No-reference perceptual blur metric for stereoscopic images

Sid Ahmed Fezza, M. Larabi
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引用次数: 2

Abstract

In this paper, we propose a no-reference perceptual blur metric for 3D stereoscopic images. The proposed approach relies on computing perceptual local blurriness map for each image of the stereo pair. To take into account the disparity/depth masking effect, we modulate the obtained perceptual score at each position of the blurriness maps according to its location in the scene. Under the assumption that, in case of asymmetric stereoscopic image quality, 3D perception mechanisms place more emphasis on the view providing the most important and contrasted information, the two derived local blurriness maps are combined using weighting factors based on local information content. Thanks to the inclusion of those psychophysical findings, the proposed metric handles efficiently symmetric as well as asymmetric distortions. Experimental results show that the proposed metric correlates better with human perception than state-of-the-art metrics.
立体图像的无参考感知模糊度量
本文提出了一种用于三维立体图像的无参考感知模糊度量。该方法依赖于计算立体图像对每个图像的感知局部模糊映射。为了考虑视差/深度掩蔽效果,我们根据其在场景中的位置在模糊贴图的每个位置调制获得的感知分数。假设在立体图像质量不对称的情况下,三维感知机制更侧重于提供最重要和对比信息的视图,基于局部信息含量,使用加权因子将导出的两个局部模糊度图组合在一起。由于包含了这些心理物理学的发现,所提出的度量可以有效地处理对称和不对称扭曲。实验结果表明,与现有的度量标准相比,所提出的度量标准与人类感知的相关性更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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