DocumentCode :
1661465
Title :
Single image-based depth estimation using dual off-axis color filtered aperture camera
Author :
Seungwon Lee ; Nahyun Kim ; Kyungwon Jung ; Hayes, M.H. ; Joonki Paik
Author_Institution :
Image Process. & Intell. Syst. Lab., Film Chung-Ang Univ., Seoul, South Korea
fYear :
2013
Firstpage :
2247
Lastpage :
2251
Abstract :
In this paper, we present a dual off-axis color filtered aperture (DCA)-based computational imaging system for depth estimation in a single-camera framework. The DCA has one primary (red) color and its complementary (cyan) color filtered apertures located off the optical axis to generate misalignment between color channels depending on the distance of a region-of-interest from the camera. Disparity of color shifting values (CSVs) between color channels in the image acquired by the DCA-based imaging system is estimated using L1-norm minimization of energy functional considering both brightness and gradient constancies and only translation of x-axis. The two data terms both red to green (R-G) and red to blue (R-B) are combined in a single data term. The proposed imaging system can be implemented by simply inserting an appropriately resized DCA into any general optical system. Experimental results show that the proposed DCA can estimate the distance of the scene from the camera in the single-camera framework.
Keywords :
cameras; gradient methods; image colour analysis; image reconstruction; minimisation; natural scenes; optical filters; 3D image acquisition; CSV disparity; DCA-based computational imaging system; L1-norm minimization; brightness; camera; color channel; color shifting value; complementary color filtered aperture; dual off-axis color filtered aperture; energy function; gradient constancy; image-based depth estimation; optical axis; optical system; region of interest; scene distance estimation; Apertures; Cameras; Channel estimation; Estimation; Image color analysis; Optical imaging; 3D image acquisition; 3D reconstruction; Depth estimation; computational camera; optical flow;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2013 IEEE International Conference on
Conference_Location :
Vancouver, BC
ISSN :
1520-6149
Type :
conf
DOI :
10.1109/ICASSP.2013.6638054
Filename :
6638054
Link To Document :
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