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Robust decoder-based error control strategy for recovery of H.264/AVC video content

机译:基于鲁棒的基于解码器的错误控制策略,用于恢复H.264 / AVC视频内容

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摘要

Real-time wireless conversational and broadcasting multimedia applications offer particular transmission challenges as reliable content delivery cannot be guaranteed. The undelivered and erroneous content causes significant degradation in quality of experience. The H.264/AVC standard includes several error resilient tools to mitigate this effect on video quality. However, the methods implemented by the standard are based on a packet-loss scenario, where corrupted slices are dropped and the lost information concealed. Partially damaged slices still contain valuable information that can be used to enhance the quality of the recovered video. This study presents a novel error recovery solution that relies on a joint source-channel decoder to recover only feasible slices. A major advantage of this decoder-based strategy is that it grants additional robustness while keeping the same transmission data rate. Simulation results show that the proposed approach manages to completely recover 30.79% of the corrupted slices. This provides frame-by-frame peak signal-to-noise ratio (PSNR) gains of up to 18.1%dB, a result which, to the knowledge of the authors, is superior to all other joint source-channel decoding methods found in literature. Furthermore, this error resilient strategy can be combined with other error resilient tools adopted by the standard to enhance their performance.
机译:实时无线对话和广播多媒体应用提出了特殊的传输挑战,因为无法保证可靠的内容传递。未交付和错误的内容会导致体验质量显着下降。 H.264 / AVC标准包括多个错误恢复工具,以减轻这种对视频质量的影响。但是,该标准实施的方法是基于丢包情况的,其中丢失了损坏的切片,并隐藏了丢失的信息。部分损坏的切片仍包含有价值的信息,可用于提高恢复的视频的质量。这项研究提出了一种新颖的错误恢复解决方案,该解决方案依赖于联合源通道解码器来仅恢复可行的条带。这种基于解码器的策略的主要优势在于,它在保持相同传输数据速率的同时,还具有更高的鲁棒性。仿真结果表明,所提出的方法能够完全恢复损坏切片的30.79%。这提供了高达18.1%dB的逐帧峰值信噪比(PSNR)增益,据作者所知,这一结果优于文献中发现的所有其他联合源信道解码方法。此外,该容错策略可以与标准采用的其他容错工具结合使用,以增强其性能。

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