首页> 外文期刊>Signal Processing Letters, IEEE >Improved Context-Based Adaptive Binary Arithmetic Coding over H.264/AVC for Lossless Depth Map Coding
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Improved Context-Based Adaptive Binary Arithmetic Coding over H.264/AVC for Lossless Depth Map Coding

机译:H.264 / AVC上改进的基于上下文的自适应二进制算术编码,用于无损深度图编码

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摘要

The depth map, which represents three-dimensional (3D) information, is used to synthesize virtual views in the depth image-based rendering (DIBR) method. Since the quality of synthesized virtual views highly depends on the quality of depth map, we encode the depth map under the lossless coding mode. The original context-based adaptive binary arithmetic coding (CABAC) that was originally designed for lossy texture coding cannot provide the best coding performance for lossless depth map coding due to the statistical differences of residual data in lossy and lossless depth map coding. In this letter, we propose an enhanced CABAC coding mechanism for lossless depth map coding based on the statistics of residual data. Experimental results show that the proposed CABAC method provides approximately 4% bit saving compared to the original CABAC in H.264/AVC.
机译:表示三维(3D)信息的深度图用于在基于深度图像的呈现(DIBR)方法中合成虚拟视图。由于合成虚拟视图的质量高度依赖于深度图的质量,因此我们在无损编码模式下对深度图进行编码。由于有损和无损深度图编码中残留数据的统计差异,最初设计用于有损纹理编码的原始基于上下文的自适应二进制算术编码(CABAC)无法为无损深度图编码提供最佳的编码性能。在这封信中,我们提出了一种基于残差数据统计的增强型CABAC编码机制,用于无损深度图编码。实验结果表明,与H.264 / AVC中的原始CABAC相比,提出的CABAC方法可节省约4%的位。

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