Choi S J, Woods J W
Center for Image Process. Res., Rensselaer Polytech. Inst., Troy, NY 12180-3590, USA.
IEEE Trans Image Process. 1999;8(2):155-67. doi: 10.1109/83.743851.
This paper describes a video coding system based on motion-compensated three-dimensional (3-D) subband/wavelet coding (MC-3DSBC), which can overcome the limits of both 3-D SBC and MC prediction-based coding. In this new system, spatio-temporal subbands are generated by MC temporal analysis and a spatial wavelet transform, and then encoded by 3-D subband-finite state scalar quantization (3DSB-FSSQ). The rate allocation from the GOP level to each class of subbands is optimized by utilizing the structural property of MC-3DSBC that additive superposition approximately holds for both rate and distortion. The proposed video coding system is applied to several test video clips. Its performance exceeds that of both a known MPEG-1 implementation and a similar subband MC predictive coder while maintaining modest computational complexity and memory size.
本文描述了一种基于运动补偿三维(3-D)子带/小波编码(MC-3DSBC)的视频编码系统,该系统可以克服3-D SBC和基于MC预测的编码的局限性。在这个新系统中,时空子带通过MC时间分析和空间小波变换生成,然后由3-D子带有限状态标量量化(3DSB-FSSQ)进行编码。通过利用MC-3DSBC的结构特性(即速率和失真近似满足加性叠加),从GOP级别到每个子带类别的速率分配得到优化。所提出的视频编码系统应用于几个测试视频片段。它的性能超过了已知的MPEG-1实现和类似的子带MC预测编码器,同时保持了适度的计算复杂度和内存大小。