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Binocular Just-Noticeable-Difference Model for Stereoscopic Images

机译:立体图像的双目正好可察觉的差异模型

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摘要

Conventional 2-D Just-Noticeable-Difference (JND) models measure the perceptible distortion of visual signal based on monocular vision properties by presenting a single image for both eyes. However, they are not applicable for stereoscopic displays in which a pair of stereoscopic images is presented to a viewer's left and right eyes, respectively. Some unique binocular vision properties, e.g., binocular combination and rivalry, need to be considered in the development of a JND model for stereoscopic images. In this letter, we propose a binocular JND (BJND) model based on psychophysical experiments which are conducted to model the basic binocular vision properties in response to asymmetric noises in a pair of stereoscopic images. The first experiment exploits the joint visibility thresholds according to the luminance masking effect and the binocular combination of noises. The second experiment examines the reduction of visual sensitivity in binocular vision due to the contrast masking effect. Based on these experiments, the developed BJND model measures the perceptible distortion of binocular vision for stereoscopic images. Subjective evaluations on stereoscopic images validate of the proposed BJND model.
机译:常规的2-D Just-Noticeable-Difference(JND)模型基于单眼视觉特性,通过为两只眼睛呈现单个图像来测量视觉信号的可感知失真。然而,它们不适用于将一对立体图像分别呈现给观看者的左眼和右眼的立体显示器。在开发用于立体图像的JND模型时,需要考虑一些独特的双眼视觉特性,例如,双眼组合和竞争。在这封信中,我们提出了基于心理物理实验的双眼JND(BJND)模型,该模型用于对一对立体图像中的不对称噪声做出响应以对基本的双眼视觉特性进行建模。第一个实验根据亮度掩盖效果和噪声的双目组合利用联合可见性阈值。第二个实验研究了由于对比度掩盖效应导致的双眼视觉灵敏度的降低。基于这些实验,开发的BJND模型可测量双目视觉对立体图像的可感知失真。对立体图像的主观评估验证了所提出的BJND模型。

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