DocumentCode
2042742
Title
Efficient image processing in Fourier holography for moving images
Author
Bernau, Marc
Author_Institution
Commun. Technol. Inst., Tech. Univ. Dortmund, Dortmund, Germany
fYear
2009
fDate
16-18 Sept. 2009
Firstpage
394
Lastpage
399
Abstract
For still images, diffraction-based beam-forming of laser light is a well-known task in optics called Fourier holography. Using a phase-only diffractive optical element (DOE) which displays a computer-generated hologram (CGH) very efficient beam forming is realized. The drawbacks of this technique are massive computation costs for phase-only holograms. In this paper, we briefly describe this diffraction-based technology. Then, we depict an algorithm which is well-suited for CGH calculation. This algorithm for still images is adopted to calculate phase holograms for moving images in real-time. Then, simulations reveal remarkable performance characteristics of the algorithm when used for correlated images. We investigate the dependency of the per pixel difference of consecutive images on the reconstruction quality of the algorithm. We show that reconstruction quality can be improved significantly for moving images when highly correlated images are used. This gain can be used to lower computation costs.
Keywords
Fourier transforms; array signal processing; computer-generated holography; image reconstruction; Fourier holography; computer-generated hologram; diffraction-based beam-forming; image processing; image reconstruction; moving images; phase-only diffractive optical element; Computational efficiency; Computer displays; Holographic optical components; Holography; Image processing; Image reconstruction; Laser beams; Optical computing; Optical diffraction; US Department of Energy;
fLanguage
English
Publisher
ieee
Conference_Titel
Image and Signal Processing and Analysis, 2009. ISPA 2009. Proceedings of 6th International Symposium on
Conference_Location
Salzburg
ISSN
1845-5921
Print_ISBN
978-953-184-135-1
Type
conf
DOI
10.1109/ISPA.2009.5297703
Filename
5297703
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