H.264/AVC中的三维位置和幅度VLC编码

Junlin Li, G. Al-Regib, Dihong Tian, Pi Sheng Chang, Wen H. Chen
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引用次数: 0

摘要

混合变长编码(HVLC)是最近提出的一种新的基于分块的图像和视频压缩熵编码方案,它将每个变换块分成低频(LF)区和高频(HF)区进行不同编码。利用LF区域非零系数的聚类特性,提出了一种二维位置和一维幅度编码方案(2DP1DA),该方案将二维位置信息,即连续零值系数的运行和连续非零系数的运行,通过二维编码表进行联合编码。为了进一步提高编码效率,需要位置和幅度联合编码。本文提出了一种三维位置和振幅编码方案(3DPA),通过三维编码表对每个非零簇的位置和振幅信息进行联合编码。实验结果表明,与H.264中的CAVLC相比,采用3DPA编码LF区域的HVLC在宽量化参数(QP)范围内可以降低3.2%~3.7%的码率。此外,3DPA方案是一种紧凑的实现联合位置和幅度编码的方法,非常适合于上下文自适应HVLC设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3-D Position and Amplitude VLC Coding in H.264/AVC
Hybrid variable length coding (HVLC) was recently proposed as a novel entropy coding scheme for block-based image and video compression, which divides each transform block into low frequency (LF) region and high frequency (HF) region and codes them differently. To take advantage of the clustered nature of the nonzero coefficients in the LF region, a two-dimensional position and one-dimensional amplitude coding scheme (2DP1DA) was also proposed, which codes the 2D position information, i.e., run of consecutive zero-valued coefficients and run of consecutive nonzero coefficients, jointly by a 2D code table. To further improve the coding efficiency, joint position and amplitude coding is desirable. In this paper, we propose a three-dimensional position and amplitude coding scheme (3DPA) to jointly code the position and amplitude information for each nonzero cluster by a 3D code table. The experimental results show that HVLC with 3DPA for coding LF region achieves about 3.2%~3.7% bit rate reduction for a wide range of quantization parameters (QP) compared with CAVLC in H.264. Moreover, the 3DPA scheme is a compact way to realize the joint position and amplitude coding and it is very suitable for context-adaptive HVLC design.
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