DocumentCode :
250086
Title :
Fast channel switching for single-loop scalable HEVC
Author :
Van Wallendael, Glenn ; Staelens, Nicolas ; Van Leuven, Sebastiaan ; De Cock, Jan ; Lambert, Peter ; Demeester, Piet ; Van de Walle, Rik
Author_Institution :
Multimedia Lab., Ghent Univ., Ghent, Belgium
fYear :
2014
fDate :
27-30 Oct. 2014
Firstpage :
5991
Lastpage :
5995
Abstract :
In an IPTV environment, different techniques exist to provide faster random access or equivalently, a faster channel switching experience, but none of them provide backward compatibility and limited overhead at the same time. In this paper, a technique is proposed to increase the random access frequency for the High Efficiency Video Coding (HEVC) standard by using a single-loop scalable version of it. This is achieved by encoding an enhancement layer with a higher frequency of random access points compared to the base layer. With this scalable configuration, a backward compatible base stream remains present. The proposed technique requires 12.4% less bitrate compared to sending the fast and slow switching streams in a non-scalable way. Compared to the almost standardized multi-loop scalable extension of HEVC, 5.5% less bitrate is needed on the core of the IPTV network and 12.5% less bitrate on the access network during steady state conditions. Moreover, the multi-loop scalable extension does not provide backward compatibility with legacy HEVC decoders.
Keywords :
IPTV; decoding; video coding; HEVC decoder; IPTV network; access network; backward compatible base stream; encoding; enhancement layer; fast channel switching; high efficiency video coding; random access frequency; single-loop scalable HEVC; Bit rate; Decoding; IPTV; Steady-state; Streaming media; Switches; Video coding; Channel switching; High Efficiency Video Coding; random access; single-loop scalable compression;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing (ICIP), 2014 IEEE International Conference on
Conference_Location :
Paris
Type :
conf
DOI :
10.1109/ICIP.2014.7026209
Filename :
7026209
Link To Document :
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