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In Search of “Better-than-DCT” Unitary Transforms for Encoding of Residual Signals

机译:寻找“优于DCT””变换来编码残留信号

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It is well known that the discrete cosine transform (DCT) closely approximates the optimal Karhunen-Loève transform (KLT) under the first-order stationary Markov condition with a strong inter-pixel correlation. However, if the inter-pixel correlation is weak or becomes negative, transforms other than the DCT would possibly become better. In this letter, we present a design framework for finding new unitary transforms according to two principles: 1) they are indeed more efficient than the DCT in encoding of signals with a weak or negative inter-pixel correlation (e.g., the residual signals after motion-compensation or intra- prediction) and 2) each has a fixed transform matrix (i.e., signal-independent) and can be implemented as efficiently as the DCT. Some of the new transforms will be used to demonstrate an improved R-D performance in the video coding scenario.
机译:众所周知,离散余弦变换(DCT)在像素间相关性强的一阶平稳马尔可夫条件下,非常接近最佳Karhunen-Loève变换(KLT)。但是,如果像素间相关性较弱或为​​负,则DCT以外的其他变换可能会变得更好。在这封信中,我们提出了一个根据两个原理来寻找新的unit变换的设计框架:1)在对像素间相关性较弱或为​​负的信号(例如,运动后的残留信号)进行编码时,它们确实比DCT更有效。 -补偿或帧内预测)和2)各自具有固定的变换矩阵(即,与信号无关),并且可以与DCT一样有效地实现。一些新的转换将用于演示视频编码方案中改进的R-D性能。

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