Claims
- 1. A method for increasing the resolution of an image, comprising steps of:
- (a) directing a means for measuring density information of a j th pixel of said image, wherein j is an integer and wherein part of said j th pixel overlaps a previously measured (j-1)th pixel and a part of said j th pixel does not overlap said previously measured (j-1)th pixel:
- (b) measuring a primary density information X.sub.j representing density information of said j th pixel of said image;
- (c) calculating a j th secondary density information .DELTA.X.sub.j which represents density information of said part of said j th pixel which does not overlap said (j-1)th pixel, based on at least said primary density information X.sub.j measured in step (b) and on a previously calculated secondary density information of said (j-1)th pixel;
- (d) storing at least one of said j th primary density information X.sub.j and said j th secondary density information .DELTA.X.sub.j ;
- (e) redirecting said means for measuring by a predetermined pitch in a predetermined direction, wherein said predetermined pitch is shorter than a width of said j th pixel in said predetermined direction; and
- (f) repeating steps (b) through (e) for subsequent pixels of said image.
- 2. The method according to claim 1, wherein the j th secondary density information .DELTA.X.sub.j is given by:
- .DELTA.X.sub.j =X.sub.j -(.alpha..sub.j-1 .multidot.X.sub.j-1 -.alpha..sub.j-n .multidot..DELTA.X.sub.j-n)
- or ##EQU5## .alpha..sub.k, .alpha..sub.j-1, .alpha..sub.-k designating a predetermined correction coefficient, n being the ratio of the width in the predetermined direction of the part of the j th pixel which does not overlap the (j-1)th pixel towards the width of the j th pixel in the predetermined direction.
- 3. Method according to claim 2, wherein .alpha..sub.k .apprxeq..alpha..sub.j-1 .apprxeq..alpha..sub.j-k .apprxeq.1.
- 4. The method according to claim 1, further comprising steps of:
- coding said j th secondary density information .DELTA.X.sub.j ;
- transmitting said j th secondary density information .DELTA.X.sub.j via a communication line;
- displaying said j th secondary density information .DELTA.X.sub.j on a screen;
- receiving said transmitted j th secondary density information .DELTA.X.sub.j ; and
- decoding said j th secondary density information .DELTA.X.sub.j.
- 5. The method according to claim 1, further comprising steps of:
- coding said j th secondary density information .DELTA.X.sub.j ;
- transmitting said j th secondary density information .DELTA.X.sub.j via a communication line;
- printing said j th secondary density information .DELTA.X.sub.j on a recording medium;
- receiving said transmitted j th secondary density information .DELTA.X.sub.j ; and
- decoding said j th secondary density information .DELTA.X.sub.j.
- 6. The method according to claim 1, further comprising steps of:
- converting an optical signal including density information of a white plate to an electrical signal representing initial primary density information X.sub.0 ; and
- storing said initial primary density information X.sub.0 as said previously calculated secondary density information of said (j-1)th pixel.
- 7. The method according to claim 2, wherein n is at least 2.
- 8. A device for increasing the resolution of an image comprising:
- (a) means for inputting primary density information X.sub.j representing density information of a j th pixel of said image, wherein j is an integer and said j th pixel includes a part which overlaps a previously input (j-1)th pixel and a part which does not overlap said previously input (j-1)th pixel;
- (b) means for calculating a secondary density information .DELTA.X.sub.j which represents density information of said part of said j th pixel which does not overlap said (j-1)th pixel, based on at least the j th primary density information X.sub.j and a previously calculated secondary density information of said (j-1)th pixel;
- (c) means for storing at least one of said j th primary density information X.sub.j and said j th secondary density information .DELTA.X.sub.j ;
- (d) means for receiving an initial primary density information X.sub.0 as said previously calculated secondary density information of said (j-1)th pixel; and
- (e) means for positioning said means for inputing and for repositioning said means for inputing by a predetermined pitch in a predetermined direction wherein said predetermined pitch is shorter than a width of said j th pixel in said predetermined direction.
- 9. The device according to claim 8, further comprising means for calculating the j th secondary density information .DELTA.X.sub.j which represents pixel density information of said part of said jth pixel which does not overlap said (j-1)th pixel, based on at least said j th primary density information X.sub.j and on said previously calculated secondary density information of said (j-1)th pixel wherein
- kj.DELTA.X.sub.j =X.sub.j -(.alpha..sub.j-1 .multidot.X.sub.j-1 -.alpha..sub.j-n .multidot..DELTA.X.sub.j-n)
- or ##EQU6## wherein .alpha..sub.k, .alpha..sub.j-1, and .alpha..sub.j-k designate a predetermined correction coefficient, n is a ratio of the width in said predetermined direction of said part of said jth pixel which does not overlap said (j-1)th pixel towards said width in said predetermined direction of said a jth pixel.
- 10. The device according to claim 9, wherein .alpha..sub.k .apprxeq..alpha..sub.j-1 .apprxeq..alpha..sub.j-k .apprxeq.1.
- 11. The device according to claim 9, further comprising means for selecting a value for n.
- 12. The device according to claim 8, further comprising a modulation function transfer correction processing means and a zone judgement processing means.
- 13. The device according to claim 12, wherein said modulation function transfer correction processing and the zone judgement processing are carried out using said j th secondary density information (.DELTA.X.sub.j ; Pi,j) stored in said means for storing.
- 14. The device according to claim 12, further comprising a line density conversion processing means and a binary coding processing means.
- 15. The device according to claim 14, wherein said modulation function transfer correction processing means and the binary coding processing means carry out operational processing by changing the value of their own operating parameters based on results obtained by the zone judgement processing means.
- 16. The device according to claim 12, wherein said zone judgement processing means includes a judgement parameter input means for carrying out zone separation designation by the user.
- 17. The device according to claim 12, wherein said modulation function transfer correction processing means carries out operation processing by referring to said secondary density information to be operated upon, and secondary density information of pixels surrounding said secondary density information to be operated upon.
- 18. The device according to claim 12, wherein when the output of the modulation function transfer correction processing exceeds a predetermined maximum value or is less than a predetermined minimum value, the parameters for the modulation function transfer correction are changed so that the density value is between both said predetermined maximum and minimum values.
- 19. The device according to claim 12, wherein the modulation function transfer correction processing means simultaneously operates on a plurality of secondary density information.
- 20. The device according to claim 12, wherein said zone judgement processing means is provided with a number of secondary density information in the main-scanning direction which is huger than the number of the secondary density information provided in the sub-scanning direction.
- 21. The device according to claim 20, wherein the zone judgement processing means is provided with a storing means for storing judgement results of the previous line.
- 22. The device according to claim 21, wherein the zone judgement processing means is provided with means for taking a boolean OR of the judgement result at the previous line and the judgement result at the present line, and outputting the result as a secondary judgement result.
- 23. The device according to claim 14, wherein the line density conversion processing means is provided with means for determining the density of interpolation secondary density information based on the distance between the interpolation secondary density information and reference secondary information.
- 24. The device according to claim 14, wherein the binary coding processing means is provided with an error diffusing means for controlling the diffusion of errors.
- 25. The device according to claim 14, wherein the diffusion of errors is stopped in the zone judged to ge a binary coding zone by said zone judgement result.
- 26. The device according to claim 14, wherein said binary coding processing means is provided with a simple binary coding means and an error diffusion binary coding means.
- 27. Device according to claim 8, further comprising a memory coupled with said means for storing the j th secondary density information .DELTA.X.sub.j.
- 28. The device of claim 8 further comprising:
- an encoding means for encoding the secondary density information into a predetermined code.
- 29. The device of claim 28, further comprising a transmitting means, connected to said encoding means, for transmitting the coded secondary density information to a communication line.
- 30. The device of claim 29, further comprising a memory means, connected to said encoding means, for storing the coded secondary density information.
- 31. The device of claim 28, further comprising a decoding means, for decoding the secondary density information which is coded into the predetermined code.
- 32. The device of claim 31, further comprising a signal receiving means, connected to the decoding means, for receiving the secondary density information which is coded into the predetermined code, from the communication line.
- 33. In a digital processor of a video signal processor which receives a digital signal related to the density of each of a plurality of pixels comprising an image, an image resolution enhancer comprising:
- a) a subtractor, said subtractor having a first input which is provided with said digital signal, a second input, and an output, wherein said output is adapted to be provided with a signal representing a difference between the signal provided at said first input and a signal provided at said second input;
- b) an M by N matrix register, said matrix register having N lines, each of said N lines having a series of M registers defining an input and an output; and
- c) N-1 line memories, each having an input and an output,
- wherein said input of a first of said N lines is coupled with said output of said subtractor, and said output of said first of said N lines is coupled with said input of a first of said N-1 line memories,
- wherein said output of said first of said N-1 line memories is coupled with said second input of said subtractor and said input of a next of said N lines,
- wherein said output of each of subsequent ones of said N lines are coupled with said input of a corresponding one of said N-1 line memories, and said output of said corresponding one of said N-1 line memories is coupled with a next of said N lines, and
- wherein said output of a last of said N lines is coupled with externally provided devices.
- 34. In a digital processor of a video signal processor which receives a digital signal related to the density of each of a plurality of pixels comprising an image, an image resolution enhancer comprising:
- a) a subtractor, said subtractor having a first input which is provided with said digital signal, a second input, and an output, wherein said output is adapted to be provided with a signal representing a difference between the signal provided at said first input and a signal provided at said second input;
- b) an adder having N-1 inputs and an output, said output of said adder is adapted to be provided with a signal representing the sum of each of said N-1 inputs and is coupled with said second input of said subtractor;
- c) an M by N matrix register, said matrix register having N lines, each of said N lines having a series of M registers defining an input and an output; and
- d) N-1 line memories, each having an input and an output, each of said outputs of said N-1 line memories being coupled with a corresponding one of said N-1 inputs of said adder,
- wherein said output of said first of said N lines is coupled with said input of a first of said N-1 line memories,
- wherein said output of each of said N lines is coupled with said input of a corresponding one of said N-1 line memories, and said output of said corresponding one of said N-1 line memories is coupled with said input of a next of said N lines, and
- wherein said output of a last of said N lines is coupled with externally provided devices.
- 35. The image resolution enhancer of claim 34 further comprising N-1 user controllable switches, each of said N-1 user switches being provided at a corresponding one of said N-1 inputs of said adder.
- 36. A facsimile system comprising:
- (a) a light source adapted to direct light to a document;
- (b) an image sensor adapted to receive an optical signal including image information reflected by said document and to convert said optical signal into an electrical signal;
- (c) means for determining primary density information X.sub.j representing density information of a j th pixel of said image based on said electrical signal produced by said image sensor, wherein j is an integer and said j th pixel includes a part which overlaps a previously input (j-1)th pixel and a part which does not overlap said previously input (j-1)th pixel;
- (d) means for calculating a secondary density information .DELTA.X.sub.j which represents density information of said part of said j th pixel which does not overlap said (j-1)th pixel, based on at least the j th primary density information X.sub.j and a previously calculated secondary density information of said (j-1)th pixel;
- (e) means for storing at least one of said j th primary density information X.sub.j and said j th secondary density information .DELTA.X.sub.j ;
- (f) means for receiving an initial primary density information X.sub.0 as said previously calculated secondary density information of said (j-1)th pixel; and
- (g) means for positioning said image sensor and for repositioning said image sensor with respect to said document by a predetermined pitch in a predetermined direction wherein said predetermined pitch is shorter than a width of said j th pixel in said predetermined direction.
- 37. The facsimile system of claim 36 further comprising:
- a white plate,
- wherein said image sensor is adapted to receive an optical signal reflected by said white plate from said light source and representing density information of said white plate, and
- wherein said image sensor is adapted to convert said received optical signal of said density information of said white plate to an electrical signal representing one of said previously calculated secondary density information, and said initial primary density information.
- 38. The facsimile system of claim 37 further comprising means for displaying said j th secondary density information.
- 39. The facsimile system of claim 36 further comprising a storage device for storing said secondary density information.
- 40. The facsimile system of claim 39, wherein said storage device is an optical disk.
- 41. The facsimile system of claim 39, wherein said storage device is a magnetic disk.
- 42. The facsimile system of claim 39 further comprising means for data communication including a local area network and a local area network interface, said means for data communication adapted to facilitate the transfer of said secondary density information between said storage device and said means for calculating.
- 43. The facsimile system of claim 37, further comprising means for producing speech sounds in response to said secondary density information.
- 44. The facsimile system of claim 37, further comprising means for recognizing human speech and converting that speech into an information signal.
- 45. The facsimile system of claim 37, further comprising a speech synthesis means for producing speech sounds in response to the secondary density information.
Priority Claims (1)
Number |
Date |
Country |
Kind |
63-233530 |
Sep 1988 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/714,350, filed 12 Jun. 1991 now abandoned, which is a continuation of Ser. No. 07/410,336 filed 20 Sep. 1989 now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2172169 |
Sep 1986 |
GBX |
Continuations (2)
|
Number |
Date |
Country |
Parent |
714350 |
Jun 1991 |
|
Parent |
410336 |
Sep 1989 |
|