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Three-dimensional Gamut Mapping Method Based on the Concept of Image-dependence

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Three-dimensional (3D) Gamma-Compression Gamut Mapping Algorithm (GMA) is proposed. Currently Gamma-Compression GMA has been designed to work in two-dimensional (2D) Lightness-Chroma planes segmented by primary and secondary color hues. The advanced 3D GMA is expected to work without color segmentation.

This paper describes a 3D GMA based on the concept of Image-to-Device (I-D). Considering the color gamuts' relations between the devices (i.e. printers, monitors) and source image, the Gamma-Compression GMA is applied to the 3D shell shapes in CIEL*a*b* space. 3D shell shapes of devices and image source are formed by connecting the edgy color points located at their gamut surfaces. The surface polygons are built up from these most outside color points, and true seamless 3D mapping is performed.
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Document Type: Research Article

Publication date: 01 January 2000

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  • For more than 30 years, IS&T's series of digital printing conferences have been the leading forum for discussion of advances and new directions in 2D and 3D printing technologies. A comprehensive, industry-wide conference that brings together industry and academia, this meeting includes all aspects of the hardware, materials, software, images, and applications associated with digital printing systems?particularly those involved with additive manufacturing and fabrication?including bio-printing, printed electronics, page-wide, drop-on-demand, desktop and continuous ink jet, toner-based systems, and production digital printing, as well as the engineering capability, optimization, and science involved in these fields. In 2016, the conference changed its name formally to Printing for Fabrication to better reflect the content of the meeting and the evolving technology of printing.

    Please note: For purposes of its Digital Library content, IS&T defines Open Access as papers that will be downloadable in their entirety for free in perpetuity. Copyright restrictions on papers vary; see individual paper for details.

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