DocumentCode
2458373
Title
Penrose Pixels Super-Resolution in the Detector Layout Domain
Author
Ben-Ezra, Moshe ; Lin, Zhouchen ; Wilburn, Bennett
Author_Institution
Microsoft Res. Asia, Beijing
fYear
2007
fDate
14-21 Oct. 2007
Firstpage
1
Lastpage
8
Abstract
We present a novel approach to reconstruction based super- resolution that explicitly models the detector´s pixel layout. Pixels in our model can vary in shape and size, and there may be gaps between adjacent pixels. Furthermore, their layout can be periodic as well as aperiodic, such as penrose tiling or a biological retina. We also present a new variant of the well known error back-projection super-resolution algorithm that makes use of the exact detector model in its back projection operator for better accuracy. Our method can be applied equally well to either periodic or aperiodic pixel tiling. Through analysis and extensive testing using synthetic and real images, we show that our approach outperforms existing reconstruction based algorithms for regular pixel arrays. We obtain significantly better results using aperiodic pixel layouts. As an interesting example, we apply our method to a retina-like pixel structure modeled by a centroidal Voronoi tessellation. We demonstrate that, in principle, this structure is better for super-resolution than the regular pixel array used in today´s sensors.
Keywords
computational geometry; eye; image reconstruction; image resolution; aperiodic pixel tiling; biological retina; centroidal Voronoi tessellation; detector layout domain; error backprojection super-resolution algorithm; image reconstruction; penrose pixels; penrose tiling; pixel arrays; pixel layout; retina-like pixel structure; Algorithm design and analysis; Biological system modeling; Detectors; Image analysis; Image reconstruction; Pixel; Retina; Sensor arrays; Shape; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision, 2007. ICCV 2007. IEEE 11th International Conference on
Conference_Location
Rio de Janeiro
ISSN
1550-5499
Print_ISBN
978-1-4244-1630-1
Electronic_ISBN
1550-5499
Type
conf
DOI
10.1109/ICCV.2007.4408888
Filename
4408888
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