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A butterfly structured design of the hybrid transform coding scheme

机译:混合变换编码方案的蝴蝶结构设计

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The hybrid transform coding scheme that alternates amongst the asymmetric discrete sine transform (ADST) and the discrete cosine transform (DCT) depending on the boundary prediction conditions, is an efficient tool for video and image compression. It optimally exploits the statistical characteristics of prediction residual, thereby achieving significant coding performance gains over the conventional DCT-based approach. A practical concern lies in the intrinsic conflict between transform kernels of ADST and DCT, which prevents a butterfly structured implementation for parallel computing. Hence the hybrid transform coding scheme has to rely on matrix multiplication, which presents a speed-up barrier due to under-utilization of the hardware, especially for larger block sizes. In this work, we devise a novel ADST-like transform whose kernel is consistent with that of DCT, thereby enabling butterfly structured computation flow, while largely retaining the performance advantages of hybrid transform coding scheme in terms of compression efficiency. A prototype implementation of the proposed butterfly structured hybrid transform coding scheme is available in the VP9 codec repository.
机译:根据边界预测条件在非对称离散正弦变换(ADST)和离散余弦变换(DCT)之间交替的混合变换编码方案是一种有效的视频和图像压缩工具。与传统的基于DCT的方法相比,它可以最佳地利用预测残差的统计特性,从而获得可观的编码性能。一个实际的问题在于ADST和DCT的转换内核之间的内在冲突,这阻止了并行计算采用蝶形结构的实现。因此,混合变换编码方案必须依赖于矩阵乘法,这由于硬件的未充分利用而呈现出加速障碍,尤其是对于较大的块大小而言。在这项工作中,我们设计了一种新颖的类似于ADST的变换,其内核与DCT的内核一致,从而实现了蝶形结构的计算流程,同时在压缩效率方面很大程度上保留了混合变换编码方案的性能优势。 VP9编解码器存储库中提供了所提出的蝴蝶结构化混合变换编码方案的原型实现。

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