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Perceptually Driven Nonuniform Asymmetric Coding of Stereoscopic 3D Video

机译:立体3D视频的感知驱动非均匀不对称编码

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Asymmetric stereoscopic video coding has already proven its effectiveness in reducing the bandwidth required for stereoscopic 3D delivery without degrading the visual quality. This approach, in which the left and right views are encoded with different levels of quality, relies on the perceptual theory of binocular suppression. However, to ensure comfortable 3D viewing, the just-noticeable level of asymmetry, i.e., the maximum quality gap between views, has to be carefully defined. Both subjectively and empirically fixed thresholds of asymmetry demonstrated either the maladjustment to content or dependency to the experimental design. This paper describes a new nonuniform asymmetric stereoscopic video coding method adaptively adjusting the level of asymmetry for each region of the image based on its perceptual significance. The proposed method uses a fully automated model that dynamically determines the best bounds of asymmetry for which the 3D viewing experience will not be altered. This is achieved by exploiting several human-visual-system-inspired models, namely, the binocular just-noticeable difference, and the visual saliency map and depth information. The simulation results show that the proposed method results in bit rate saving of up to 26% and provides better 3D visual quality compared with state-of-the-art asymmetric coding methods.
机译:非对称立体视频编码已经证明了其在减少立体3D传递所需的带宽而不会降低视觉质量的情况下的有效性。这种方法,其中左视图和右视图以不同的质量等级编码,它依赖于双眼抑制的感知理论。但是,为了确保舒适的3D观看效果,必须仔细定义不明显的不对称程度,即视图之间的最大质量差距。在主观和经验上固定的不对称阈值都表明对内容的不适当调整或对实验设计的依赖。本文介绍了一种新的非均匀不对称立体视频编码方法,该方法根据其感知意义自适应地调整图像每个区域的不对称程度。提出的方法使用了一个全自动模型,该模型可以动态确定最佳的不对称范围,对于该范围,不会更改3D观看体验。这是通过利用人类视觉系统启发的几种模型实现的,即双眼恰到好处的差异以及视觉显着性图和深度信息。仿真结果表明,与最新的非对称编码方法相比,该方法可节省高达26%的比特率,并提供更好的3D视觉质量。

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