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Reduced-reference image quality assessment in reorganized DCT domain

机译:重组DCT域中的缩减参考图像质量评估

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摘要

In this paper, a novel reduced-reference (RR) image quality assessment (IQA) is proposed by depicting the subband statistical characteristics in the reorganized discrete cosine transform (RDCT) domain. First, the block-based DCT coefficients are reorganized into a three-level coefficient tree, resulting in ten RDCT subbands. For the intra RDCT subband characteristic, the coefficient distribution of each RDCT subband is modeled by the generalized Gaussian density (GGD) function. The city-block distance (CBD) is employed to measure the modeling error between the actual distribution and the fitted GGD curve. For the inter RDCT subband characteristic, the mutual information (MI) is utilized to depict the dependencies between coefficient pairs in related RDCT subbands. Moreover, a frequency ratio descriptor (FRD) calculated in the RDCT domain is proposed to depict how the image energy distributes among different frequency components. The FRD values computed from both the reference and distorted images are jointly considered to derive a novel mutual masking strategy for simulating the texture masking property of the human visual system (HVS). By considering the GGD modeling of intra RDCT subband, MI of inter RDCT subbands, and FRD of the image, the proposed RR IQA is developed. Experimental results demonstrate that a small number of RR features is sufficient to represent the reference image for the perceptual quality analysis. The proposed method can outperform the state-of-the-art RR IQAs, and even the full-reference (FR) PSNR and SSIM.
机译:在本文中,通过在重组离散余弦变换(RDCT)域中描绘子带统计特征,提出了一种新颖的降低参考(RR)图像质量评估(IQA)。首先,将基于块的DCT系数重新组织为三级系数树,从而产生十个RDCT子带。对于内部RDCT子带特征,每个RDCT子带的系数分布通过广义高斯密度(GGD)函数建模。街区距离(CBD)用于测量实际分布和拟合的GGD曲线之间的建模误差。对于RDCT间子带特征,互信息(MI)用于描述相关RDCT子带中系数对之间的依赖性。此外,提出了在RDCT域中计算的频率比率描述符(FRD),以描述图像能量如何在不同频率分量之间分配。从参考图像和失真图像两者计算出的FRD值被共同考虑以得出一种新颖的相互掩盖策略,用于模拟人类视觉系统(HVS)的纹理掩盖特性。通过考虑内部RDCT子带的GGD建模,内部RDCT子带的MI和图像的FRD,开发了建议的RR IQA。实验结果表明,少量的RR特征足以代表感知质量分析的参考图像。所提出的方法可以胜过最新的RR IQA,甚至优于全参考(FR)PSNR和SSIM。

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