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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Shared hardware, high throughput implementation of 2D 4 × 4 and 8 × 8 integer transform for H.264/AVC high-profile coders
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Shared hardware, high throughput implementation of 2D 4 × 4 and 8 × 8 integer transform for H.264/AVC high-profile coders

机译:共享硬件,针对H.264 / AVC高调编码器的2D 4×4和8×8整数转换的高吞吐量实现

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摘要

Two-dimensional discrete cosine transforms are used in the core transformations in all profiles of the H.264/Advanced video coding (AVC) standard. In this paper, implementing the resource sharing of high throughput 4 × 4 and 8 × 8 forward and inverse integer transforms for high definition H.264 is presented. It is shown that the 4 × 4 forward/inverse transform can be obtained from 8 × 8 forward/inverse transform using selective data input and data arrangement at intermediate stages. Fast 8 × 8 forward and inverse transform is implemented using matrix decomposition and matrix operation such as Kronecker product and direct sum. The proposed implementation does not require any transpose memory and has a dual clocked pipeline structure. Compared with existing designs, the gate count is reduced by 27.7% in the proposed design. The maximum operating frequency of the proposed system is approx. 1.3 GHz, while the throughput is 7 G and 18.7 G pixels/s for 4 × 4 and 8 × 8 forward integer transforms, respectively. The proposed design can be used for real time H.264/AVC high definition processing owing to its high throughput and low hardware cost.
机译:在H.264 /高级视频编码(AVC)标准的所有配置文件的核心转换中都使用了二维离散余弦变换。本文提出了针对高清H.264实现高吞吐量4×4和8×8正​​向和反向整数变换的资源共享。结果表明,使用中间阶段的选择性数据输入和数据排列,可以从8×8正向/反向变换获得4×4正向/反向变换。使用矩阵分解和矩阵运算(例如Kronecker乘积和直接和)可实现快速的8×8正向和反向变换。所提出的实现不需要任何转置存储器,并且具有双时钟流水线结构。与现有设计相比,该设计的门数减少了27.7%。拟议系统的最大工作频率约为。 1.3 GHz,而对于4×4和8×8正​​向整数变换,吞吐量分别为7 G和18.7 G像素/ s。所提出的设计由于其高吞吐量和低硬件成本而可用于实时H.264 / AVC高清晰度处理。

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