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李轶夫, 蒋毅飞, 陈李维, 刘宏伟. HEVC分像素插值与自适应环路滤波融合结构设计[J]. 计算机辅助设计与图形学学报, 2014, 26(3): 493-501.
引用本文: 李轶夫, 蒋毅飞, 陈李维, 刘宏伟. HEVC分像素插值与自适应环路滤波融合结构设计[J]. 计算机辅助设计与图形学学报, 2014, 26(3): 493-501.
Li Yifu, Jiang Yifei, Chen Liwei, Liu Hongwei. A Fused Architecture for Sub-Pixel Interpolation and Adaptive Loop Filter in HEVC[J]. Journal of Computer-Aided Design & Computer Graphics, 2014, 26(3): 493-501.
Citation: Li Yifu, Jiang Yifei, Chen Liwei, Liu Hongwei. A Fused Architecture for Sub-Pixel Interpolation and Adaptive Loop Filter in HEVC[J]. Journal of Computer-Aided Design & Computer Graphics, 2014, 26(3): 493-501.

HEVC分像素插值与自适应环路滤波融合结构设计

A Fused Architecture for Sub-Pixel Interpolation and Adaptive Loop Filter in HEVC

  • 摘要: 在高效率视频编码 (HEVC) 的解码过程中, 分像素插值和自适应环路滤波 (ALF) 是计算密集度最高的2个环节.针对传统的滤波器设计方法学在硬件资源优化方面存在的不足, 提出一种HEVC分像素插值与ALF融合的滤波结构设计.通过分析传统滤波结构及其相应算法, 利用改进的ALF结构处理分像素插值的垂直滤波运算, 简化了分像素插值结构并降低了整体硬件开销.实验结果表明, 该设计可满足HEVC标准HDTV 1080p (1920×1080@30fps) 分辨率视频解码的实时性要求, 同时其电路总面积在传统设计方案的基础上减少了28%.

     

    Abstract: In decoding process of High Efficiency Video Coding (HEVC), sub-pixel interpolation and Adaptive Loop Filter (ALF) are the two most computation-intensive parts.Aiming at the hardware inefficiency caused by existing filter design methodology, a fused architecture for sub-pixel interpolation and ALF is presented.Based on the analysis of both the filter architectures and their corresponding algorithms, the proposed design utilizes a modified ALF architecture to process the vertical filtering operations of sub-pixel interpolation, and so that it simplifies the sub-pixel interpolator and reduces the overall hardware overhead.Experimental results show that the novel architecture fulfills the real-time requirements of decoding HEVC videos in HDTV 1080p (1920×1080 @30fps) resolution and its circuit area is decreased by 28%comparing to the conventional methods.

     

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