Scalable video compression framework with adaptive multiresolution directional filter bank design

Lingchen Zhu, H. Xiong
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引用次数: 1

Abstract

Regarding orientation resolution as an isolated variable from scale, this paper proposes a dual (scale and orientation) multiresolution transform into scalable video coding (SVC) framework. By projecting 2D signals (textures and edges) onto nonuniformly divided orientation subspaces, the dual multiresolution SVC (DMSVC) can capture 2-D curve smoothness with less coefficients, and provide more flexible spatial decomposition structures than traditional wavelet-based SVC (WSVC). In the spatial decomposition module of DMSVC, the nonuniform directional distribution along scale of each frame is detected by phase congruency in the overcomplete wavelet domain. The corresponding orientational multi-resolution is achieved by nonuniform directional filter banks (NUDFB) which is fulfilled via a non-symmetric binary tree (NSBT) structured frequency division. The wavelet basis function in each scale is converted to an adaptive set of nonuniform directional basis by employing nonuniform directional filter banks. Experimental results validate a superior coding performance and visual quality over WSVC especially on those sequences full of directional edges and textures.
具有自适应多分辨率方向滤波器组设计的可扩展视频压缩框架
将方向分辨率作为独立于尺度的变量,提出了一种双(尺度和方向)多分辨率可缩放视频编码(SVC)框架。双多分辨率SVC (DMSVC)通过将二维信号(纹理和边缘)投影到非均匀划分的方向子空间上,以较少的系数捕获二维曲线的平滑性,并提供比传统小波SVC (WSVC)更灵活的空间分解结构。在DMSVC的空间分解模块中,利用过完备小波域的相位一致性检测每帧图像沿尺度的非均匀方向分布。通过非对称二叉树(NSBT)结构分频实现非均匀方向滤波器组(NUDFB)的定向多分辨率。采用非均匀方向滤波器组,将每个尺度上的小波基函数转换为一组自适应的非均匀方向基。实验结果验证了WSVC的编码性能和视觉质量,特别是在那些充满方向边缘和纹理的序列上。
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