Title :
Real-time camera pose estimation based on planar object tracking for augmented reality environment
Author :
Ahr-Hyun Lee ; Lee, Seok-Han ; Jae-Young Lee ; Choi, Jong-Soo
Author_Institution :
Chung-Ang Univ., Seoul, South Korea
Abstract :
Real-time camera tracking is steadily gaining in importance due to the drive from various applications, such as AR(augmented reality), mobile computing, and human-machine interface. In this paper, we describe a real-time camera tracking framework designed to track a monocular camera in a desktop workspace. Basic idea of the proposed scheme is that the camera pose estimation is achieved on the basis of a planar object tracking framework. As the camera pose estimation and scene registration is achieved via a non-iterative process, the proposed method is computationally efficient and very fast, and therefore, it can be directly embedded to AR systems running on mobile device platforms. In addition, our system attempts to detect new features assumed to be present on the reference planar surface, so that the system can be operated even when reference features go out of visible range. The accuracy and robustness of the proposed system are verified on the experimental results of several real-time input video streams.
Keywords :
augmented reality; cameras; feature extraction; image registration; mobile computing; object tracking; pose estimation; video signal processing; augmented reality environment; desktop workspace; feature detection; human-machine interface; mobile computing; mobile device platform; monocular camera; noniterative process; planar object tracking; realtime camera pose estimation; realtime input video stream; reference feature; reference planar surface; scene registration; Cameras; Estimation; Feature extraction; Geometry; Mobile handsets; Real time systems; Three dimensional displays;
Conference_Titel :
Consumer Electronics (ICCE), 2012 IEEE International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4577-0230-3
DOI :
10.1109/ICCE.2012.6162000