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Classified Multifilter Up-Sampling Algorithm in Spatial Scalability for H.264/SVC Encoder

机译:H.264 / SVC编码器在空间可扩展性方面的分类多滤波器上采样算法

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摘要

H.264/scalable video coding (SVC) has spatial scalability which can provide various resolution sequences for a single encoded bit-stream. The various resolutions can be achieved by up-sampling a lower image resolution sequence. The up-sampling method employed in H.264/SVC is directly proportional to the video quality. In order to improve the video quality with an effective up-sampling method, we propose a classified multifilter up-sampling algorithm for H.264/SVC in spatial scalability which classifies an image region as edges and nonedges. An appropriate filter is then applied to up-sample the image. In the proposed scheme, we applied the Wiener filter for edges and conventional filter for nonedges within the defined window size to preserve the edges in the up-sampled image sequence. The experimental results show that the average peak signal-to-noise ratio improvement and bit-rate reduction are 0.5dB and 9%, respectively, which confirm that the performance of the proposed method is better than that of the existing H.264/SVC standard.
机译:H.264 /可伸缩视频编码(SVC)具有空间可伸缩性,可以为单个编码的比特流提供各种分辨率序列。可以通过对较低的图像分辨率序列进行上采样来获得各种分辨率。 H.264 / SVC中采用的上采样方法与视频质量成正比。为了通过有效的上采样方法提高视频质量,我们针对H.264 / SVC在空间可扩展性方面提出了一种分类的多滤波器上采样算法,该算法将图像区域分为边缘和非边缘。然后应用适当的滤镜对图像进行上采样。在提出的方案中,我们在定义的窗口大小内将Wiener滤波器应用于边缘,将常规滤波器应用于非边缘,以将边缘保留在上采样图像序列中。实验结果表明,平均峰值信噪比提高和比特率降低分别为0.5dB和9%,这证明了该方法的性能优于现有的H.264 / SVC标准。

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