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Directional Filtering Transform for Image/Intra-Frame Compression

机译:图像/帧内压缩的方向滤波变换

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While directional adaption is introduced into traditional transforms, different orders of two 1-D transforms will result in different results of one 2-D transform. Based upon an anisotropic image model, this paper analyzes the effect of transform orders in terms of theoretical coding gain. Our results reveal that the transform orders have little effect on the coding gain with full decomposition, good directional modes and good interpolation. However, in practical compression schemes, since high-pass bands are not decomposed fully because of the consideration on complexity, different transform orders have different coding performances, which can be solved by an adaptive transform order. Motivated by our analyzed results, a directional filtering transform (dFT, in order to distinguish from the common usage on DFT) is proposed in this paper to better exploit correlations among samples in H.264 intraframe coding. It provides an evenly distributed set of prediction modes with an adaptive transform order. Both interblock and intrablock correlations are exploited in this scheme. Experimental results in H.264 intraframe coding demonstrate its superiority both objectively and subjectively.
机译:虽然在传统变换中引入了方向适应,但是两个一维变换的不同阶数将导致一个二维变换的结果不同。基于各向异性图像模型,本文从理论编码增益的角度分析了变换阶数的影响。我们的结果表明,在完全分解,良好的方向模式和良好的插值的情况下,变换阶数对编码增益的影响很小。然而,在实际的压缩方案中,由于考虑到复杂性,高通频带不能完全分解,因此不同的变换阶具有不同的编码性能,这可以通过自适应变换阶来解决。基于分析结果,本文提出了方向性滤波变换(dFT,以区别于DFT的常用用法),以更好地利用H.264帧内编码中样本之间的相关性。它提供了具有自适应变换顺序的一组均匀分布的预测模式。在该方案中利用了块间和块内相关。 H.264帧内编码的实验结果在主观和客观上都证明了其优越性。

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