DocumentCode :
2929438
Title :
An error resilience technique based on FMO and error propagation for H.264 video coding in error-prone channels
Author :
Vu, Tien Huu ; Aramvith, Supavadee
Author_Institution :
Dept. of Electr. Eng., Chulalongkorn Univ., Bangkok, Thailand
fYear :
2009
fDate :
June 28 2009-July 3 2009
Firstpage :
205
Lastpage :
208
Abstract :
Flexible macroblock ordering (FMO) is one of the new error resilience techniques in H.264 that can be used to mitigate the effects of error in error prone environments. Using FMO, each macroblock can be assigned independently to a certain slice group by using a macroblock allocation map(MBAmap). FMO tool depends on how the macroblocks are ordered, and various methods of reducing the error during MBAmap creation have been proposed. However, these methods usually focused on how to reduce the effects of error macroblocks within a frame while the issue of error propagation between frames has not been considered. This study concentrates on estimating the effects caused by the damaged macroblocks of the current frame to the next frame and the other macroblocks in the same slice group. These effects can be used in the evaluation of the macroblocks´ importance in the current frame, and a suitable map with a reduced effect of error propagation can be generated. Results show that this method has improvements in PSNR and the number of undecodable macroblocks when compared to the other methods that did not take the effects of inter-frame error propagation into consideration.
Keywords :
error compensation; motion compensation; telecommunication network reliability; video coding; wireless channels; FMO tool; H.264 video coding; MBAmap creation; PSNR; error macroblock allocation map; error reduction; error resilience technique; error-prone wireless channel; flexible macroblock ordering; interframe error propagation; motion compensation; slice group map; undecodable macroblock; Automatic repeat request; Automatic voltage control; Bit rate; Computational modeling; Decoding; Delay; Feedback; PSNR; Resilience; Video coding; Error Propagation; FMO; H.264; wireless channel;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Multimedia and Expo, 2009. ICME 2009. IEEE International Conference on
Conference_Location :
New York, NY
ISSN :
1945-7871
Print_ISBN :
978-1-4244-4290-4
Electronic_ISBN :
1945-7871
Type :
conf
DOI :
10.1109/ICME.2009.5202472
Filename :
5202472
Link To Document :
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