Scalable user-adaptive multiview video coder

V. Velisavljevic, Jacob Chakareski, V. Stanković
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Abstract

We derive an optimization framework for joint view and rate scalable coding of multi-view video content represented in the texture plus depth format. The optimization enables the sender to select the subset of coded views and their encoding rates such that the aggregate distortion over a continuum of synthesized views is minimized. We construct the view-rate scalable bitstream such that it delivers optimal performance simultaneously over a discrete set of transmission rates. In conjunction, we develop a user interaction model that characterizes the view selection actions of the client as a Markov chain over a discrete state-space. Our scheme outperforms the state-of-the-art H.264 SVC codec as well as a multi-view wavelet-based coder equipped with a uniform rate allocation strategy, across all scenarios studied. Finally, we observed that the interactivity-aware coding delivers superior performance over conventional allocation techniques that do not anticipate the client's view selection actions in their operation.
可扩展的用户自适应多视图视频编码器
我们推导了一个以纹理加深度格式表示的多视图视频内容的联合视图和速率可伸缩编码的优化框架。该优化使发送方能够选择编码视图的子集及其编码速率,从而使合成视图连续体上的聚合失真最小化。我们构建了视频率可扩展的比特流,使其在一组离散的传输速率上同时提供最佳性能。同时,我们开发了一个用户交互模型,该模型将客户端的视图选择行为描述为离散状态空间上的马尔可夫链。在所有研究的场景中,我们的方案优于最先进的H.264 SVC编解码器以及配备统一速率分配策略的基于多视图小波的编码器。最后,我们观察到,与传统的分配技术相比,交互性感知编码提供了更好的性能,传统的分配技术在操作中不预测客户机的视图选择动作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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