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Geometry-based Block Partitioning for Efficient Intra Prediction in Depth Video Coding

机译:基于几何的块分区,用于深度视频编码中有效的帧内预测

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In the 3D video system including depth information, once a depth video is coded by the state-of-the-art video compression tools such as H.264/AVC, depth errors around the boundaries of objects can be intensified, and these can significantly affect the quality of rendered virtual view later. Despite this drawback of depth video coding, its compression is essential because of the enormous amount of input data in the 3D video system. In this paper, we propose a line-based partitioned intra prediction method which exploits geometric redundancy of depth video for an efficient compression without significant errors around boundaries. The proposed algorithm can efficiently divide the current coded block into two partitioned regions, and the algorithm independently predicts each region with previously coded neighboring pixels. Finally, the generated prediction mode adaptively alternates the conventional DC intra prediction mode. To evaluate the intra prediction performances, we have implemented the proposed method into H.264/AVC intra prediction scheme. Experimental results have demonstrated that our proposed method provides higher coding performance. The coding performance for depth video compression itself was up to 4.43% bit-saving or 0.526 dB gain in terms of peak signal-to-noise ratio (PSNR) among proper depth sequences which contain line-like boundaries.
机译:在包括深度信息的3D视频系统中,一旦深度视频被诸如H.264 / AVC的最先进的视频压缩工具编码,可以加强对象边界周围的深度误差,并且这些可以显着稍后影响呈现虚拟视图的质量。尽管深度视频编码存在此缺点,但由于3D视频系统中的巨大输入数据,其压缩是必不可少的。在本文中,我们提出了一种基于线的分区帧内预测方法,其利用深度视频的几何冗余,以获得有效压缩,而没有界限的重大错误。所提出的算法可以有效地将当前编码块划分为两个分区区域,并且该算法独立地预测具有先前编码的相邻像素的每个区域。最后,生成的预测模式自适应地替换传统的DC帧内预测模式。为了评估帧内预测性能,我们已经将所提出的方法实施到H.264 / AVC帧内预测方案中。实验结果表明,我们的提出方法提供了更高的编码性能。在包含线状边界的适当深度序列中,深度视频压缩本身的编码性能高达4.43%的位节省量或0.526dB的增益。

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