Design and Analysis of Online Fountain Codes for Intermediate Performance

01/17/2020
by   Jingxuan Huang, et al.
0

For the benefit of improved intermediate performance, recently online fountain codes attract much research attention. However, there is a trade-off between the intermediate performance and the full recovery overhead for online fountain codes, which prevents them to be improved simultaneously. We analyze this trade-off, and propose to improve both of these two performance. We first propose a method called Online Fountain Codes without Build-up phase (OFCNB) where the degree-1 coded symbols are transmitted at first and the build-up phase is removed to improve the intermediate performance. Then we analyze the performance of OFCNB theoretically. Motivated by the analysis results, we propose Systematic Online Fountain Codes (SOFC) to further reduce the full recovery overhead. Theoretical analysis shows that SOFC has better intermediate performance, and it also requires lower full recovery overhead when the channel erasure rate is lower than a constant. Simulation results verify the analyses and demonstrate the superior performance of OFCNB and SOFC in comparison to other online fountain codes.

READ FULL TEXT

page 2

page 4

page 7

page 16

page 22

page 24

page 27

page 29

research
09/29/2021

Quadratic-Curve-Lifted Reed-Solomon Codes

Lifted codes are a class of evaluation codes attracting more attention d...
research
05/13/2020

Improved Computation-Communication Trade-Off for Coded Distributed Computing using Linear Dependence of Intermediate Values

In large scale distributed computing systems, communication overhead is ...
research
02/02/2021

Permute Add Network Codes via Group Algebras

A class of network codes have been proposed in the literature where the ...
research
01/09/2018

Channel Estimation with Systematic Polar Codes

Study of polar codes in fading channels is of great importance when appl...
research
06/09/2020

Hermitian-Lifted Codes

In this paper, we construct codes for local recovery of erasures with hi...
research
07/07/2022

Finite-rate sparse quantum codes aplenty

We introduce a methodology for generating random multi-qubit stabilizer ...

Please sign up or login with your details

Forgot password? Click here to reset