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Improved video coding efficiency exploiting tree-based pixelwise coding dependencies

机译:改进了视频编码效率利用基于树的PixelWive编码依赖性

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In a conventional hybrid video coding scheme, the choice of encoding parameters (motion vectors, quantization parameters, etc.) is carried out by optimizing frame by frame the output distortion for a given rate budget.While it is well known that motion estimation naturally induces a chain of dependencies among pixels, this is usually not explicitly exploited in the coding process in order to improve overall coding efficiency. Specifically,when considering a group of pictures with an IPPP... structure, each pixel of the first frame can be thought of as the root of a tree whose children are the pixels of the subsequent frames predicted by it. In this work,we demonstrate the advantages of such a representation by showing that, in some situations, the best motion vector is not the one that minimizes the energy of the prediction residual, but the one that produces a better tree structure, e.g., one that can be globally more favorable from a rate-distortion perspective. In this new structure, pixel with a larger descendance are allocated extra rate to produce higher quality predictors. As a proof of concept, we verify this assertion by assigning the quantization parameter in a video sequence, in such a way that pixels with a larger number of descendants are coded with a higher quality. In this way we are able to improve RD performance by nearly 1 dB. Our preliminary results suggest that a deeper understanding of the temporal dependencies can potentially lead to substantial gains in coding performance.
机译:在传统的混合视频编码方案中,通过帧优化帧的输出失真来执行编码参数(运动矢量,量化参数等)的选择,用于给定速率预算。众所周知,运动估计自然地诱导像素之间的依赖性链,这通常在编码过程中通常没有明确地利用,以提高整体编码效率。具体地,在考虑具有IPPP ...结构的一组图片时,第一帧的每个像素可以被认为是作为由其预测的后续帧的像素的树的根目录。在这项工作中,我们通过表明,在一些情况下,最佳运动向量不是最小化预测残余的能量的那种表示,而是产生更好的树结构的优点,但是在某些情况下,例如可以实现更好的树结构,例如一个从速率失真的角度来看,这可以全球更有利于。在这种新结构中,具有较大后断的像素被分配了额外的速率以产生更高质量的预测器。作为概念证明,我们通过在视频序列中分配量化参数来验证这种断言,以这样的方式以更高的质量编码具有较大数量的后代的像素。通过这种方式,我们能够通过近1 dB提高RD性能。我们的初步结果表明,对时间依赖性的更深入了解可能导致编码性能的大量收益。

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