Title :
Visual registration for geographical labeling in wearable computing
Author :
Xu, Ke ; Cheok, Adrian David ; Chia, Kar Wee ; Prince, Simon J D
Author_Institution :
Nat. Univ. of Singapore, Singapore
Abstract :
Real-time labeling of geographical landmarks is a simple wearable computing application. Most current systems are based on calculation of optical flow between the current and previous frames to adjust the label position. Here we present two alternative algorithms based on geometrical image constraints The first is based on epipolar geometry and provides a general description of the constraints on image flow between two static scenes. The second is based on the calculation of a homography relationship between the current frame and a stored representation of the scene. A homography can exactly describe the image motion when the scene is planar, or when the camera movement is a pure rotation, and provides a good approximation when these conditions are nearly met. We assess all three styles of algorithms across a number of criteria including robustness, speed and accuracy. We also consider issues of representation and storage for geographical labeling applications.
Keywords :
augmented reality; image motion analysis; image sequences; real-time systems; wearable computers; epipolar geometry; geographical labeling; geographical landmarks; geometrical image constraints; homography relationship; image motion; optical flow; real-time labeling; visual registration; wearable computing; Application software; Augmented reality; Cameras; Geometrical optics; Image motion analysis; Labeling; Layout; Motion estimation; Robustness; Wearable computers;
Conference_Titel :
Wearable Computers, 2002. (ISWC 2002). Proceedings. Sixth International Symposium on
Print_ISBN :
0-7695-1816-8
DOI :
10.1109/ISWC.2002.1167225