EP0659559A2 - Méthode pour contrôler l'apport d'encre dans une machine d'impression - Google Patents

Méthode pour contrôler l'apport d'encre dans une machine d'impression Download PDF

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Publication number
EP0659559A2
EP0659559A2 EP94119152A EP94119152A EP0659559A2 EP 0659559 A2 EP0659559 A2 EP 0659559A2 EP 94119152 A EP94119152 A EP 94119152A EP 94119152 A EP94119152 A EP 94119152A EP 0659559 A2 EP0659559 A2 EP 0659559A2
Authority
EP
European Patent Office
Prior art keywords
color density
printing
color
image
density spectra
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP94119152A
Other languages
German (de)
English (en)
Other versions
EP0659559B1 (fr
EP0659559A3 (fr
Inventor
Thomas Fuchs
Johannes Slotta
Dieter Wagner
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Manroland AG
Original Assignee
MAN Roland Druckmaschinen AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by MAN Roland Druckmaschinen AG filed Critical MAN Roland Druckmaschinen AG
Publication of EP0659559A2 publication Critical patent/EP0659559A2/fr
Publication of EP0659559A3 publication Critical patent/EP0659559A3/fr
Application granted granted Critical
Publication of EP0659559B1 publication Critical patent/EP0659559B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F33/00Indicating, counting, warning, control or safety devices
    • B41F33/0036Devices for scanning or checking the printed matter for quality control
    • B41F33/0045Devices for scanning or checking the printed matter for quality control for automatically regulating the ink supply

Definitions

  • the invention relates to a method for controlling the color guidance in a printing press according to the preamble of claim 1.
  • the visual color impression of offset printing products is created in a known manner through the interplay of subtractive and additive color mixing.
  • the individual halftone dots of the different printing inks are printed in different sizes both side by side and overlapping one another to a greater or lesser extent.
  • the printing inks used are glazed, i.e. the effect corresponds to a filter lying on the white substrate.
  • the color direction of the printing of the halftone dots is determined both by the layer thickness of the applied printing ink and by the size of the halftone dots (geometric area coverage).
  • the color guide elements in the individual printing units By adjusting the color guide elements in the individual printing units, the color location of a print image point can thus be changed.
  • the three chromatic colors cyan, magenta, yellow and a fourth printing color black are printed for color printing.
  • EP 0 143 744 A1 discloses a method for assessing the print quality and for regulating the color guidance.
  • the reflectances in four spectral ranges are measured on image elements in the subject using one or more measuring heads.
  • the spectral ranges are selected for the three chromatic colors in such a way that the usual color density values result.
  • the spectral reflectance in the infrared range is determined for the printing ink black.
  • the Neugebauer equations the corresponding area coverings are determined (unmasked) from these remissions or color density values. This is done on the same image points on the machine printed copies as well as on a target template. From a target-actual comparison of the surface coverings, setting commands for the ink guide of the printing press are then derived.
  • a method for color regulation / control in a printing press which is characterized in that the density spectra of sample prints of the individual printing inks involved in the overprinting with predetermined area coverage and of the paper white are recorded and stored in such a way that the density spectra a measuring point of the original and a measuring point of the printed copy are recorded, that these measured density spectra of the original and the printed copy are each represented as a linear combination of the factor-weighted density spectra of the individual printing inks and the paper white, with the aim of determining the density spectra of the printing of the measuring point from the original and to represent the printed copy in the best possible way using this linear combination.
  • the ink supply is interpreted depending on the difference between the individual areas of coverage Factors of the respective linear combination (template / printed copy) changed.
  • a disadvantage of this previously known method is that the factors in the approach of the linear combination for representing the entire density spectrum (compression) from the density spectra of the individual colors are used as degrees of area coverage. Such an approach to the factors becomes problematic at high areas of coverage of a color in the image area and fails completely when printing one or more colors in full tone. The reason for this is, in an easily recognizable manner, that if, for example, a color of the template is printed as a solid area, the corresponding color in the printed copy can also only be printed as a full tone and not beyond that. It is therefore not possible to regulate colors in the full tone range.
  • the reflectance values are determined in a plurality of spectral regions at corresponding image locations of the original and printed copy and these are converted in a known manner by logarithming into color density values.
  • the color density spectra are therefore determined at the image locations of the original and the printed copy.
  • the color density spectrum of an image area of the original represents the so-called target color density spectrum and the spectrum of an image area in the printed copy represents the actual color density spectrum.
  • the difference color density spectrum is now determined for each image point.
  • the difference in color density spectrum of each image point determined in this way is then represented in the form of a linear combination by those color density spectra of the printing inks which are involved in the printing together of the image point.
  • the proportionality factors of this linear combination i.e. the factors by which the corresponding color density spectra of the individual colors are to be multiplied, then give a direct and reliable measure of how much the color guide of the respective printing ink is to be changed.
  • the color density spectra of the individual colors on the print copy are determined on the basis of measurement fields which are also printed on the print copy or on the basis of previously produced test prints.
  • a print control strip is also printed in a manner known per se, which contains a measuring field of the full tone for each printed color in each color metering zone.
  • the print control strip extends in particular parallel to the sheet edge of the start of printing.
  • certain color locations exclude the participation of one or more printing inks in a certain set of printing inks and a certain type of printing material. It is also possible to assume the portion of the printing area of one or more printing inks below a certain percentage of the printing area in certain areas in the colorimetric color space. In principle, a visual (measuring magnifier) or video-technical analysis of the intended image points is also possible.
  • the template for which the image areas of the printed copies are to be reproduced with regard to their color or spectral appearance can be an OK sheet, a proof or a proof.
  • the reason for this is that ultimately the spectral differences, i.e. the difference color density spectrum, between the original and the printed copy are minimized, and this is done by determining the corresponding proportionality factors in the representation as a linear combination in such a way that those when the printed copies are printed used printing inks or their color density spectra obtained from full tones are amplified or weakened in such a way that the difference in the color density spectrum is minimal.
  • a preferred development of the method according to the invention provides that the color density spectra of the printing inks involved in the printing together of an image area are weighted according to their proportion of the printing area. For example, it can be provided that, for example, if cyan is only represented with 5 to 10% area coverage, the color density spectrum of the color cyan (as it is used when printing the printed copies) is completely disregarded in the linear combination representation of the difference color density spectrum. Within such a small percentage printing area is therefore zero weighted for the corresponding color density spectrum.
  • certain weighting factors can then be assigned to the degrees of area coverage of the printing inks involved in the printing together of an image point of the original in the lower, middle and upper tonal range. The corresponding assignment of the weighting factors is determined empirically using pressure tests. To determine the area coverage, the electronic pre-press, the film, the printing plate or a visual or video-technical analysis of the corresponding image areas can also be used here.
  • the infrared color density is determined in a region of the infrared.
  • the area coverage of the printing ink black can then be deduced from the measured infrared color density via an empirical relationship. In particular, this makes it possible to determine whether the printing ink black is involved in the printing together of this image point.
  • the method according to the invention is particularly advantageous when, in particular, the image locations of the originals are measured not only in the spectral range of visible light but also in a range of infrared and the infrared color density is determined from the measured value in infrared. Then, as explained above, the difference color density spectrum is determined at each image point. By knowing the infrared color density, this difference color density spectrum can now be reduced according to an empirically determinable relationship by the influence of the printing ink black. You get one Difference color density spectrum of the image area, which is the result of printing together only the chromatic colors. The representation of the reduced color density spectrum (without black component) reduced in this way is then likewise carried out in the form of a linear combination by the color density spectra of the printing inks involved in the production of the printed copies.
  • a certain number of image locations for example one or more in each ink metering zone, is defined.
  • the image areas are particularly important parts of the subject. The selection of the image points to be taken into account advantageously takes place on the printed sheet of the template.
  • the determination and measurement of the image locations both on the original and on the printed copies takes place on a so-called XY coordinate measuring table, which has a spectrophotometer which can be moved in the entire plane of the printed sheet.
  • a spectrophotometer can then be automatically moved to the intended positions of the selected image locations via corresponding positioning drives.
  • the positions of the selected image points can be saved and then automatically approached by the program sequence. After each start one The image point is then determined and the spectral reflectance is converted in a downstream computer into the color density spectrum. The position of the selected image locations is stored in a single measurement run.
  • the intended image locations were selected and their positions saved with the measuring device described above.
  • the process path at a single image location is described both in the template and in the sheet of the printed copy.
  • the reflectance values R-Soll i; Bunt
  • a total of 35 remission values R-Soll are thus determined, which are selected, for example, spectrally spaced 10 nm apart (350-700 nm).
  • the respective target or actual color density spectrum of the image locations of the original or printed copy is now determined by logarithmizing the individual reflectance values R-target (i; color) and R-actual (i; color).
  • the target or actual color density spectra are generated at 35 points of the visible spectrum.
  • D (i; C), D (i; M), D (i; Y) and D (i; K) mean the respective color density spectra of the values obtained on full-tone measuring fields of the sheet of the printed copy.
  • the index C stands for the ink cyan
  • the index M for the ink magenta
  • the index Y for the ink yellow
  • the index K for the ink black.
  • other colors house or special colors
  • the corresponding measuring fields of the full tones are also spectrally measured in exactly the color metering zone in which the measured image location lies, and these remissions obtained in this way are converted into the corresponding color density spectra of the individual colors (D (i; C), D (i; M) , D (i; Y), D (i; K).
  • weighting factors ⁇ , ⁇ , ⁇ , ⁇ used in the linear approach to represent the difference color density spectrum delta-D (i; Bunt) are chosen as weighting factors such that the corresponding values lie between 0 and 1 and also one have larger amount, the higher the area coverage of the printing ink involved in the printing together of the image area.
  • a positive and large value of a means that the ink supply for the printing ink cyan must be increased significantly in the corresponding printing unit.
  • a small and negative value for a clearly means that the color metering in the corresponding color metering zone for the printing ink cyan has to be reduced somewhat.
  • the factors b, c, d with regard to the interpretation in the derivation of setting commands for the color metering for the printing inks magenta, yellow, black.
  • the linear approach for the representation of the difference color density spectrum Delta-D (i; Bunt) was represented in such a way that the printing ink black with its color density spectrum in the visible range D (i; K) was taken into account.
  • the infrared color density D (IR) is determined for the printing ink black in the region of the infrared and by means of an empirically determined relationship from the difference color density spectrum Delta-D (i; Bunt) in printing experiments the influence of the printing ink black reduced difference color density spectrum delta-D (i; colored black) is calculated.
  • the proportionality factors a, b, c are then again determined in a known manner by linear regression using the method of least squares.
  • the factors a, b, c in turn represent the amount by which the respective color guide for the printing ink cyan, magenta, yellow has to be changed in order to achieve a predetermined spectral course in the image area.

Landscapes

  • Engineering & Computer Science (AREA)
  • Quality & Reliability (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)
  • Spectrometry And Color Measurement (AREA)
  • Ink Jet (AREA)
EP94119152A 1993-12-22 1994-12-05 Méthode pour contrÔler l'apport d'encre dans une machine d'impression Expired - Lifetime EP0659559B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4343905A DE4343905C2 (de) 1993-12-22 1993-12-22 Verfahren zur Steuerung der Farbführung bei einer Druckmaschine
DE4343905 1993-12-22

Publications (3)

Publication Number Publication Date
EP0659559A2 true EP0659559A2 (fr) 1995-06-28
EP0659559A3 EP0659559A3 (fr) 1996-12-18
EP0659559B1 EP0659559B1 (fr) 1999-02-10

Family

ID=6505821

Family Applications (1)

Application Number Title Priority Date Filing Date
EP94119152A Expired - Lifetime EP0659559B1 (fr) 1993-12-22 1994-12-05 Méthode pour contrÔler l'apport d'encre dans une machine d'impression

Country Status (5)

Country Link
US (1) US5551342A (fr)
EP (1) EP0659559B1 (fr)
JP (1) JP2872059B2 (fr)
AT (1) ATE176628T1 (fr)
DE (2) DE4343905C2 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0914945A3 (fr) * 1997-11-06 1999-11-03 Heidelberger Druckmaschinen Aktiengesellschaft Procédé pour régler l'encrage dans une machine d'impression
EP0920994A3 (fr) * 1997-11-06 1999-11-10 Heidelberger Druckmaschinen Aktiengesellschaft Procédé pour la détermination de valeurs de couleur
US6679169B2 (en) 2001-10-25 2004-01-20 Heidelberger Druckmaschinen Ag Ink control model for controlling the ink feed in a machine which processes printing substrates

Families Citing this family (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19617016A1 (de) * 1996-04-27 1997-11-27 Thomas Fuchs Verfahren zur Steuerung der Farbgebung einer Druckmaschine
DE19632969C2 (de) * 1996-08-16 1999-04-29 Roland Man Druckmasch Verfahren zur Ermittlung von Vorgabewerten für die Herstellung von mehrfarbigen Druckexemplaren auf einer Druckmaschine
DE19703129B4 (de) * 1997-01-29 2014-08-21 Heidelberger Druckmaschinen Ag Verfahren zur Bewertung der Qualität eines im Mehrfarbendruck auf einem Bedruckstoff erzeugten Druckbildes
DE59708489D1 (de) * 1997-02-19 2002-11-21 Baldwin Germany Gmbh Vorrichtung und Verfahren zur Durchführung von qualitätsmanagement
US6024018A (en) * 1997-04-03 2000-02-15 Intex Israel Technologies Corp., Ltd On press color control system
DE19749064A1 (de) * 1997-11-06 1999-05-12 Heidelberger Druckmasch Ag Verfahren zur Ermittlung von Farbwertgradienten
US5967050A (en) * 1998-10-02 1999-10-19 Quad/Tech, Inc. Markless color control in a printing press
ATE494144T1 (de) 1999-02-26 2011-01-15 Koenig & Bauer Ag Verfahren zur steuerung der farbgebung einer druckmaschine
RU2278788C2 (ru) * 2000-12-06 2006-06-27 Делавер Кэпител Формэйшн, Инк. Способ спектрального контроля цвета
PL200158B1 (pl) * 2000-12-06 2008-12-31 Avt Advanced Vision Technology Sposób sterowania kolorem na arkuszu drukarskim
US6564714B2 (en) 2000-12-06 2003-05-20 Delaware Capital Formation, Inc. Spectral color control method
DE10142322C2 (de) * 2001-08-30 2003-08-21 Oce Printing Systems Gmbh Verfahren zur Anpassung der von einem zweiten Drucksystem gedruckten Farben an die von einem ersten Drucksystem gedruckten Farben
JP2005246839A (ja) * 2004-03-05 2005-09-15 Mitsubishi Heavy Ind Ltd 印刷機における色調制御方法及び装置
US7450754B2 (en) 2004-03-23 2008-11-11 Microsoft Corporation Radiometric calibration from a single image
DE102005060893C5 (de) * 2005-12-20 2019-02-28 Manroland Goss Web Systems Gmbh Verfahren zur Ermittlung eines drucktechnischen Messwertes
US9373063B2 (en) * 2010-02-26 2016-06-21 Onyx Graphics, Inc. Establishing ink usage of process channels
US8928781B2 (en) 2011-11-30 2015-01-06 Microsoft Corporation Response function determination by rank minimization

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE143744C (fr) *
US4649502A (en) * 1983-11-04 1987-03-10 Gretag Aktiengesellschaft Process and apparatus for evaluating printing quality and for regulating the ink feed controls in an offset printing machine
EP0228347B2 (fr) * 1985-12-10 1996-11-13 Heidelberger Druckmaschinen Aktiengesellschaft Procédé de commande de l'alimentation en encre pour une machine à imprimer, dispositif d'impression équipé de manière correspondante et dispositif de mesure pour un tel appareil d'impression
JPH02110566A (ja) * 1988-10-20 1990-04-23 Fuji Photo Film Co Ltd 印刷管理用測光測色器
DE3903981C2 (de) * 1989-02-10 1998-04-09 Heidelberger Druckmasch Ag Verfahren zur Regelung der Farbfüllung bei einer Druckmaschine
US5224421A (en) * 1992-04-28 1993-07-06 Heidelberg Harris, Inc. Method for color adjustment and control in a printing press

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0914945A3 (fr) * 1997-11-06 1999-11-03 Heidelberger Druckmaschinen Aktiengesellschaft Procédé pour régler l'encrage dans une machine d'impression
EP0920994A3 (fr) * 1997-11-06 1999-11-10 Heidelberger Druckmaschinen Aktiengesellschaft Procédé pour la détermination de valeurs de couleur
US6469804B1 (en) * 1997-11-06 2002-10-22 Heidelberger Druckmaschinen Ag Method of obtaining colorimetric values
US6679169B2 (en) 2001-10-25 2004-01-20 Heidelberger Druckmaschinen Ag Ink control model for controlling the ink feed in a machine which processes printing substrates

Also Published As

Publication number Publication date
DE4343905A1 (de) 1995-06-29
JP2872059B2 (ja) 1999-03-17
EP0659559B1 (fr) 1999-02-10
US5551342A (en) 1996-09-03
EP0659559A3 (fr) 1996-12-18
ATE176628T1 (de) 1999-02-15
DE4343905C2 (de) 1996-02-15
DE59407805D1 (de) 1999-03-25
JPH07205412A (ja) 1995-08-08

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