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Adaptation of H.264/AVC Predictions for enabling Fast Transrating

机译:适应H.264 / AVC预测,使能快速转换

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Fast video transrating algorithms for DCT-based video coding standards have proven their efficiency in many applications and are widely used in the industry. However, they cannot be re-used for H.264/AVC because they introduce an unacceptable level of drift. To settle this issue, this paper proposes to adapt the H.264/AVC predictions by separately processing the DC component from the other AC coefficients. This allows the drift to be removed from the requantization transrating algorithms. Experimental results show the amount of bits in our prediction scheme is only increased by 2.46 % for CIF and 1.87% for 720p in Intra in comparison with the H.264/AVC codec under the same PSNR. The performance of the fast transrating algorithms applied on streams generated with our method are improved dramatically, allowing to directly compete with the best in class, but computation load demanding Cascaded Pixel Domain decode and recode Transcoding (CPDT) architecture. Additionally, one potential application induced by this new prediction principle is the partial decoding of video streams to obtain reduced size images.
机译:基于DCT的视频编码标准的快速视频转换算法证明了它们在许多应用中的效率,并且广泛用于行业。但是,他们不能重新使用H.264 / AVC,因为它们引入了一个不可接受的漂移水平。要解决此问题,本文提出通过将DC分量与其他AC系数单独处理,调整H.264 / AVC预测。这允许从需求化转换算法中移除漂移。实验结果表明,与同一PSNR下的H.264 / AVC编解码器相比,CIF的预测方案中的比特数量仅增加2.46%,帧内720p intra。应用于我们方法生成的流的快速转换算法的性能显着提高,允许直接与课堂上最好的竞争,但计算负载要求级联像素域解码和重新介绍转码(CPDT)架构。另外,通过这种新预测原理引起的一个潜在应用是视频流的部分解码,以获得减小的尺寸图像。

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