Claims
- 1. A method of generating a binary mixed raster content selector signal for image compression of a full color source image defined by a plurality of pixels comprising the steps of:
(a) creating a multi-bit selector signal that encodes the direction and strength of edges; (b) filtering the multi-bit selector signal; and (c) binarizing the filtered multi-bit selector to produce a binary mixed raster content selector signal.
- 2. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if a pixel is pre-segmented as an ‘Image’ pixel.
- 3. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if a pixel is white then multi-bit select signal equals strong background.
- 4. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if a 3×3 neighborhood contains white then multi-bit select signal equals strong foreground.
- 5. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if a pixel is black then multi-bit select signal equals strong foreground.
- 6. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if the 3×3 neighborhood contains black then multi-bit select signal equals strong background.
- 7. The method according to claim 1 wherein creating a multi-bit selector signal further comprises the step of determining if the 3×3 neighborhood contains exactly 2 classes of pixels then multi-bit select signal equals if the center class is darker then strong foreground else strong background.
- 8. A method of generating a binary mixed raster content selector signal for image compression of a full color source image defined by a plurality of pixels comprising the steps of:
(a) creating a multi-bit selector signal that encodes the direction and strength of edges; (b) filtering the multi-bit selector signal; (c) binarizing the filtered multi-bit selector to produce a binary mixed raster content selector signal; (d) determining if a pixel is white then multi-bit select signal equals strong background or foreground; else (e) determining if a 3×3 neighborhood contains white then multi-bit select signal equals strong foreground or background; else (f) determining if the pixel is black then multi-bit select signal equals strong foreground or background; else (g) determining if the 3×3 neighborhood contains black then multi-bit select signal equals strong background or foreground; else (h) determining if the 3×3 neighborhood contains exactly 2 classes of pixels and the center pixel belongs to a darker class then the multi-bit select signal is strong foreground or background; else (i) determining if the 3×3 neighborhood contains exactly 2 classes of pixels and the center pixel belongs to a lighter class then the multi-bit select signal is strong background or foreground; else (j) multi-bit selector equals a weak signal.
- 9. A system for image compression of a full color source image defined by a plurality of pixels comprising:
(a) means for creating a multi-bit selector signal that encodes the direction and strength of edges; (b) means for filtering the multi-bit selector signal; and (c) means for binarizing the filtered multi-bit selector to produce a binary mixed raster content selector signal.
- 10. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if a pixel is pre-segmented as an ‘Image’ pixel.
- 11. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if a pixel is white then multi-bit select signal equals strong background.
- 12. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if a 3×3 neighborhood contains white then multi-bit select signal equals strong foreground.
- 13. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if a pixel is black then multi-bit select signal equals strong foreground.
- 14. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if the 3×3 neighborhood contains black then multi-bit select signal equals strong background.
- 15. The system according to claim 9 further comprising means for creating a multi-bit selector signal further comprises the step of determining if the 3×3 neighborhood contains exactly 2 classes of pixels then multi-bit select signal equals if the center class is darker then strong foreground else strong background.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is based on a Provisional Patent Application No. 60/393,244 filed Jul. 1, 2002.
[0002] The present application is related to the following co-pending applications: Ser. No. 10/187,499 (Attorney Docket D/Al270) entitled “Digital De-Screening of Documents”, Ser. No. 10/188,026 (Attorney Docket D/A1270Q) entitled “Control System for Digital De-Screening of Documents”, Ser. No. 10/188,277 (Attorney Docket D/A1271Q) entitled “Dynamic Threshold System for Multiple Raster Content (MRC) Representation of Documents”, Ser. No. 10/188,157 (Attorney Docket D/A1271Q1) entitled “Separation System for Multiple Raster Content (MRC) Representation of Documents”, and Serial No. 60/393,244 (Attorney Docket D/A2303P) entitled “Segmentation Technique for Multiple Raster Content (MRC) TIFF and PDF all filed on Jul. 1, 2002 and all commonly assigned to the present assignee, the contents of which are herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60393244 |
Jul 2002 |
US |