JOURNAL ARTICLE

Design of Irregular Repeat-Accumulate Coded Physical-Layer Network Coding for Gaussian Two-Way Relay Channels

Tao HuangTao YangJinhong YuanIngmar Land

Year: 2013 Journal:   IEEE Transactions on Communications Vol: 61 (3)Pages: 897-909   Publisher: IEEE Communications Society

Abstract

This paper addresses the design of irregular repeat accumulate (IRA) codes for coded physical-layer network coding (PNC) for the binary-input Gaussian two-way relay channel, assuming perfect synchronization and equal received power at the relay. The design is based on a nontrivial extension of EXIT-chart based design. Specifically, we analyze the components of the IRA-PNC scheme and propose an approach to model the soft information exchanged between these components. Then, we develop upper and lower bounds on the extrinsic information transfer functions to characterize the iterative process of computing the network-coded information. Based on that, we construct optimized IRA codes to minimize the computation error at the relay. The optimized IRA-PNC has considerable performance improvement over the existing regular RA coded PNC. For a rate 3/4 code, as an example, we observed improvements of 2.6 dB, and the optimized IRA-PNC scheme is only about 1.7 dB away from the capacity upper bound of the Gaussian two-way relay channel.

Keywords:
Relay EXIT chart Relay channel Computer science Algorithm Linear network coding Binary number Gaussian Binary symmetric channel Decoding methods Upper and lower bounds Topology (electrical circuits) Coding (social sciences) Information theory Low-density parity-check code Mathematics Block code Power (physics) Computer network Concatenated error correction code Arithmetic

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54
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9.41
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47
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0.98
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Citation History

Topics

Cooperative Communication and Network Coding
Physical Sciences →  Computer Science →  Computer Networks and Communications
Advanced Wireless Communication Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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