DocumentCode
2650536
Title
On MPEG-2 decoding of noisy input data
Author
Matzner, R. ; Eck, Peter ; Xie Changsong
Author_Institution
Inst. for Commun. Eng., Fed. Armed Forces Univ. Munich, Neubiberg, Germany
Volume
3
fYear
1996
fDate
16-19 Sep 1996
Firstpage
751
Abstract
Due to the high compression ratio of the MPEG-2 video compression scheme, the effect of corrupted bits during transmission over a noisy channel is tremendously increased compared to uncompressed transmission. Moreover, due to the hierarchical structure of the MPEG-2 bitstream, the damage caused by channel noise depends on the position of the corrupted bit in the bitstream. Analysis shows that the most important (or most sensitive) bits are those of the MPEG-2 start codes. Loss of a start code usually causes the unrecoverable damage of an entire slice or even a whole sequence of pictures. An optimum detector for start codes is presented. In contrast to classical MPEG-2 decoders, this detector is based on the real-valued channel output (soft values), instead of already detected binary values (hard decisions). Performance analysis shows an SNR gain of about 6 dB compared to the classical hard decision detector
Keywords
code standards; data compression; decoding; noise; telecommunication channels; telecommunication standards; video coding; visual communication; MPEG-2 bitstream; MPEG-2 decoders; MPEG-2 decoding; MPEG-2 start codes; MPEG-2 video compression; SNR gain; channel noise; corrupted bit position; corrupted bits; hard decision detector; hierarchical structure; high compression ratio; noisy channel; noisy input data; optimum detector; performance analysis; real-valued channel output; soft decision detector; Casting; Decoding; Detectors; Image coding; Motion pictures; Pixel; Signal to noise ratio; Transform coding; Video compression; Video on demand;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing, 1996. Proceedings., International Conference on
Conference_Location
Lausanne
Print_ISBN
0-7803-3259-8
Type
conf
DOI
10.1109/ICIP.1996.560804
Filename
560804
Link To Document