DocumentCode :
2298501
Title :
High-Rate Analysis of Systematic Lossy Error Protection of a Predictively Encoded Source
Author :
Rane, Shantanu ; Rebollo-Monedero, David ; Girod, Bernd
Author_Institution :
Lab. of Inf. Syst., Stanford Univ., CA
fYear :
2007
fDate :
27-29 March 2007
Firstpage :
263
Lastpage :
272
Abstract :
We consider a first-order Markov source, which is predictively encoded using a DPCM-style encoder. The quantized compressed prediction residual is transmitted over an erasure channel. Additionally, a Wyner-Ziv encoded version of the prediction residual is transmitted in order to provide error resilience. When the symbols from the first transmission are erased by the channel, this second description is decoded, and limits the maximum distortion that can occur. Since the quantization step size used in the second description is, in general, larger than that used in the main transmission, error protection is lossy. Using high-rate quantization theory, we derive expressions for the rate and the end-to-end distortion incurred by this system. We show that, compared to conventional lossless forward error correction, this lossy error protection scheme is robust in the sense that it allows the received signal quality to degrade gracefully when the erasure probability increases
Keywords :
Markov processes; combined source-channel coding; forward error correction; image coding; visual communication; DPCM-style encoder; Wyner-Ziv encoded version; erasure channel; first-order Markov source; forward error correction; high-rate quantization theory; lossy error protection scheme; predictively encoded source; quantized compressed prediction; systematic lossy error protection; Decoding; Degradation; Error correction; Forward error correction; Propagation losses; Protection; Quantization; Resilience; Robustness; Video compression;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 2007. DCC '07
Conference_Location :
Snowbird, UT
ISSN :
1068-0314
Print_ISBN :
0-7695-2791-4
Type :
conf
DOI :
10.1109/DCC.2007.45
Filename :
4148765
Link To Document :
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