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A spectral approach to recursive end-to-end distortion estimation for sub-pixel motion-compensated video coding

机译:一种用于子像素运动补偿视频编码的递归端到端失真估计的频谱方法

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Error resilient video coding critically relies on the accuracy of end-to-end distortion estimation. An established solution, the recursive optimal per-pixel estimate (ROPE), is based on tracking the first and second moments of the decoder reconstructed pixels. This paper is focused on an alternative estimation approach, the spectral coefficient-wise optimal recursive estimate (SCORE), whose recursion is performed in the transform domain. The SCORE formulation is extended to derive a new technique for effective end-to-end distortion estimation, which accounts for sub-pixel motion compensation. Specifically, this technique exploits properties of the transform, such as coefficient de-correlation and energy compaction, to overcome ROPE's remaining shortcoming due to the proliferation of cross-correlation terms requiring excessive complexity or relatively crude approximations. Experiments show that the accuracy of SCORE matches ROPE in the full-pixel motion compensation setting, where ROPE is known to be optimal. More importantly, in the problematic setting of sub-pixel motion compensation, SCORE substantially outperforms ROPE and yields highly accurate distortion estimation.
机译:误差弹性视频编码依稀依赖于端到端失真估计的精度。建立的解决方案,递归最佳的每个像素估计(绳索)基于跟踪解码器重建像素的第一和第二矩。本文专注于替代估计方法,光谱系数 - 明智的最佳递归估计(得分),其递归在变换域中进行。分数配方扩展以推导出用于有效端到端失真估计的新技术,其考虑了子像素运动补偿。具体地,该技术利用变换的性质,例如系数去相关性和能量压实,以克服绳索的剩余缺点,因为需要过度复杂度或相对粗略近似的互相关术语的增殖。实验表明,评分的准确性与全像素运动补偿设置中的绳索匹配,其中已知绳索是最佳的。更重要的是,在子像素运动补偿的有问题的设置中,得分基本上优于绳索并产生高精度的失真估计。

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