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For color half tone catch error with reduction of the local change in brightness

机译:对于色彩半色调捕捉错误,同时减少了局部亮度变化

摘要

Error diffusion algorithms such as the celebrated Floyd Steinberg error-diffusion algorithm are high-performance halftoning methods in which quantization errors are diffused to "future" pixels. Originally intended for grayscale images, they are traditionally extended to color images by error-diffusing each of the three color planes independently (separable error-diffusion). Adding a design rule which is based on certain characteristics of human color perception to the error- diffusion paradigm results in a color halftoning algorithm having output of considerably higher quality when compared to separable error-diffusion. These benefits are achieved by adding the Minimum Brightness Variation Criterion (MBVC) to the design rules of color error-diffusion halftoning methods. Halftone values are constrained to be vertices of a Minimum Brightness Variation Quadruple (MBVQ) associated with each pixel of the color image being processed. The algorithm presented requires no additional memory and entails a reasonable increase in run-time.
机译:诸如著名的Floyd Steinberg误差扩散算法之类的误差扩散算法是一种高性能的半色调方法,其中量化误差被扩散至“未来”像素。最初打算用于灰度图像,传统上通过将三个颜色平面中的每一个分别进行误差扩散(可分离的误差扩散)而扩展到彩色图像。与可分离的误差扩散相比,将基于人类色彩感知的某些特征的设计规则添加到误差扩散范例中,会导致彩色半色调算法的输出质量明显更高。通过将最小亮度变化标准(MBVC)添加到颜色误差扩散半色调方法的设计规则中,可以实现这些好处。半色调值被约束为与正在处理的彩色图像的每个像素关联的最小亮度变化四倍(MBVQ)的顶点。提出的算法不需要额外的内存,并且可以合理地增加运行时间。

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