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Fountain coding with decoder side information

Abstract:
In this contribution, we consider the application of Digital Fountain (DF) codes to the problem of data transmission when side information is available at the decoder. The side information is modelled as a "virtual" channel output when original information sequence is the input. For two cases of the system model, which model both the virtual and the actual transmission channel either as a binary erasure channel or as a binary input additive white Gaussian noise (BIAWGN) channel, we propose methods of enhancing the design of standard non-systematic DF codes by optimizing their output degree distribution based on the side information assumption. In addition, a systematic Raptor design has been employed as a possible solution to the problem. ©2008 IEEE.

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Publisher copy:
10.1109/ICC.2008.840

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Host title:
IEEE International Conference on Communications
Pages:
4477-4482
Publication date:
2008-01-01
DOI:
ISSN:
0536-1486
ISBN:
9781424420742


Pubs id:
pubs:487766
UUID:
uuid:158662d1-a6eb-4aa9-b72a-56f9bd19a71f
Local pid:
pubs:487766
Source identifiers:
487766
Deposit date:
2014-11-11
ARK identifier:

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