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Display Color Synthesis in the Space-Time Continuum

机译:在时空连续内显示颜色合成

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摘要

A common problem for all color displays, regardless of whether they are of the self-luminous or non-self-luminous type, is the synthesis of a full-color image from a limited set of primary colors. Several approaches to color synthesis have been employed for electronic displays. The most successful of these conform to the principles of additive color mixture and include optical superposition, spatial synthesis and temporal synthesis. In order to understand the principles of color generation in electronic display systems, as well as the relative strengths and weaknesses of synthesizing color in the space and time domains, I first consider the visual bases which allow such color synthesis to occur. Although basic approaches to color synthesis have served the evolution of display technology well up to recent times, I present the argument that the continued evolution of display technology toward higher display resolution and enhanced color quality has exposed the limitations of both spatial color synthesis and temporal color synthesis and raises questions as to whether either method for synthesizing color can alone fully satisfy the ever increasing demands on display image quality. Clearly, new approaches to color synthesis are needed to sustain the evolution of display technology, and I describe recent concepts with the potential for pushing the horizons of color display image quality and reducing the costs of future color displays. These include hybrid spatial-temporal color synthesis and 3D color synthesis as well as variants of these approaches.
机译:无论它们是否具有自发光或非发光类型,所有颜色都会显示所有颜色的常见问题是从有限的一组原色中合成全彩图像。用于电子显示器已经采用了几种颜色合成方法。这些最成功的符合添加剂颜色混合物的原理,包括光学叠加,空间合成和时间合成。为了了解电子显示系统中的颜色生成原理,以及在空间和时畴中合成颜色的相对强度和缺点,首先考虑允许这种颜色合成的视觉基础。虽然颜色合成的基本方法已经提供了近期显示技术的演变,但我介绍了展开显示技术持续发展和增强的颜色质量的论点暴露了空间综合合成和时间颜色的局限性合成并提高了用于合成颜色的方法是否可以单独满足对显示图像质量的不断增加的需求。显然,需要新的颜色综合方法来维持显示技术的演变,并且我描述了最近的概念,其可能推动彩色显示图像质量的视野并降低未来颜色显示的成本。这些包括混合空间 - 时间颜色合成和3D颜色合成以及这些方法的变型。

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