利用引导深度滤波提高3D视频的编码性能

S. V. Leuven, G. Wallendael, Robin Ballieul, J. D. Cock, R. Walle
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引用次数: 2

摘要

自动立体显示器基于编码的纹理和深度信息可视化3D场景,这些信息通常缺乏良好深度图的质量。因此,显示器制造商引入了不同的滤波技术来提高重建三维图像的主观质量。本文研究了在预处理步骤中应用深度滤波对编码性能的影响。例如,在编码器侧使用引导深度滤波,这导致3D-HEVC的编码增益为1.7%,Multiview HEVC的编码增益为8.0%。然而,在解码器侧应用额外的滤波可能会降低主观质量。因此,建议在应用预处理器滤波器的基础上进行自适应滤波,这可以通过补充增强信息消息来实现。对于天然含量,使用该方法可获得5.7%和9.3%的增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the coding performance of 3D video using guided depth filtering
Autostereoscopic displays visualize a 3D scene based on encoded texture and depth information, which often lack the quality of good depth maps. Therefore, display manufacturers introduce different filtering techniques to improve the subjective quality of the reconstructed 3D image. This paper investigates the coding performance when applying depth filtering in a pre-processing step. As an example, guided depth filtering is used at the encoder side, which results in a 1.7% coding gain for 3D-HEVC and 8.0% for Multiview HEVC. However, applying additional filtering at the decoder side might deteriorate the subjective quality. Therefore, adaptively filtering based on the applied pre-processor filter is suggested, which can be done using a supplemental enhancement information message. For natural content, a gain of 5.7% and 9.3% is reported using this approach.
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