Title :
Motion-compensated layered video coding for playback scalability
Author :
Lee, Jae-Yong ; Oh, Hyo-Sub ; Ko, Sung-Jea
Author_Institution :
R&D Center, Serome Technol. Inc., Seoul, South Korea
fDate :
5/1/2001 12:00:00 AM
Abstract :
We propose a multilayered video coding scheme based on motion estimation which enables a decoder to dynamically change its temporal and spatial resolution during playback. In the proposed scheme, a new motion-prediction structure with a temporal hierarchy of frames is adopted to afford temporal resolution scalability and the wavelet decomposition with a new intra-update algorithm is used to offer spatial scalability. Experimental results show that the proposed scheme exhibits a higher compression ratio than conditional replenishment schemes because it further reduces the temporal redundancy using motion estimation. Also the proposed intra-update technique enables adaptation to dynamic change of spatial resolution with the effective follow-up of prediction in the decoder while preventing the large peaks in bit rate. Therefore, the proposed scheme is expected to be effectively used in heterogeneous environments such as the Internet, ATM, and wireless networks where dynamic scalability and interoperability are required
Keywords :
data compression; decoding; image resolution; motion compensation; motion estimation; prediction theory; transform coding; video coding; wavelet transforms; ATM; Internet; bit rate; compression ratio; conditional replenishment; decoder; dynamic scalability; heterogeneous environments; interoperability; intra-update algorithm; motion estimation; motion-compensated layered video coding; motion-prediction structure; multilayered video coding; playback scalability; spatial resolution scalability; temporal frame hierarchy; temporal redundancy reduction; temporal resolution scalability; wavelet decomposition; wireless networks; Bit rate; Decoding; Dispersion; IP networks; Motion estimation; Scalability; Spatial resolution; Streaming media; Video coding; Wireless networks;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on