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Improved spatio-SNR FGS video coding scheme using motion compensation on enhancement-lay

机译:在增强层上使用运动补偿的改进的空间SNR FGS视频编码方案

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摘要

MPEG-4 fine-granularity-scalable (FGS) technology is an effective solution to resolve the network bandwidth varying because FGS provides very fine granular SNR scalability. However, this scalability is obtained with sacrifice of coding efficiency. An one-loop FGS structure is presented based on motion compensation (MC + FGS) to improve the coding efficiency of base FGS. Then it describes and discusses the hybrid spatial-SNR FGS (FGSS) structure that extends SNR scalability of FGS to spatial scalability (spatio-SNR scalability). FGSS structure inherent the low coding efficiency of FGS structure. Combining MC + FGS structure with FGSS structure, a structure of MC + FGSS structure is obtained which acquires both structures'' advantages and counteracts both structures'' defects. Experimental results prove the MC + FGSS structure not only obtains fine granular spatio-SNR scalability, but also achieves high coding efficiency.
机译:MPEG-4细粒度可缩放(FGS)技术是解决网络带宽变化的有效解决方案,因为FGS提供了非常好的细粒度SNR可伸缩性。但是,这种可扩展性是在牺牲编码效率的情况下获得的。提出了一种基于运动补偿(MC + FGS)的单循环FGS结构,以提高基本FGS的编码效率。然后,它描述和讨论了将FGS的SNR可伸缩性扩展到空间可伸缩性(空间SNR可伸缩性)的混合空间SNR FGS(FGSS)结构。 FGSS结构固有的FGS结构编码效率低。将MC + FGSS结构与FGSS结构相结合,获得了一种MC + FGSS结构,既获得了结构的优势,又消除了结构的缺陷。实验结果证明,MC + FGSS结构不仅具有良好的粒度空间信噪比可扩展性,而且还具有较高的编码效率。

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