A document scanner (10) includes an input tray (30) for holding documents (20) and an input image capture device (40) for capturing images of the documents (20) in the input tray (30) prior to transporting the document for imaging; an output tray (150) for holding documents (20) after the documents (20) exit the scanner; an output image capture device (140) for capturing images of the output tray; an image processor for determining characteristics of the output tray or characteristic of the documents (20) before imaging and after the documents (20) exit the scanner; and scanner functions are modified based on the output tray characteristics or the document characteristics.
|
1. A method of verifying accuracy of a raster scanned image of a document comprising:
providing an input tray for holding documents prior to imaging;
capturing an image of an unaltered document in the input tray with an input imaging device;
transmitting the captured input tray image to an image processor;
transporting the unaltered document through a document scanner;
capturing a raster scanned image of the unaltered document with a raster capture device;
transmitting the raster scanned image to the image processor;
verifying the accuracy of the raster scanned image by comparing the raster scanned image of the unaltered document to the captured input tray image of the unaltered document; and
modifying scanner functions if the raster scanned image of the unaltered document does not match the captured input tray image of the unaltered document.
2. The method as in
3. The method as in
4. The method as in
5. The method as in
6. The method as in
alerting a document scanner operator if the raster scanned image of the document does not match the input tray image of the unaltered document.
7. The method as in
providing an output tray for holding documents after the documents exit the scanner;
capturing an output tray image of the document in the output tray with an output imaging device;
transmitting the captured output tray image to the imaging processor; and
verifying the accuracy of the raster scanned image by comparing the raster scanned image of the document to the input tray image of the unaltered document or the output tray image of the document or both.
|
Reference is made to commonly-assigned copending U.S. patent application Ser. No. 13/714,885, filed Dec. 14, 2012, entitled METHOD OF CAPTURING AN IMAGE OF A DOCUMENT, by Schaertel et al.; U.S. patent application Ser. No. 13/714,901, filed Dec. 14, 2012, filed herewith, entitled SYSTEM FOR VERIFYING ACCURACY OF A RASTER SCANNED IMAGE OF A DOCUMENT, by Schaertel et al.; U.S. patent application Ser. No. 13/714,926, filed Dec. 14, 2012, entitled SYSTEM FOR CAPTURING AN IMAGE OF A DOCUMENT, by Schaertel et al.; U.S. patent application Ser. No. 12/858,488 (now U.S. Publication No. 2012/0044547), filed Aug. 18, 2010, entitled A DOCUMENT SCANNER, by Schaertel et al.; U.S. patent application Ser. No. 12/839,476, filed Jul. 20, 2010, entitled METHOD FOR DOCUMENT SCANNING, by Schaertel et al.; U.S. patent application Ser. No. 12/839,471, filed Jul. 20, 2010, entitled A DOCUMENT SCANNER, by Schaertel et al.; and U.S. patent application Ser. No. 12/276,641 (now U.S. Publication No. 2010/0127447), filed Nov. 24, 2008, entitled DOCUMENT TRANSPORT APPARTUS, by Hammen; the disclosures of which are incorporated herein.
This invention relates to scanners in general, and in particular to verifying the accuracy of a scanned document.
A document scanner moves a document through a transport path and creates a digital image of the document as it moves. The processor for the document scanner has preset document characteristics and the operator must select functions and features to accommodate the specific requirements for a particular type of document. Alternately, the scanner may default to less efficient settings that will process all documents since scanners are not typically programmed with specific requirements on a document-by-document basis.
The preset characteristics include document characteristics such as size, weight, texture; and specific application requirements such as resolution and imaging mode, color, simplex, or duplex. In a document scanner, the documents to be scanned may vary by size, weight, color content, physical condition, or other characteristics, which may require different scanner features to be enabled or operator actions to be employed for the most optimal and efficient mode of operation. Prior knowledge of these many different document attributes can enable the proper selection of scanner features to improve the efficiency of the scanning process or enable other features which may provide specific applications required by a particular type, style, or size of document. Prior knowledge of the documents physical condition can also prompt immediate action from the operator to protect the document or scanner or allow other features within the scanner to perform more reliably.
The exit area of the scanner is used for collecting the scanned documents as they exit the transport. A document must also exit the scanner, once it has been imaged, in an orderly fashion. By discerning document characteristics in the input area as well as the exit area, characteristics such as, but not limited to, number of documents, the exit area features which control stacking and tracking can be managed.
During the scanning process there are a number of ways in which the information extracted from a scanned document may be inaccurate. The scanned document may be deformed or wrinkled by the document transport system, there may be dust or foreign matter on the image capture optics, the document may be skewed or misaligned, or incorrect scanning features may have been selected, but not limited to, all of which may result in capture of inaccurate information during the scanning process. There exists a need to verify captured image data, especially in high speed document scanners.
There have been attempts in the document printing industry to verify information on printed images, but the requirements for printing a document are different than the requirements for accurate scanning of a document. For example, U.S. Publication No. 2008/0013848, discloses a line-by-line scan of a printed document to check for defects such as streaks or banding in the printed document. U.S. Publication No. 2003/0076518, discloses a printer which incorporates a CCD raster capture device which images the output tray. The captured output image is compared to data used to print the document.
Briefly, according to one aspect of the present invention a document scanner includes verifying accuracy of a raster scanned image of a document by providing an input tray for holding documents prior to imaging; capturing an image of a document in the input tray with an input imaging device; transmitting the captured input tray image to an image processor; transporting the document through a document scanner; capturing a scanned image of the document with a raster capture device; transmitting the raster scanned image to the image processor; and verifying the accuracy of the raster scanned image by comparing the raster scanned image of the document to the input tray image of the document.
The invention and its objects and advantages will become more apparent in the detailed description of the preferred embodiment presented below.
The present invention will be directed in particular to elements forming part of, or in cooperation more directly with the apparatus in accordance with the present invention. It is to be understood that elements not specifically shown or described may take various forms well known to those skilled in the art.
As, or after, the document 20 exits the transport 70 at the transport exit 130, the document 20 and the output tray 150 are imaged by the output imaging device 140. The images are sent to the image processor 100 to discern document 20 and output tray 150 characteristics.
One output tray 150 characteristic is whether or not there are documents 20 present in the output tray 150. If the output tray 150 is determined to be empty the processor 110 will determine how many documents 20 can be scanned before the output tray 150 becomes full. Also determining the output tray 150 level of documents will be used by the processor 110 to stop scanning if the output tray 150 becomes full. This may happen if the operator continues to place documents 20 in the input tray 30 while scanning without removing documents (20) from the output tray 150.
Another important characteristic is the stacking of the documents 20 in the output tray 150. If the documents 20 are not laying flat, one on top of another, the processor 110 will stop the scanning process and prevent additional documents 20 from stacking improperly. Improper stacking may be an indication of the controlled output stacking 120 feature not operating properly or being inadvertently turned off. Based on the output tray 150 characteristics, proper adjustment of the output tray side guides 160 or end stop 170 will be determined. The scanning may be stopped for the operator to adjust the side guides 160 or end stop 170, or an auto adjust feature can be employed to make the correction while scanning is continued.
Based on document information from an input imaging device 40 the condition of the document 20 exiting the scanner 10 will be compared to condition of documents 20 entering the scanner 10 to determine if damage to the document 20, such as bent or torn corners, is occurring within the document transport 70, as is shown in
Using the information from the input imaging device 40 the number of documents 20 entering the document scanner 10 can be compared to the number of documents 20 exiting the scanner 10. If the number of documents 20 exiting the document scanner 10 does not match the number of documents 20 entering the document scanner 10 the operator will be alerted to the lost document 20.
In a C-shape document transport 70 the document 20 order can be tracked using document 20 content captured by the output imaging device 140 in conjunction with the rear raster capture device 90. In document scanner 11, shown in
In one embodiment of the invention, an image of a document 20 in an input tray 30 is captured with an input imaging device 40 such as a raster capture device, CCD sensor, or CMOS sensor. The captured input tray image 190 is transmitted to an image processor 100 such as a microprocessor or a computer. The document is then transported through a document scanner 10 which captures a raster scanned image 180 of the document 20 and the raster scanned image 180 is transmitted to the image processor 100. The image processor 100 verifies the accuracy of the raster scanned image 180 by comparing the raster scanned image 180 of the document 20 to the input tray image 190 of the document 20. If the raster scanned image 180 of the document 20 does not match the input tray image 190 of the document 20, scanner 10 functions may be modified or other corrective actions taken. Corrective actions may include rotation of the raster capture device, changing a color capture mode, or cleaning image optics.
The input tray image 190 of the document 20 is captured as an area image 210 rather than raster by raster as is typically used to capture the raster scanned image 180 of the document 20. The input tray image 190 of the document 20 may be low resolution or high resolution.
In another embodiment of the invention, the document 20 is moved to an output tray 150 for holding documents 20 after it exits the scanner 10 and an image of the document 20 in the output tray 150 is captured with an output imaging device 140. The captured output tray 150 image is transmitted to the image processor 100 which verifies the accuracy of the raster scanned image 180 by comparing the raster scanned image 180 of the document 20 to the input tray image 190 of the document 20 and the output tray image 200 of the document 20.
In yet another embodiment of the invention, an image of a document 20 in an input tray 30 for holding documents 20 is captured as an area image 210 rather than raster by raster with an input imaging device 40. Capturing the image as an area image 210 means that an image of the entire document 20 is taken rather than imaging the document 20 raster by raster, which is the usual way of scanning a document 20. The captured input tray image 190 is transmitted to an image processor 100 and the document 20 is transported to an output tray 150. After the first document 20 has been transported out of the input tray 30, an image of a second document 20 in the input tray 30 is captured and transmitted to the image processor 100.
In a further embodiment, an image of the document 20 in the output tray 150 is captured with an output imaging device 140 and transmitted to the image processor 100. The accuracy of the input tray 30 image is verified by comparing the input tray image 190 of the document to the output tray image 200 of the document 20.
The invention has been described in detail with particular reference to certain preferred embodiments thereof, but it will be understood that variations and modifications can be effected within the scope of the invention.
Blish, Nelson A., Schaertel, David M., Phinney, Daniel P.
Patent | Priority | Assignee | Title |
Patent | Priority | Assignee | Title |
5249069, | Feb 11 1991 | Eastman Kodak Company | Method and apparatus for automatic alignment of front and rear scanning cameras |
5424804, | Mar 23 1994 | KODAK ALARIS INC | Automatic exposure control using density slope control for a planetary microfilmer |
5828461, | Nov 17 1995 | FUJIFILM Corporation | Method and apparatus for converting original image data to density data for forming an image on photosensitive material and for displaying an image on a monitor |
5828781, | Aug 11 1994 | Toyo Ink Manufacturing Co., Ltd. | Color image reproducing system with image signal correction function |
6522430, | Nov 29 1999 | Xerox Corporation | Quantification of motion quality effect on image quality |
6628433, | Jul 18 2000 | THE BOARD OF THE PENSION PROTECTION FUND | Document scanning system with dockable platen flatbed providing sheet fed and platen scanning functions |
6987892, | Apr 19 2001 | THE BOARD OF THE PENSION PROTECTION FUND | Method, system and software for correcting image defects |
7403313, | Sep 27 2001 | Intellectual Ventures I LLC | Automatic scanning parameter setting device and method |
7561191, | Feb 18 2005 | Monument Peak Ventures, LLC | Camera phone using multiple lenses and image sensors to provide an extended zoom range |
7729602, | Mar 09 2007 | Intellectual Ventures Fund 83 LLC | Camera using multiple lenses and image sensors operable in a default imaging mode |
8456718, | Aug 18 2010 | KODAK ALARIS LLC | Document scanner |
8582183, | Apr 26 2011 | KODAK ALARIS LLC | Forward facing scanner |
20010007138, | |||
20020001393, | |||
20020149799, | |||
20030053085, | |||
20030076518, | |||
20040080795, | |||
20040249594, | |||
20050240376, | |||
20050281459, | |||
20060039629, | |||
20060071946, | |||
20060215115, | |||
20070097456, | |||
20070109511, | |||
20070258633, | |||
20080013848, | |||
20090080036, | |||
20090096879, | |||
20100118355, | |||
20100182637, | |||
20100188714, | |||
20110096370, | |||
20110122456, | |||
20110134491, | |||
20110170125, | |||
20110193944, | |||
20110238423, | |||
20120019841, | |||
20120019874, | |||
20120044548, | |||
20120229872, | |||
20120281132, | |||
20120327486, | |||
20130044342, | |||
20130076857, | |||
20130093136, | |||
20130194615, | |||
20140168717, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Dec 14 2012 | Kodak Alaris Inc. | (assignment on the face of the patent) | / | |||
Dec 14 2012 | SCHAERTEL, DAVID M | Eastman Kodak Company | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 029470 | /0698 | |
Dec 14 2012 | BLISH, NELSON A | Eastman Kodak Company | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 029470 | /0698 | |
Dec 14 2012 | PHINNEY, DANIEL P | Eastman Kodak Company | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 029470 | /0698 | |
Mar 22 2013 | Eastman Kodak Company | WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT | PATENT SECURITY AGREEMENT | 030122 | /0235 | |
Mar 22 2013 | PAKON, INC | WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT | PATENT SECURITY AGREEMENT | 030122 | /0235 | |
Sep 03 2013 | Eastman Kodak Company | 111616 OPCO DELAWARE INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 031179 | /0119 | |
Sep 03 2013 | WILMINGTON TRUST, NATIONAL ASSOCIATION, AS JUNIOR DIP AGENT | PAKON, INC | RELEASE OF SECURITY INTEREST IN PATENTS | 031157 | /0451 | |
Sep 03 2013 | CITICORP NORTH AMERICA, INC , AS SENIOR DIP AGENT | PAKON, INC | RELEASE OF SECURITY INTEREST IN PATENTS | 031157 | /0451 | |
Sep 03 2013 | WILMINGTON TRUST, NATIONAL ASSOCIATION, AS JUNIOR DIP AGENT | Eastman Kodak Company | RELEASE OF SECURITY INTEREST IN PATENTS | 031157 | /0451 | |
Sep 03 2013 | CITICORP NORTH AMERICA, INC , AS SENIOR DIP AGENT | Eastman Kodak Company | RELEASE OF SECURITY INTEREST IN PATENTS | 031157 | /0451 | |
Sep 20 2013 | 111616 OPCO DELAWARE INC | KODAK ALARIS INC | CHANGE OF NAME SEE DOCUMENT FOR DETAILS | 031393 | /0902 | |
Sep 30 2020 | KODAK ALARIS INC | KPP NO 2 TRUSTEES LIMITED | SECURITY INTEREST SEE DOCUMENT FOR DETAILS | 053993 | /0454 | |
Oct 31 2021 | KPP NO 2 TRUSTEES LIMITED | THE BOARD OF THE PENSION PROTECTION FUND | ASSIGNMENT OF SECURITY INTEREST | 058175 | /0651 | |
Aug 01 2024 | KODAK ALARIS INC | FGI WORLDWIDE LLC | SECURITY AGREEMENT | 068325 | /0938 | |
Aug 01 2024 | THE BOARD OF THE PENSION PROTECTION FUND | KODAK ALARIS INC | RELEASE BY SECURED PARTY SEE DOCUMENT FOR DETAILS | 068481 | /0300 | |
Aug 02 2024 | KODAK ALARIS INC | KODAK ALARIS LLC | CHANGE OF NAME SEE DOCUMENT FOR DETAILS | 069282 | /0866 |
Date | Maintenance Fee Events |
Jul 16 2019 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Jul 13 2023 | M1552: Payment of Maintenance Fee, 8th Year, Large Entity. |
Date | Maintenance Schedule |
Feb 23 2019 | 4 years fee payment window open |
Aug 23 2019 | 6 months grace period start (w surcharge) |
Feb 23 2020 | patent expiry (for year 4) |
Feb 23 2022 | 2 years to revive unintentionally abandoned end. (for year 4) |
Feb 23 2023 | 8 years fee payment window open |
Aug 23 2023 | 6 months grace period start (w surcharge) |
Feb 23 2024 | patent expiry (for year 8) |
Feb 23 2026 | 2 years to revive unintentionally abandoned end. (for year 8) |
Feb 23 2027 | 12 years fee payment window open |
Aug 23 2027 | 6 months grace period start (w surcharge) |
Feb 23 2028 | patent expiry (for year 12) |
Feb 23 2030 | 2 years to revive unintentionally abandoned end. (for year 12) |