DocumentCode
284866
Title
One-dimensional least-squares model-based halftoning
Author
Neuhoff, David L. ; Pappas, Thrasyvoulos N. ; Seshadri, Nambi
Author_Institution
Dept. of Electr. & Comput. Sci., Michigan Univ., Ann Arbor, MI, USA
Volume
3
fYear
1992
fDate
23-26 Mar 1992
Firstpage
189
Abstract
A least-squares model-based approach to digital halftoning is proposed. It exploits both a printer model and a model for visual perception. It obtains an optimal halftoned reproduction by minimizing the squared error between the response of the cascade of the printer and visual models to the binary image and the response of the visual model to the original gray-scale image. Least-squares model-based halftoning uses explicit eye models and relies on printer models that predict distortions and exploit them to increase, rather than decrease, both spatial and gray-scale resolution. The authors examine the one-dimensional case, in which each row or column of the image is halftoned independently. One-dimensional least-squares halftoning is implemented, in closed form, with the Viterbi algorithm. Experiments show that it produces better spatial and gray-scale resolution than conventional one-dimensional techniques and eliminates the problems associated with the modified (to account for printer distortions) error diffusion algorithm
Keywords
image processing; least squares approximations; visual perception; Viterbi algorithm; binary image; digital halftoning; eye models; gray-scale image; gray-scale resolution; least-squares model-based approach; one-dimensional case; printer model; spatial resolution; visual model; visual perception; Computer science; Frequency estimation; Gray-scale; Laser modes; Laser tuning; Predictive models; Printers; Printing; Spatial resolution; Visual perception;
fLanguage
English
Publisher
ieee
Conference_Titel
Acoustics, Speech, and Signal Processing, 1992. ICASSP-92., 1992 IEEE International Conference on
Conference_Location
San Francisco, CA
ISSN
1520-6149
Print_ISBN
0-7803-0532-9
Type
conf
DOI
10.1109/ICASSP.1992.226219
Filename
226219
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