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Efficient Integer DCT Architectures for HEVC

机译:适用于HEVC的高效整数DCT架构

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摘要

In this paper, we present area- and power-efficient architectures for the implementation of integer discrete cosine transform (DCT) of different lengths to be used in High Efficiency Video Coding (HEVC). We show that an efficient constant matrix-multiplication scheme can be used to derive parallel architectures for 1-D integer DCT of different lengths. We also show that the proposed structure could be reusable for DCT of lengths 4, 8, 16, and 32 with a throughput of 32 DCT coefficients per cycle irrespective of the transform size. Moreover, the proposed architecture could be pruned to reduce the complexity of implementation substantially with only a marginal affect on the coding performance. We propose power-efficient structures for folded and full-parallel implementations of 2-D DCT. From the synthesis result, it is found that the proposed architecture involves nearly 14% less area-delay product (ADP) and 19% less energy per sample (EPS) compared to the direct implementation of the reference algorithm, on average, for integer DCT of lengths 4, 8, 16, and 32. Also, an additional 19% saving in ADP and 20% saving in EPS can be achieved by the proposed pruning algorithm with nearly the same throughput rate. The proposed architecture is found to support ultrahigh definition 7680$,times,$ 4320 at 60 frames/s video, which is one of the applications of HEVC.
机译:在本文中,我们提出了面积和功率高效的体系结构,用于实现要在高效视频编码(HEVC)中使用的不同长度的整数离散余弦变换(DCT)。我们展示了一种有效的常数矩阵乘法方案可用于得出不同长度的一维整数DCT的并行体系结构。我们还表明,所提出的结构对于长度为4、8、16和32的DCT可以重复使用,每个周期的吞吐量为32个DCT系数,而与变换大小无关。此外,可以修剪提出的体系结构以实质上仅对编码性能有少量影响就降低实现的复杂性。我们为2D DCT的折叠和全并行实现提出了节能结构。从综合结果发现,与整数型DCT的参考算法的直接实现相比,与参考算法的直接实现相比,所提出的体系结构所涉及的面积延迟积(ADP)减少了近14%,每样本能量(EPS)减少了19%。长度4、8、16和32。此外,通过拟议的修剪算法可以以几乎相同的吞吐率实现19%的ADP节省和20%的EPS节省。发现所提出的体系结构在60帧/秒的视频上支持超高清7680×4320美元,这是HEVC的应用之一。

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