present a novel method that can capture a broad range of articulated hand motions at interactive rates. Our hybrid approach combines, in a voting scheme, a discriminative, part-based pose retrieval method with a generative pose estimation method based on local optimization. Color information from a multi-view RGB camera setup along with a person-specific hand model are used by the generative method to find the pose that best explains the observed images. In parallel, our discriminative pose estimation method uses fingertips detected on depth data to estimate a complete or partial pose of the hand by adopting a part-based pose retrieval strategy. This part-based strategy helps reduce the search space drastically in comparison to a global pose retrieval strategy. Quantitative results show that our method achieves state-of-the-art accuracy on challenging sequences and a near-real time performance of 10 fps on a desktop computer.
Keywords :
cameras; human computer interaction; image colour analysis; image motion analysis; image retrieval; pose estimation; articulated 3D motion; articulated hand motions; color information; depth data; desktop computer; discriminative pose estimation method; fingertips detection; generative pose estimation method; global pose retrieval strategy; human-computer interaction; interactive markerless articulated hand motion tracking; interactive rates; local optimization; multiview RGB camera; near-real time performance; part-based pose retrieval method; part-based pose retrieval strategy; person-specific hand model; pose estimation; search space; teleoperation; Cameras; Databases; Estimation; Joints; Three-dimensional displays; Tracking; 3D pose estimation; RGB; articulation; depth; hand tracking; markerless tracking; sum of gaussians; time-of-flight;
Conference_Titel :
Computer Vision (ICCV), 2013 IEEE International Conference on
Conference_Location :
Sydney, VIC
DOI :
10.1109/ICCV.2013.305