Linearly-Coupled Fountain Codes
Shenghao Yang, Soung Chang Liew, Lizhao You, Yi Chen

TL;DR
This paper introduces a low-complexity, linearly-coupled fountain coding scheme for network-coded multiple access systems, improving decoding efficiency and approaching optimal throughput.
Contribution
It proposes a novel batched belief propagation decoding algorithm for LC fountain codes, optimizing degree distributions and reducing decoding complexity.
Findings
Achieves near-optimal rate region through numerical optimization.
Reduces decoding complexity compared to Reed-Solomon and random linear codes.
Demonstrates potential for increased throughput and decreased delay.
Abstract
Network-coded multiple access (NCMA) is a communication scheme for wireless multiple-access networks where physical-layer network coding (PNC) is employed. In NCMA, a user encodes and spreads its message into multiple packets. Time is slotted and multiple users transmit packets (one packet each) simultaneously in each timeslot. A sink node aims to decode the messages of all the users from the sequence of receptions over successive timeslots. For each timeslot, the NCMA receiver recovers multiple linear combinations of the packets transmitted in that timeslot, forming a system of linear equations. Different systems of linear equations are recovered in different timeslots. A message decoder then recovers the original messages of all the users by jointly solving multiple systems of linear equations obtained over different timeslots. We propose a low-complexity digital fountain approach for…
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Taxonomy
TopicsCooperative Communication and Network Coding · Advanced Wireless Communication Technologies · Coding theory and cryptography
