Title :
Structured Light Field Design for Correspondence Free Rotation Estimation
Author :
Schillebeeckx, Ian ; Pless, Robert
Author_Institution :
Washington Univ. in St. Louis, St. Louis, MO, USA
Abstract :
Many vision and augmented reality applications require knowing the rotation of the camera relative to an object or scene. In this paper we propose to create a structured light field designed explicitly to simplify the estimation of camera rotation. The light field is created using a lenticular sheet with a color coded backplane pattern, creating a light field where the observed color depends on the direction of the light. We show that a picture taken within such a light field gives linear constraints on the K-1R matrix that defines the camera calibration and rotation. In this work we derive an optimization that uses these constraints to rapidly estimate rotation, demonstrate a physical prototype and characterize its sensitivity to errors in the camera focal length and camera color sensitivity.
Keywords :
augmented reality; cameras; computer vision; matrix algebra; optimisation; K-1R matrix; augmented reality application; camera calibration; camera color sensitivity; camera focal length; camera rotation; color coded backplane pattern; correspondence free rotation estimation; optimization; structured light field design; Arrays; Calibration; Cameras; Estimation; Image color analysis; Lenses; Noise;
Conference_Titel :
Computational Photography (ICCP), 2015 IEEE International Conference on
Conference_Location :
Houston,TX
DOI :
10.1109/ICCPHOT.2015.7168376