Color image quantization using weighted distortion measure of HVS color activity

Kyeong-Man Kim, Chae-Soo Lee, Eung-Joo Lee, Yeong-Ho Ha
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引用次数: 14

Abstract

Color quantization is to design a color palette having almost no noticeably perceived difference between original and quantized images. In this paper, to design such a palette, the color quantization algorithm is considered in two parts. The selection of a proper distortion measure and the design of an optimal palette. The proper selection of distortion measure in the quantization is important to image quality. Since the human eye is the final judge of image quality, it is desirable to use a perception-based distortion measure. Thus we developed an activity-weighted distortion measure considering color visual sensitivity and absorbance of human visual system (HVS) depending on each color component in the local region of image. Then using the distortion measure, a hierarchical quantization algorithm is proposed. The algorithm consists of initial and subdivision steps both to reduce computation time and to minimize the distortion based on spatial masking effect of HVS. The experimental results show that the proposed algorithm shows better visual quality and less computation time comparing to the conventional algorithms.
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基于HVS色彩活度加权失真测量的彩色图像量化
颜色量化是设计一个调色板,在原始图像和量化图像之间几乎没有明显的感知差异。在本文中,为了设计这样一个调色板,从两个部分考虑了颜色量化算法。选择合适的失真量和设计最佳调色板。在量化过程中,正确选择失真测度对图像质量有重要影响。由于人眼是图像质量的最终判断者,因此希望使用基于感知的失真度量。因此,我们开发了一种考虑人类视觉系统(HVS)的颜色视觉灵敏度和吸光度的活动加权失真测量方法,该方法依赖于图像局部区域的每个颜色成分。然后利用失真测度,提出了一种分层量化算法。该算法分为初始化和细分两步,既减少了计算时间,又使基于HVS空间掩蔽效应的失真最小化。实验结果表明,与传统算法相比,该算法具有更好的视觉质量和更少的计算时间。
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