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An efficient component-separable inter layer interpolation scheme applied in scalable video coding

机译:一种高效的可分离组件的层间插值方案,应用于可伸缩视频编码

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摘要

Recently, active research has conducted on a new emerging video coding standard, scalable video coding (SVC), which adopts a layered coding scheme to generate a multi-layered bit stream for heterogeneous environments. One of the most important features of SVC is the utilization of inter layer prediction coding, and the coding efficiency will be greatly dependent on the design of the inter layer interpolation scheme. In the current working draft, a uniform up-sampling filter is employed which aims to achieve high interpolated precision for both luma and chroma components of coded images, but this results in extremely unnecessary computational complexity which prevents it from being put to practical use. To overcome this, an efficient component-separable inter layer interpolation scheme is proposed in this paper. Based on the basic characteristic of human vision system, this proposed scheme intends to assign suitable filters for different components according to their sensitivities for human eyes. In particular, the 6-tap filter is retained for the luma component but for chroma components, much more simplified filters such as 2-tap and 4-tap filter should be used instead. Experimental results show that when compared with the original scheme, the proposed scheme significantly reduces the computational complexity by saving on coding time while holding the coded bit-rate and PSNR performance. Therefore, this scheme can be applied in the spatial interpolation of scalable video coding.
机译:最近,对新出现的视频编码标准可伸缩视频编码(SVC)进行了积极的研究,该标准采用分层编码方案为异构环境生成多层比特流。 SVC的最重要特征之一是层间预测编码的利用,并且编码效率将极大地取决于层间插值方案的设计。在当前的工作草案中,采用了统一的上采样滤波器,该滤波器的目的是对编码图像的亮度和色度分量都实现较高的内插精度,但是这导致极其不必要的计算复杂性,从而使其无法投入实际使用。为了克服这个问题,本文提出了一种有效的组件可分离的层间插值方案。基于人类视觉系统的基本特性,该方案旨在根据对人眼的敏感性为不同的组件分配合适的滤镜。特别是,对于亮度分量保留了6抽头滤波器,但对于色度分量,应使用更简化的滤波器,例如2抽头和4抽头滤波器。实验结果表明,与原始方案相比,该方案在保持编码比特率和PSNR性能的同时,通过节省编码时间,显着降低了计算复杂度。因此,该方案可以应用于可伸缩视频编码的空间内插。

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