DocumentCode :
2849968
Title :
Joint source-channel coding for deep space image transmission using rateless codes
Author :
Bursalioglu, Ozgun Y. ; Caire, Giuseppe ; Divsalar, Dariush
Author_Institution :
Ming Hsieh Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
fYear :
2011
fDate :
6-11 Feb. 2011
Firstpage :
1
Lastpage :
10
Abstract :
A new coding scheme for image transmission over noisy channel is proposed. Similar to standard image compression, the scheme includes a linear transform followed by embedded scalar quantization. Joint source-channel coding is implemented by optimizing the rate allocation across the source subbands, treated as the components of a parallel source model. The quantized transform coefficients are linearly mapped into channel symbols, using systematic linear encoders of appropriate rate. This fixed-to-fixed length “linear index coding” approach avoids the use of an explicit entropy coding stage (e.g., arithmetic or Huffman coding), which is typically non-robust to postdecoding residual errors. Linear codes over GF(4) codes are particularly suited for this application, since they are matched to the alphabet of the quantization indices of the dead-zone embedded quantizers used in the scheme, and to the QPSK modulation used on the deep-space communication channel. Therefore, we optimize a family of systematic Raptor codes over GF (4) that are particularly suited for this application since they allow for a continuum of coding rates, in order to adapt to the quantized source entropy rate (which may differ from image to image) and to channel capacity. Comparisons are provided with respect to the concatenation of state-of-the-art image coding and channel coding schemes used by Jet Propulsion Laboratories (JPL) for the Mars Exploration Rover (MER) Mission.
Keywords :
channel capacity; combined source-channel coding; image coding; linear codes; quadrature phase shift keying; GF(4) codes; QPSK modulation; channel capacity; deep space image transmission; deep-space communication channel; embedded scalar quantization; joint source-channel coding; linear index coding; linear transform; noisy channel; parallel source model; quantized source entropy rate; rate allocation; rateless code; systematic Raptor codes; systematic linear encoder; Decoding; Encoding; Entropy; Image coding; Phase shift keying; Quantization; Transforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Theory and Applications Workshop (ITA), 2011
Conference_Location :
La Jolla, CA
Print_ISBN :
978-1-4577-0360-7
Type :
conf
DOI :
10.1109/ITA.2011.5743568
Filename :
5743568
Link To Document :
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