摘要:
Systems and methods for color reproduction tolerances are provided. One method according to the present disclosure may involve selecting a printing configuration, printing a color scale sample using the printing configuration, and scoring the printed color scale sample based at least in part on an extent to which transpositions of the color swatches occur over a color range. When the score of the printed color scale sample indicates a print quality is or will he above a threshold level of quality, a print job using colors of the color range may be printed using the printing configuration.
摘要:
Devices and methods for tracking a print job using an assignable electronic device on a print service provider (PSP) production floor are provided. One such method includes scanning a barcode-enabled job ticket assigned to a print job using a mobile electronic device assigned to a location on a print service provider production floor and sending barcode data from the barcode-enabled job ticket from to a PSP controller. The mobile electronic device may receive workflow instructions associated with the print job from the PSP controller. In addition, the mobile electronic device may display a representation of the workflow instructions.
摘要:
Systems and methods for color reproduction tolerances are provided. One method according to the present disclosure may involve selecting a printing configuration, printing a color scale sample using the printing configuration, and scoring the printed color scale sample based at least in part on an extent to which transpositions of the color swatches occur over a color range. When the score of the printed color scale sample indicates a print quality is or will be above a threshold level of quality, a print job using colors of the color range may be printed using the printing configuration.
摘要:
Devices and methods for tracking a print job using an assignable electronic device on a print service provider (PSP) production floor are provided. One such method includes scanning a barcode-enabled job ticket assigned to a print job using a mobile electronic device assigned to a location on a print service provider production floor and sending barcode data from the barcode-enabled job ticket from to a PSP controller. The mobile electronic device may receive workflow instructions associated with the print job from the PSP controller. In addition, the mobile electronic device may display a representation of the workflow instructions.
摘要:
A system that generates risk values for a print service provider. The print service provider may calculate probabilities of an event occurring, calculate the effect that the given event will have on the print service provider, and determine various risks associated with calculations. These risks may then be utilized to determine overall operational strategies for the print service provider when compared to threshold risk levels for the print service provider.
摘要:
A system that generates risk values for a print service provider. The print service provider may calculate probabilities of an event occurring, calculate the effect that the given event will have on the print service provider, and determine various risks associated with calculations. These risks may then be utilized to determine overall operational strategies for the print service provider when compared to threshold risk levels for the print service provider.
摘要:
Systems and methods for determining a quantitative guideline are provided. One such method may involve receiving into an electronic device a print order from a customer to a print service provider, determining the requisite tasks to fulfill the print order, determining which resources of the print service provider are capable of undertaking the requisite tasks, and determining respective costs and lead times associated with undertaking each requisite task using each capable resource. In particular, such costs and lead times may be determined based at least in part on a dynamic behavioral model of cost and a dynamic behavioral model of lead time associated with each resource.
摘要:
A graphical user interface is disclosed for interactively editing a palette of colors in response to signals from a user, such as from a pointing device. The interface provides a color space in a color space window on the user's display and draws each color in the palette in its current location in the color space, thereby showing the relationship of each color in the palette with other colors in the palette. The interface stores all color representations as device independent color specifications in the uniform color space. The user edits a color by moving it from its current location to a destination location, or by changing its lightness coordinate. The graphical user interface also provides for storing a plurality of colorimetrically measured colors representing the display gamut. When the user edits a color, a gamut clipping process ensures that the modified color is producible in the display gamut. The user may select a color space from several color spaces available for display in the color space window, and may flexibly and conveniently display and edit the palette of colors to any of the available color spaces. One of the color spaces available is the uniform CIELAB color space. Another color space available displays a histogram of palette color lightness frequencies.
摘要:
A graphical user interface provides for interactively modifying, on the user's display, the appearance of a palette of colors on one or more hardcopy output devices. The interface provides a graphical representation of a color space in a color space window on the user's display and draws each color in the palette in its current location in the color space, thereby showing the relationship of each color in the palette with other colors in the palette. The interface stores all color representations as device independent color specifications. The user interface stores a plurality of colorimetrically measured colors representing the gamut of one or more target hardcopy output devices, and displays the boundaries of a selected device gamut in the color space. The user manually controls the appearance of a color on an output printer device by moving a color from a current location outside the target gamut to a destination location inside the gamut. The user may also edit the color's lightness signal. A gamut clipping process ensures that the modified color is producible in the target gamut. When the user moves a color from inside a displayed target gamut to outside the gamut, a gamut constraining process prevents the color from being moved beyond the boundaries of the gamut. The user may flexibly and conveniently display and edit the palette of colors in any of several color spaces available, one of which is the uniform CIELAB color space. Modifications to palette colors are stored for future use.
摘要:
A multi-component icon and system and method of generating thereof. The multi-component icon is generated from characteristics of a data object or data objects where the characteristics include data object content and data object metadata. The multi-component icon includes a plurality of visual traits. Each visual trait has a plurality of variations, such as different shapes, colors, and/or patterns. The visual traits are variably assignable to any one characteristic of the data object such that each variation of the characteristic is visually represented by the icon by a corresponding variation of the variably assignable visual trait. Multi-component icons are generated for groups of data objects, such as word processing files, by determining common characteristics between the files, assigning visual traits to the common characteristics, and then displaying the multi-component icons according to the assignments such that variations of the common characteristic between the files are symbolically show by variations of the assigned visual trait. Icon visual traits are interactive so as to indicate relationships between data object characteristics by “dragging” one icon over another.