Title :
Fast rehalftoning and interpolated halftoning algorithms with flat low-frequency response
Author :
Kite, Thomas D. ; Evans, Brian L. ; Bovik, Alan C.
Author_Institution :
Audio Precision, Beaverton, OR, USA
Abstract :
We present raster image processing algorithms for rehalftoning error diffused halftones and producing interpolated error diffused halftones. Rehalftoning converts a halftone created by one method into one created by another method. In interpolated halftoning, interpolation increases the image size before halftoning, e.g. for printing. Both rehalftoning and interpolated halftoning introduce blur and noise in the output image. To compensate for the blur, we use modified error diffusion, which has a variable gain parameter to control the sharpness. We derive optimal formulas for the sharpness control parameter to make the overall frequency response flat. The high-frequency noise is masked by error diffusion. The proposed algorithms yield halftones of high fidelity at a low computational cost
Keywords :
frequency response; image processing; interpolation; blur; computational cost; fast rehalftoning; flat low-frequency response; image size; interpolated error diffused halftones; interpolated halftoning algorithms; interpolation; modified error diffusion; noise; optimal formula; printing; raster image processing algorithms; sharpness control parameter; Computational efficiency; Computer errors; Finite impulse response filter; Frequency; Gain; Gray-scale; Image converters; Image processing; Interpolation; Printing;
Conference_Titel :
Image Processing, 1999. ICIP 99. Proceedings. 1999 International Conference on
Conference_Location :
Kobe
Print_ISBN :
0-7803-5467-2
DOI :
10.1109/ICIP.1999.817186