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A low-complexity iterative mode selection algorithm Forwyner-Ziv video compression

机译:低复杂性迭代模式选择算法FORWYNER-ZIV视频压缩

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Aiming at improving compression performance, we consider mode selection for Wyner-Ziv video compression where a block of pixels in a video frame, after discrete cosine transform(DCT), can be either encoded by using H.264 Intra mode or Wyner-Ziv(WZ) mode with side information processed at the decoder. Under the constraint of encoding complexity, an iterative algorithm is proposed to find the best partition of a video frame into these two modes in the sense of minimizing the overall compression rate. It is shown that the algorithm always converges. Experimental results on standard video test sequences show that by using the proposed algorithm for mode selection, one can achieve about 0.4dB gain for WZ-encoded frames over a WZ video compression system without intra mode at rate 0.2 bits per pixel. Furthermore, in all the experiments our algorithm converges in 3 iterations.
机译:旨在提高压缩性能,我们考虑Wyner-ziv视频压缩的模式选择,其中视频帧中的像素块,在离散余弦变换(DCT)之后,可以通过使用H.264帧内模式或Wyner-ziv( WZ)模式与解码器处理的侧面信息。在编码复杂性的约束下,提出了一种迭代算法,以在最小化整体压缩率的意义上找到视频帧的最佳分区。结果表明该算法总是收敛。标准视频测试序列的实验结果表明,通过使用所提出的模式选择算法,可以在WZ视频压缩系统上实现大约0.4dB的增益,而在每像素的速率0.2位以0.2比特的速率下模式。此外,在所有实验中,我们的算法在3个迭代中会聚。

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