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How colorful! A feature it is, isn't it?

机译:多么多彩!是一个功能,不是吗?

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摘要

A display's color subpixel geometry provides an intriguing opportunity for improving readability of text. True type fonts can be positioned at the precision of subpixel resolution. With such a constraint in mind, how does one need to design font characteristics? On the other hand, display manufactures try hard in addressing the color display's dilemma: smaller pixel pitch and larger display diagonals strongly increase the total number of pixels. Consequently, cost of column and row drivers as well as power consumption increase. Perceptual color subpixel rendering using color component subsampling may save about 1/3 of color subpixels (and reduce power dissipation). This talk will try to elaborate the following questions, based on simulation of several different layouts of subpixel matrices: Up to what level are display device constraints compatible with software specific ideas of rendering text? How much of color contrast will remain? How to best consider preferred viewing distance for readability of text? How much does visual acuity vary at 20/20 vision? Can simplified models of human visual color perception be easily applied to text rendering on displays? How linear is human visual contrast perception around band limit of a display's spatial resolution? How colorful does the rendered text appear on the screen? How much does viewing angle influence the performance of subpixel layouts and color subpixel rendering?
机译:显示器的彩色子像素几何形状为提高文本的可读性提供了一个有趣的机会。真正的字体可以以亚像素分辨率的精度定位。考虑到这一限制,如何设计字体特征?另一方面,显示器制造商努力解决彩色显示器的难题:较小的像素间距和较大的显示对角线会大大增加像素总数。因此,列和行驱动器的成本以及功耗增加。使用颜色分量子采样的可感知颜色子像素渲染可以节省大约1/3的颜色子像素(并减少功耗)。本演讲将基于对亚像素矩阵的几种不同布局的模拟,尝试阐述以下问题:显示设备的约束与特定于渲染文本的软件思想在多大程度上兼容?剩下多少色彩对比?如何最好地考虑首选的观看距离以提高文本的可读性? 20/20视力有多少视力变化?可以将人类视觉色彩感知的简化模型轻松地应用于显示器上的文本渲染吗?人类视觉对比度感知在显示器的空间分辨率的带宽限制附近有多线性?呈现的文本在屏幕上显示的色彩如何?视角在多大程度上影响子像素布局和彩色子像素渲染的性能?

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