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Differentiated Protection of Video Layers to Improve Perceived Quality

机译:视频层的差异化保护可提高感知质量

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摘要

Scalable video transmission over a network is easily adaptable to different types of mobile experiencing different network conditions. However the transmission of differentiated video packets in an error-prone wireless environment remains problematic. We propose and analyze a cross-layer error control scheme that exploits priority-aware block interleaving (PBI) in the MAC layer for video broadcasting in CDMA2000 systems. The PBI scheme allocates a higher priority to protecting the data which are more critical to the decoding of a video stream, and therefore has more effect on picture quality in the application layer. The use of Reed-Solomon coding in conjunction with PBI in the MAC layer can handle error bursts more effectively if its implementation takes account of underlying error distributions in the physical layer, and differentiates between different types of video packets in the application layer. We also calculate the maximum jitter from the variability of the Reed-Solomon decoding delay and determine the size of jitter buffer needed to prevent interruptions due to buffer underrun. Simulations demonstrate the extent to which we can improve the perceived quality of scalable video.
机译:通过网络的可伸缩视频传输很容易适应经历不同网络状况的不同类型的移动设备。但是,在易于出错的无线环境中传输差异化视频数据包仍然存在问题。我们提出并分析一种跨层错误控制方案,该方案利用CDMA 2000系统中视频广播的MAC层中的优先级感知块交织(PBI)。 PBI方案分配了更高的优先级来保护对视频流的解码更关键的数据,因此对应用程序层的图片质量影响更大。如果Reed-Solomon编码的实现考虑到物理层中潜在的错误分布,并在应用层中区分不同类型的视频数据包,则在MAC层中结合使用Reed-Solomon编码和PBI可以更有效地处理错误突发。我们还根据Reed-Solomon解码延迟的可变性来计算最大抖动,并确定抖动缓冲区的大小,以防止由于缓冲区不足引起的中断。仿真表明我们可以在多大程度上改善可伸缩视频的感知质量。

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