Claims
- 1. A method of calibrating a color copying apparatus, comprising the steps of copying a calibrating original which includes a stepped gray zone having steps of predetermined density and color composition onto a copying material; processing the copying material to obtain a developed image of the calibrating original; measuring the densities of the calibrating original and the developed image thereof in each of the three primary colors; and adjusting the exposure using the equations
- .DELTA.(log I.multidot.t).sub.B =.DELTA..sub.B +.alpha..sub.GB .DELTA..sub.G +.alpha..sub.RB .DELTA..sub.R
- .DELTA.(log I.multidot.t).sub.G =.alpha..sub.BG .DELTA.hd B+.DELTA..sub.G +.alpha..sub.RG .DELTA..sub.R
- .DELTA.(log I.multidot.t).sub.R =.alpha..sub.BR .DELTA..sub.B +.alpha..sub.GR .DELTA..sub.G +.DELTA..sub.R
- where
- I is the light intensity during exposure,
- t is the exposure time,
- the subscripts B, G and R, respectively, denote blue, green and red,
- the .alpha. coefficients have absolute values smaller than one and depend upon the characteristics of the copying material, and the .DELTA. coefficients on the right-hand sides of the equations are defined by the expressions ##EQU5## b.sub.m and b.sub.u being the blue densities of respective steps on the calibrating original,
- g.sub.m and g.sub.v being the green densities of respective steps on the calibrating original,
- r.sub.m and r.sub.w being the red densities of respective steps on the calibrating original,
- B.sub.m and B.sub.u being the blue densities of the developed images of respective steps on the copying material,
- G.sub.m and G.sub.v being the green densities of the developed images of respective steps on the copying material,
- R.sub.m and R.sub.w being the red densities of the developed images of respective steps on the copying material,
- B.sub.z being the desired blue density of a predetermined field of the developed image of the stepped zone on the copying material,
- G.sub.z being the desired green density of a predetermined field of the developed image of the stepped zone on the copying material, and
- R.sub.z being the desired red density of a predetermined field of the developed image of the stepped zone on the copying material.
- 2. The method as defined in claim 1, wherein the calibrating original includes markings respectively aligned with the steps and operative for scanning control, and areas outside of the stepped zone having such density and color composition that the calibrating original in its entirety has a middle density.
- 3. The method as defined in claim 1; and further comprising the steps of making another copy of the calibrating original on the copying material using exposure differing by a predetermined percentage from that used during the copying step; determining the characteristic curves of the copying material, by evaluating only that region of each of the copies which corresponds to a region of the calibrating original having an approximately known density; and approximating the characteristic curves, based on parameters derived from the evaluated regions of the copies, by mathematical functions.
- 4. The method as defined in claim 3, wherein said approximating step includes respectively utilizing a normal distribution curve, and a straight line for the mathematical function in the curved and substantially straight regions of the respective characteristic curve.
- 5. The method as defined in claim 1, wherein said copying step is performed using an empirical exposure assumed to be correct for achieving the desired density values in the developed image.
- 6. The method as defined in claim 5, wherein the empirical exposure is determined photoelectrically.
- 7. The method as defined in claim 1, wherein the color copying apparatus is a photographic apparatus.
- 8. The method as defined in claim 1, wherein said adjusting step is performed in automatic response to said measuring step.
- 9. The method as defined in claim 8, wherein the calibrating original has markings aligned with the respective steps and operative for scanning control.
- 10. The method as defined in claim 1, wherein the individual color exposures do not substantially influence one another and the .alpha. coefficients are substantially zero.
- 11. The method as defined in claim 10, wherein ##EQU6##
- 12. The method as defined in claim 1, wherein B.sub.z, G.sub.z and R.sub.z are the respective blue, green and red densities of a central field of the image of the stepped zone on the copying material.
- 13. The method as defined in claim 1, wherein the subscripts m and u represent adjacent steps, the subscripts m and v represent adjacent steps and the subscripts m and w represent adjacent steps.
- 14. The method as defined in claim 1, wherein
- u=m-1 when (B.sub.z -B.sub.m)<0,
- u=m+1 when (B.sub.z -B.sub.m)>0,
- v=m-1 when (G.sub.z -G.sub.m)<0,
- v=m+1 when (G.sub.z -G.sub.m)>0,
- w=m-1 when (R.sub.z -R.sub.m)<0, and
- w=m+1 when (R.sub.z -R.sub.m)<0.
- 15. An arrangement for calibrating a color copying apparatus having an exposure control device, comprising measuring means for measuring the densities of the respective steps of a stepped gray zone on a calibrating original in each of the three primary colors and for measuring the densities of the respective developed images of the steps on copying material in each of the three primary colors; and adjusting means for adjusting the exposure control device using the equations
- .DELTA.(log I.multidot.t).sub.B =.DELTA..sub.B +.alpha..sub.GB +.DELTA..sub.G +.alpha..sub.RB .DELTA..sub.R
- .DELTA.(log I.multidot.t).sub.G =.alpha..sub.BG .DELTA..sub.B +.DELTA..sub.G +.alpha..sub.RG .DELTA..sub.R
- .DELTA.(log I.multidot.t).sub.R =.alpha..sub.BR .DELTA..sub.B +.alpha..sub.GR .DELTA..sub.G +.DELTA..sub.R
- where
- I is the light intensity during exposure,
- t is the exposure time,
- the subscripts B, G and R respectively denote blue, green and red,
- the .alpha. coefficients have absolute values smaller than one and depend upon the characteristics of the copying material, and the .DELTA. coefficients on the right-hand sides of the equations are defined by the expressions ##EQU7## b.sub.m and b.sub.u being the blue densities of respective steps on the calibrating original,
- g.sub.m and g.sub.v being the green densities of respective steps on the calibrating original,
- r.sub.m and r.sub.w being the red densities of respective steps on the calibrating original,
- B.sub.m and B.sub.u being the blue densities of the developed images of respective steps on the copying material,
- G.sub.m and G.sub.v being the green densities of the developed images of respective steps on the copying material,
- R.sub.m and R.sub.w being the red densities of the developed images of respective steps on the copying material,
- B.sub.z being the desired blue density of a predetermined field of the developed image of the stepped zone on the copying material,
- G.sub.z being the desired green density of a predetermined field of the developed image of the stepped zone on the copying material, and
- R.sub.z being the desired red density of a predetermined field of the developed image of the stepped zone on the copying material.
- 16. The arrangement as defined in claim 15, wherein said adjusting means includes a computer connected to said measuring means at its input means and to the exposure control device at its output means and operative for calculating the exposure correction and for adjusting the exposure control device accordingly.
- 17. The arrangement as defined in claim 16, wherein said measuring means includes a first densitometer for measuring the densities of the stepped zone on the calibrating original and a second densitometer for measuring the densities of the image of the stepped zone on the copying material said first and second densitometers being connected to first and second inputs of said computer, respectively.
- 18. The arrangement as defined in claim 17; and further comprising a signal storage interposed between said first densitometer and said first input of said computer.
- 19. The arrangement as defined in claim 17, wherein said first densitometer is constituted by a scanning arrangement of the exposure control device.
- 20. The arrangement as defined in claim 15, wherein the color copying apparatus is a photographic apparatus.
- 21. The arrangement as defined in claim 15, wherein the individual color exposures do not substantially influence one another and the .alpha. coefficients are substantially zero.
- 22. The arrangement as defined in claim 21, wherein ##EQU8##
- 23. The arrangement as defined in claim 15, wherein B.sub.z, G.sub.z and R.sub.z are the respective blue, green and red densities of a central field of the image of the stepped zone on the copying material.
- 24. The arrangement as defined in claim 15, wherein the subscripts m and u represent adjacent steps, the subscripts m and v represent adjacent steps and the subscripts m and w represent adjacent steps.
- 25. The arrangement as defined in claim 15, wherein
- u=m-1 when (B.sub.z -B.sub.m)<0,
- u=m+1 when (B.sub.z -B.sub.m)>0,
- v=m-1 when (G.sub.z -G.sub.m)<0,
- v=m+1 when (G.sub.z -G.sub.m)>0,
- w=m-1 when (R.sub.z -R.sub.m)<0, and
- w=m+1 when (R.sub.z -R.sub.m)>0.
- 26. The arrangement as defined in claim 15, wherein said adjusting means is arranged to adjust the exposure control device in automatic response to a predetermined difference between an actual and a desired density value.
- 27. The arrangement as defined in claim 15, wherein said exposure control device comprises photoelectric means.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2911566 |
Mar 1979 |
DEX |
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Parent Case Info
This application is a continuation, of application Ser. No. 132,094, filed Mar. 20, 1980, now abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
Country |
Parent |
132094 |
Mar 1980 |
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