In this paper, we propose a novel rateless multiple access scheme based on the recently proposed capacity-approaching analog fountain code (AFC). We show that the multiple access process will create an equivalent analog fountain code, referred to as the multiple access analog fountain code (MA-AFC), at the destination. Thus, the standard belief propagation (BP) decoder can be effectively used to jointly decode all the users. We further analyze the asymptotic performance of the BP decoder by using a density evolution approach and show that the average log-likelihood ratio (LLR) of each user's information symbol is proportional to its transmit signal to noise ratio (SNR), when all the users utilize the same AFC code. Simulation results show that the proposed scheme can approach the sum-rate capacity of the Gaussian multiple access channel in a wide range of signal to noise ratios.
Multiple access analog fountain codes
M. Shirvanimoghaddam,Yonghui Li,B. Vucetic
Published 2014 in 2014 IEEE International Symposium on Information Theory
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- Publication year
2014
- Venue
2014 IEEE International Symposium on Information Theory
- Publication date
2014-04-08
- Fields of study
Mathematics, Computer Science, Engineering
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