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Rate-distortion optimized layered stereoscopic video streaming with raptor codes

机译:率失真优化的具有猛禽代码的分层立体视频流

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摘要

A near optimal streaming system for stereoscopic video is proposed. Initially, the stereoscopic video is separated into three layers and the approximate analytical model of the Rate-Distortion (RD) curve of each layer is calculated from sufficient number of rate and distortion samples. The analytical modeling includes the interdependency of the defined layers. Then, the analytical models are used to derive the optimal source encoding rates for a given channel bandwidth. The distortion in the quality of the stereoscopic video that is caused by losing a NAL unit from the defined layers is estimated to minimize the average distortion of a single NAL unit loss. The minimization is performed over protection rates allocated to each layer. Raptor codes are utilized as the error protection scheme due to their novelty and suitability in video transmission. The layers are protected unequally using Raptor codes according to the parity ratios allocated to the layers. Comparison of the defined scheme with two other protection allocation schemes is provided via simulations to observe the quality of stereoscopic video. ©2007 IEEE.
机译:提出了一种近乎最佳的立体视频流系统。最初,将立体视频分为三层,并从足够数量的速率和失真样本中计算出每一层的速率-失真(RD)曲线的近似分析模型。分析建模包括已定义层的相互依赖性。然后,使用分析模型得出给定信道带宽的最佳源编码率。估计由于从定义的层丢失NAL单元而导致的立体视频质量失真,以使单个NAL单元丢失的平均失真最小。最小化是在分配给每个层的保护速率上执行的。猛禽代码由于其新颖性和在视频传输中的适用性而被用作错误保护方案。根据分配给各层的奇偶比,使用Raptor码对这些层进行不平等的保护。通过仿真提供了已定义方案与其他两个保护分配方案的比较,以观察立体视频的质量。 ©2007 IEEE。

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