DocumentCode
1594771
Title
Joint Source-Channel Coding at the Application Layer
Author
Bursalioglu, O.Y. ; Fresia, M. ; Caire, G. ; Poor, H.V.
Author_Institution
Ming Hsieh Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA
fYear
2009
Firstpage
93
Lastpage
102
Abstract
The multicasting of an independent and identically distributed Gaussian source over a binary erasure broadcast channel is considered. This model applies to a one-to-many transmission scenario in which some mechanism at the physical layer delivers information packets with losses represented by erasures, and users are subject to different erasure probabilities. The reconstruction signal-to-noise ratio (SNR) region achieved by concatenating a multiresolution source code with a broadcast channel code is characterized and four convex optimization problems corresponding to different performance criteria are solved. Each problem defines a particular operating point on the dominant face of the SNR region. Layered joint source-channel codes are constructed based on the concatenation of embedded scalar quantizers with binary raptor encoders. The proposed schemes are shown to operate very close to the theoretical optimum.
Keywords
Gaussian channels; Gaussian distribution; binary codes; broadcast channels; combined source-channel coding; convex programming; SNR; application layer; binary erasure broadcast channel; binary raptor encoder; convex optimization problem; embedded scalar quantizer; erasure probability; identically distributed Gaussian source; information-theoretic model; joint source-channel coding; one-to-many transmission scenario; performance criteria; signal-to-noise ratio region reconstruction; Broadcasting; Channel capacity; Data compression; Decoding; Delay; Forward error correction; Multimedia communication; Physical layer; Quantization; Streaming media;
fLanguage
English
Publisher
ieee
Conference_Titel
Data Compression Conference, 2009. DCC '09.
Conference_Location
Snowbird, UT
ISSN
1068-0314
Print_ISBN
978-1-4244-3753-5
Type
conf
DOI
10.1109/DCC.2009.10
Filename
4976453
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