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Locally Adaptive Perceptual Compression for Color Images

机译:彩色图像的局部自适应感知压缩

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摘要

The main idea in perceptual image compression is to remove the perceptual redundancy for representing images at the lowest possible bit rate without introducing perceivable distortion. A certain amount of perceptual redundancy is inherent in the color image since human eyes are not perfect sensors for discriminating small differences in color signals. Effectively exploiting the perceptual redundancy will help to improve the coding efficiency of compressing color images. In this paper, a locally adaptive perceptual compression scheme for color images is proposed. The scheme is based on the design of an adaptive quantizer for compressing color images with the nearly lossless visual quality at a low bit rate. An effective way to achieve the nearly lossless visual quality is to shape the quantization error as a part of perceptual redundancy while compressing color images. This method is to control the adaptive quantization stage by the perceptual redundancy of the color image. In this paper, the perceptual redundancy in the form of the noise detection threshold associated with each coefficient in each subband of three color components of the color image is derived based on the finding of perceptually indistinguishable regions of color stimuli in the uniform color space and various masking effects of human visual perception. The quantizer step size for the target coefficient in each color component is adaptively adjusted by the associated noise detection threshold to make sure that the resulting quantization error is not perceivable. Simulation results show that the compression performance of the proposed scheme using the adaptively coefficient-wise quantization is better than that using the band-wise quantization. The nearly lossless visual quality of the reconstructed image can be achieved by the proposed scheme at lower entropy.
机译:感知图像压缩的主要思想是消除以最低可能的比特率表示图像的感知冗余,而不会引入可感知的失真。彩色图像中固有一定数量的感知冗余,因为人眼不是用于区分彩色信号中细微差异的完美传感器。有效地利用感知冗余将有助于提高压缩彩色图像的编码效率。本文提出了一种彩色图像的局部自适应感知压缩方案。该方案基于自适应量化器的设计,该自适应量化器用于以低比特率压缩具有几乎无损视觉质量的彩色图像。一种实现几乎无损视觉质量的有效方法是在压缩彩色图像时将量化误差作为感知冗余的一部分。该方法是通过彩色图像的感知冗余来控制自适应量化阶段。在本文中,基于在均匀色彩空间和各种色彩空间中发现色彩刺激的感知上难以区分的区域,得出了与彩色图像的三个色彩分量的每个子带中的每个系数相关的噪声检测阈值形式的感知冗余。掩盖人类视觉感知的影响。每个颜色分量中目标系数的量化步长通过关联的噪声检测阈值进行自适应调整,以确保无法感知到最终的量化误差。仿真结果表明,采用自适应逐系数量化方案的压缩性能优于逐带量化方案。所提出的方案可以在较低的熵下获得几乎无损的重建图像视觉质量。

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