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Implicit Line-Based Intra 16 × 16 Prediction for H.264/AVC High-Quality Video Coding

机译:基于隐式行的H.264 / AVC高质量视频编码的帧内16×16预测

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摘要

In this paper, we propose an implicit line-based linear intra 16 × 16 prediction method for high-quality video coding. Typically, in H.264/AVC intra 16 × 16 vertical and horizontal prediction modes, 256 pixels in the current macroblock are predicted using 16 adjacent boundary pixels of reconstructed neighboring macroblocks. One problem of such a block-based intra prediction is that the prediction error increases as the distance between the reference and current pixels increases. Thus, the prediction accuracy of intra 16×16 vertical and horizontal modes is not sufficient for the mode decision stage. To ensure that the pixels are close to their predictor, we propose a new implicit intra prediction scheme, which makes full use of the correlation between lines instead of blocks. In the proposed method, we perform prediction, transformation, quantization, and reconstruction using the line-of-pixels (LOP) to improve the prediction accuracy. Experimental results show that the proposed algorithm provides an approximately 6.42 % bit-rate reduction compared to the H.264/AVC FRExt high profile, while maintaining the same decoding quality.
机译:在本文中,我们提出了一种基于行的隐式线性帧内16×16预测方法,用于高质量视频编码。通常,在H.264 / AVC帧内16×16垂直和水平预测模式中,使用重建的相邻宏块的16个相邻边界像素预测当前宏块中的256个像素。这种基于块的帧内预测的一个问题是,随着参考像素与当前像素之间的距离增大,预测误差增大。因此,帧内16×16垂直和水平模式的预测精度不足以用于模式判定阶段。为了确保像素接近其预测变量,我们提出了一种新的隐式帧内预测方案,该方案充分利用了行之间的相关性而不是块。在提出的方法中,我们使用像素线(LOP)进行预测,变换,量化和重建,以提高预测精度。实验结果表明,与H.264 / AVC FRExt高配置文件相比,该算法可减少约6.42%的比特率,同时保持相同的解码质量。

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