Title :
A Distributed Augmented Reality System Using 3D Fiducial Objects
Author :
Montgomery, Brad ; Wu, Qishi ; Gu, Yi
Author_Institution :
Dept of Comput. Sci., Univ. of Memphis, Memphis, TN
Abstract :
Augmented reality (AR) often makes use of a 2D fiducial marker to render computer graphics onto a video frame so that the computer-generated object appears aligned with the scene. We extend this idea to 3D where real-world objects are used as fiducial markers and propose a distributed AR system that utilizes geographically located resources to meet high computing demand, enable sustained remote operations, and support collaborative efforts. Within the distributed AR system, we present technical solutions to several key modules in AR that form a linear computing pipeline. We generalize and formulate the pipeline network mapping as optimization problems under different mapping constraints and develop heuristic algorithms that maximize the frame rate to achieve smooth data flow. Extensive simulation-based results show that the proposed mapping heuristics outperform the existing methods.
Keywords :
augmented reality; rendering (computer graphics); 3D fiducial objects; computer graphics rendering; distributed augmented reality system; linear computing pipeline; Augmented reality; Collaboration; Computational modeling; Computer graphics; Constraint optimization; Distributed computing; Heuristic algorithms; Layout; Pipelines; Rendering (computer graphics); 3D Fiducial; Augmented Reality; Maximal Frame Rate; Object Detection;
Conference_Titel :
Cyberworlds, 2008 International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-0-7695-3381-0