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An error resilient coding scheme for H.26L video transmission based on data embedding

机译:基于数据嵌入的H.26L视频传输的容错编码方案

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For entropy-coded H.26L video frames, a transmission error in a codeword will not only affect the underlying codeword but also may affect subsequent codewords, resulting in a great degradation of the received video frames. In this study, an error resilient coding scheme for H.26L video transmission based on data embedding is proposed. At the encoder, for an H.26L intra-coded I frame, the important data for each macroblock are extracted and embedded into another macroblock(s) within the I frame and the next P frame by the proposed odd-even data embedding scheme. For an H.26L inter-coded P frame, the important data for each slice are extracted and embedded into the next frame by the proposed slice-based embedding scheme for P frames. At the decoder, for each corrupted macroblock, if the important data for a corrupted macroblock can be correctly extracted, the extracted important data will facilitate the employed error concealment scheme to conceal the corrupted macroblock. Otherwise, the employed error concealment scheme is used to conceal the corrupted macroblock. Based on the simulation results, the proposed scheme can recover high-quality H.26L video frames from the corresponding corrupted video frames up to a video packet loss rate of 30%.
机译:对于熵编码的H.26L视频帧,码字中的传输错误不仅会影响基础码字,而且可能会影响后续的码字,从而导致接收视频帧的质量大大下降。本文提出了一种基于数据嵌入的H.26L视频传输的容错编码方案。在编码器处,对于H.26L帧内编码的I帧,通过提出的奇偶数据嵌入方案,提取每个宏块的重要数据,并将其嵌入到I帧和下一个P帧内的另一个宏块中。对于H.26L帧间编码的P帧,通过针对P帧的基于切片的嵌入方案,提取每个切片的重要数据并将其嵌入到下一帧中。在解码器处,对于每个损坏的宏块,如果可以正确地提取损坏的宏块的重要数据,则提取的重要数据将有助于采用错误隐藏方案来隐藏损坏的宏块。否则,采用所采用的错误隐藏方案来隐藏损坏的宏块。基于仿真结果,提出的方案可以从损坏的视频帧中恢复高质量的H.26L视频帧,视频丢包率高达30%。

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