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Models of Monocular and Binocular Visual Perception in Quality Assessment of Stereoscopic Images

机译:立体图像质量评估中的单眼和双眼视觉感知模型

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Assessing quality of experience (QoE) for three-dimensional (3-D) video is challenging. In this paper, we propose a new full-reference stereoscopic image quality metric, by simulating the behaviors of visual perception with simple and complex receptive field properties and constructing the models of monocular and binocular visual perception. To be more specific, the stereoscopic images are first classified into noncorresponding and corresponding regions. Then, monocular energy responses are generated for the noncorresponding region based on stimuli from different spatial frequencies and orientations, and binocular energy responses are generated for the corresponding region based on stimuli from different spatial frequencies, orientations and disparities, respectively. Finally, gradient similarities between the energy responses of the original and distorted stereoscopic images are measured for noncorresponding and corresponding regions, respectively, and all results are fused to get an overall score. Experiments on three 3-D image quality assessment (IQA) databases demonstrate that in comparison with the most related existing methods, the devised algorithm achieves higher agreement with subjective assessment, making it better suited for the evaluation and optimization of stereoscopic image processing algorithms.
机译:评估三维(3-D)视频的体验质量(QoE)具有挑战性。在本文中,我们通过模拟具有简单和复杂感受野特性的视觉感知行为并构建单眼和双眼视觉感知模型,提出了一种新的全参考立体图像质量度量。更具体地说,首先将立体图像分类为非对应区域和对应区域。然后,基于来自不同空间频率和方向的刺激为非对应区域生成单眼能量响应,并且基于来自不同空间频率,方向和视差的刺激为相应区域生成双目能量响应。最后,分别针对不对应的区域和对应的区域测量原始和变形的立体图像的能量响应之间的梯度相似度,并将所有结果融合以获得总分。在3个3D图像质量评估(IQA)数据库上进行的实验表明,与现有最相关的方法相比,该算法与主观评估具有更高的一致性,使其更适合于立体图像处理算法的评估和优化。

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