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FITD: Fast Intra Transcoding from H.264/AVC to high efficiency video coding based on DCT coefficients and prediction modes

机译:FITD:基于DCT系数和预测模式的从H.264 / AVC到高效视频编码的快速帧内转码

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In the literatures, the designs of H.264 to High Efficiency Video Coding (HEVC) transcoders mostly focus on inter transcoding. In this paper, a fast intra transcoding system from H.264 to HEVC based on discrete cosine transform (DCT) coefficients and intra prediction modes, called FITD, is proposed by using the intra information retrieved from an H.264 decoder for transcoding. To design effective transcoding strategies, FITD not only refers block size of intra prediction and intra prediction modes, but also effectively uses the DCT coefficients to help a transcoder to predict the complexity of the blocks. We successfully use DCT coefficients as well as intra prediction information embedded in H.264 bitstreams to predict the coding depth map for depth limitation and early termination to simplify HEVC re-encoding process. After a HEVC encoder gets the prediction of a certain CU size from depth map, if it reaches the predicted depth, the HEVC encoder will stop the next CU branch. As a result, the numbers of CU branches and predictions in HEVC re-encoder will be substantially reduced to achieve fast and precise intra transcoding. The experimental results show that the FITD is 1.7-2.5 times faster than the original HEVC in encoding intra frames, while the bitrate is only increased to 3% or less and the PSNR degradation is also controlled within 0.1 dB. Compared to the previous H.264 to HEVC transcoding approaches, FITD clearly maintains the better trade-off between re-encoding speed and video quality. (C) 2016 Elsevier Inc. All rights reserved.
机译:在文献中,H.264到高效视频编码(HEVC)转码器的设计主要集中于帧间转码。本文提出了一种基于离散余弦变换(DCT)系数和帧内预测模式的,从H.264到HEVC的快速帧内转码系统,即FITD。为了设计有效的代码转换策略,FITD不仅参考帧内预测和帧内预测模式的块大小,而且还有效地使用DCT系数来帮助代码转换器预测块的复杂度。我们成功地使用DCT系数以及嵌入在H.264比特流中的帧内预测信息来预测深度​​限制和提前终止的编码深度图,以简化HEVC重编码过程。 HEVC编码器从深度图获得某个CU尺寸的预测后,如果达到预测深度,HEVC编码器将停止下一个CU分支。结果,HEVC重新编码器中的CU分支和预测的数量将被大大减少,以实现快速和精确的帧内转码。实验结果表明,在对帧内进行编码时,FITD比原始HEVC快1.7-2.5倍,而比特率仅增加到3%或更小,PSNR降级也控制在0.1 dB之内。与以前的从H.264到HEVC的代码转换方法相比,FITD显然在重新编码速度和视频质量之间保持了更好的权衡。 (C)2016 Elsevier Inc.保留所有权利。

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