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On scalable lossless video coding based on sub-pixel accurate MCTf

机译:基于子像素精确MCTF的可扩展无损视频编码

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We propose two approaches to scalable lossless coding of motion video. They achieve SNR-scalable bitstream up to lossless reconstruction based upon the subpixel-accurate MCTF-based wavelet video coding. The first approach is based upon a two-stage encoding strategy where a lossy reconstruction layer is augmented by a following residual layer in order to obtain (nearly) lossless reconstruction. The key advantages of our approach include an 'on-the-fly' determination of bit budget distribution between the lossy and the residual layers, freedom to use almost any progressive lossy video coding scheme as the first layer and an added feature of near-lossless compression. The second approach capitalizes on the fact that we can maintain the invertibility of MCTF with an arbitrary sub-pixel accuracy even in the presence of an extra truncation step for lossless reconstruction thanks to the lifting implementation. Experimental results show that the proposed schemes achieve compression ratios not obtainable by intra-frame coders such as Motion JPEG-2000 thanks to their inter-frame coding nature. Also they are shown to outperform the state-of-the-art non-scalable inter-frame coder H.264 (JM) lossless mode, with the added benefit of bitstream embeddedness.
机译:我们提出了两种可扩展的运动视频无损编码方法。它们基于基于子像素精确的MCTF的小波视频编码实现了SNR可扩展的比特流,达到无损重建。第一方法基于两阶段编码策略,其中有损重建层由以下残留层增强,以获得(几乎)无损重建。我们方法的关键优势包括“在飞行”的损失和剩余层之间的比特预算分布,自由使用几乎任何渐进的有损视频编码方案作为第一层和近无​​损的附加功能压缩。第二种方法利用了即使在存在额外的截断步骤的情况下,我们可以将MCTF的可逆性与任意子像素精度保持在额外的截断步骤的情况下,由于提升实现。实验结果表明,由于其帧间编码性质,所提出的方案实现了帧内帧编码器(如Motion JPEG-2000)的压缩比率。同样,它们显示出优于最先进的不可缩放的帧间编码器H.264(JM)无损模式,增加比特流嵌入的额外效益。

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