University of Wollongong
Browse

An auxiliary variable-aided hybrid message passing approach to joint channel estimation and decoding for MIMO-OFDM

journal contribution
posted on 2024-11-16, 02:40 authored by Zhengdao Yuan, Chuanzong Zhang, Zhongyong Wang, Qinghua GuoQinghua Guo, Jiangtao XiJiangtao Xi
This letter deals with message passing receiver design for joint channel estimation and decoding in MIMO-OFDM with unknown noise variance. The conventional factor graph representation for the system involves observation factors, which are functions of a number of variables in the form of multiplication and summation. In this work, by introducing some auxiliary variables, we further break each of the observation factors into several factors, which enables the use of hybrid mean field (MF), belief propagation (BP), and expectation propagation (EP) message passing to tackle the observation factors. It turns out that our approach is much more efficient than the existing approaches, leading to remarkable performance improvement as shown by simulation results.

Funding

Low-complexity factor-graph-based receiver design for bandwidth-efficient communication systems over doubly selective channels

Australian Research Council

Find out more...

History

Citation

Z. Yuan, C. Zhang, Z. Wang, Q. Guo & J. Xi, "An auxiliary variable-aided hybrid message passing approach to joint channel estimation and decoding for MIMO-OFDM," IEEE Signal Processing Letters, vol. 24, (1) pp. 12-16, 2017.

Journal title

IEEE Signal Processing Letters

Volume

24

Issue

1

Pagination

12-16

Language

English

RIS ID

112235

Usage metrics

    Categories

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC