提高变换视频编码的压缩效率

Jianyu Lin
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引用次数: 2

摘要

提出了一种不使用运动补偿的三维变换视频编码算法。在变换编码的各个关键步骤中,采用了更加独立、高效的算法。变换步骤采用谱压缩小波包(SCWP)。在量化步骤中,实现了一个修剪过程,它保留了有效传播技术的位分配函数,但独立于熵编码步骤。在熵编码步骤中,提出了一种基于二进制游程编码的熵编码方法。这种二值熵编码可以应用于多码源编码,当码源接近iid时,其效率界在码源熵的1.5%以内。基本上,所提出的变换视频编码算法的复杂性与二维静止图像变换编码算法相当。然而,在高压缩比特率下,它的压缩性能与HEVC有竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the compression efficiency for transform video coding
A new 3D transform video coding algorithm is introduced, which does not use motion compensation. More independent and highly efficient algorithms are employed for each key step of the transform coding. For the transform step, the SCWP (Spectral Condensed Wavelet Packet) is adopted. For the quantization step, a trimming process is implemented, which keeps the bit allocation function of the significant propagation technique but is independent from the entropy coding step. For the entropy coding step, a novel entropy coding technique based upon binary run-length coding is proposed. This binary entropy coding can be applied to multiple symbol source coding, and it approaches an optimal efficiency bound which is within 1.5% of the source entropy when the source approaches iid. Principally, the complexity of the proposed transform video coding algorithm is comparable to that of a 2D still image transform coding algorithm. However, its compression performance is competitive to HEVC at high compression bitrates.
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