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A Rate-distortion Optimization Model For Svc Inter-layer Encoding And Bitstream Extraction

机译:Svc层间编码和比特流提取的速率失真优化模型

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The Scalable Video Coding (SVC) standard enables viewing devices to adapt their video reception using bit-stream extraction. Since SVC offers spatial, temporal, and quality combined scalability, extracting proper bitstreams for different viewing devices can be a non-trivial task, and naive choices usually produce poor playback quality. In this paper, we propose a two-prong approach to achieve rate-distortion (R-D) optimal extraction of SVC bitstreams. For SVC encoding, we developed a set of adaptation rules for setting the quantization parameters and the inter-layer dependencies among the SVC coding layers. A well-adapted SVC bitstream thus produced manifests good R-D trade-offs when its scalable layers are extracted along extraction paths consisting of successive refinement steps. For extracting R-D optimized bitstreams for different viewing devices, we formalized the notion of optimal and near-optimal extraction paths and devised computationally efficient strategies to search for the extraction paths. Experiment results demonstrated that our R-D optimized adaptation schemes and extraction strategies offer significant improvement in playback picture quality among heterogeneous viewing devices. Particularly, our adaptation rules promise R-D convexity along optimal extraction paths and permit the use of steepest-descent strategy to discover the optimalear-optimal paths. This simple search strategy performs only half of the computation necessary for an exhaustive search.
机译:可伸缩视频编码(SVC)标准使查看设备可以使用位流提取来调整其视频接收。由于SVC提供了空间,时间和质量的组合可伸缩性,因此为不同的查看设备提取合适的比特流可能是一项艰巨的任务,并且幼稚的选择通常会产生较差的播放质量。在本文中,我们提出了两种方法来实现SVC比特流的速率失真(R-D)最佳提取。对于SVC编码,我们开发了一组自适应规则,用于设置SVC编码层之间的量化参数和层间依赖性。当沿着由连续的细化步骤组成的提取路径提取其可伸缩层时,如此产生的自适应SVC比特流表现出良好的R-D折衷。为了提取不同观看设备的R-D优化位流,我们对最佳和接近最佳提取路径的概念进行了形式化,并设计了计算有效的策略来搜索提取路径。实验结果表明,我们的R-D优化适配方案和提取策略可显着提高异构查看设备之间的回放图像质量。特别是,我们的适应规则保证了沿最佳提取路径的R-D凸性,并允许使用最速下降策略来发现最佳/接近最佳路径。这种简单的搜索策略仅执行穷举搜索所需的一半计算。

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