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Variations on Error Diffusion: Retrospectives and Future Trends

机译:误差扩散的变化:回顾性和未来趋势

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Grayscale error diffusion introduces nonlinear distortion (directional artifacts and false textures), linear distortion (sharpening), and additive noise. Since error diffusion is 2-D sigma-delta modulation (Anastassiou, 1989), Kite et al. linearize error diffusion by replacing the thresholding quantizer with a scalar gain plus additive noise. Sharpening is proportional to the scalar gain. Kite et al. derive the sharpness control parameter value in threshold modulation (Eschbach and Knox, 1991) to compensate linear distortion. These unsharpened halftones are particularly useful in perceptually weighted SNR measures. False textures at mid-gray (Fan and Eschbach, 1994) are due to limit cycles, which can be broken up by using a deterministic bit flipping quantizer (Damera-Venkata and Evans, 2001). We review other variations on grayscale error diffusion to reduce false textures in shadow and highlight regions, including green noise halftoning (Levien, 1993) and tone-dependent error diffusion (Li and Allebach, 2002). We then discuss color error diffusion in several forms: color plane separable (Kolpatzik and Bouman, 1992); vector quantization (Shaked et al. 1996); green noise extensions (Lau et al. 2000); and matrix-valued error filters (Damera-Venkata and Evans, 2001). We conclude with open research problems.
机译:灰度误差扩散引入非线性失真(方向伪影和假纹理),线性失真(锐化)和加性噪声。由于误差扩散是2-D Sigma-Delta调制(Anastassiou,1989),Kite等人。通过用标量增益加上加性噪声替换阈值量化器来线性化误差扩散。锐化与标量增益成比例。 Kite等人。从阈值调制(Eschbach和Knox,1991)中导出锐度控制参数值以补偿线性失真。这些未剖析的半色调在感知性的加权SNR措施中特别有用。中灰色(风扇和Eschbach,1994)的假纹理是由于极限循环,可以通过使用确定性位翻转量化器(Damera-Venkata和Evans,2001)分解。我们审查了灰度误差扩散的其他变化,以减少阴影和突出区域中的假纹理,包括绿色噪声半色调(Levien,1993)和基于音调​​误差扩散(Li和Allebach,2002)。然后,我们以几种形式讨论颜色误差扩散:彩色平面可分离(Kolpatzik和Bouman,1992);矢量量化(Shaked等人1996);绿色噪音扩展(Lau等人2000);和矩阵值误差过滤器(Damera-Venkata和Evans,2001)。我们通过开放的研究问题得出结论。

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