A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels
This paper deals with low-complexity joint channel estimation and decoding for faster-than-Nyquist (FTN) signaling over frequency selective fading channels. The inter-symbol interference (ISI) imposed by FTN signaling and the frequency selective channel are intentionally separated to fully exploit t...
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doaj-b75bbddba54a46fdab7b6e19d139213f2021-03-29T20:03:19ZengIEEEIEEE Access2169-35362017-01-0156849685810.1109/ACCESS.2017.27025717922514A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading ChannelsNan Wu0https://orcid.org/0000-0002-4982-2975Weijie Yuan1Qinghua Guo2https://orcid.org/0000-0002-5180-7854Jingming Kuang3School of Information and Electronics, Beijing Institute of Technology, Beijing, ChinaSchool of Information and Electronics, Beijing Institute of Technology, Beijing, ChinaSchool of Electrical, Computer and Telecommunications Engineering, University of Wollongong, Wollongong, NSW, AustraliaSchool of Information and Electronics, Beijing Institute of Technology, Beijing, ChinaThis paper deals with low-complexity joint channel estimation and decoding for faster-than-Nyquist (FTN) signaling over frequency selective fading channels. The inter-symbol interference (ISI) imposed by FTN signaling and the frequency selective channel are intentionally separated to fully exploit the known structure of the FTN-induced ISI. Colored noise due to the faster sampling rate than that of the Nyquist signaling system is approximated by autoregressive process. A Forney style factor graph representation of the FTN system is developed and Gaussian message passing is performed on the graph. Expectation propagation (EP) is employed to approximate the message from channel decoder to Gaussian distribution. Since the inner product between FTN symbols and channel coefficients is infeasible by belief propagation (BP), we propose to perform variational message passing (VMP) on an equivalent soft node in factor graph to tackle this problem. Simulation results demonstrate that the proposed low-complexity hybrid BP-EP-VMP algorithm outperforms the existing methods in FTN system. Compared with the Nyquist counterpart, FTN signaling with the proposed algorithm is able to increase the transmission rate by over 40%, with only negligible BER performance loss.https://ieeexplore.ieee.org/document/7922514/Faster-than-Nyquist signalingfactor graphjoint channel estimation and decodingbelief propagationvariational message passingexpectation propagation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nan Wu Weijie Yuan Qinghua Guo Jingming Kuang |
spellingShingle |
Nan Wu Weijie Yuan Qinghua Guo Jingming Kuang A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels IEEE Access Faster-than-Nyquist signaling factor graph joint channel estimation and decoding belief propagation variational message passing expectation propagation |
author_facet |
Nan Wu Weijie Yuan Qinghua Guo Jingming Kuang |
author_sort |
Nan Wu |
title |
A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels |
title_short |
A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels |
title_full |
A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels |
title_fullStr |
A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels |
title_full_unstemmed |
A Hybrid BP-EP-VMP Approach to Joint Channel Estimation and Decoding for FTN Signaling over Frequency Selective Fading Channels |
title_sort |
hybrid bp-ep-vmp approach to joint channel estimation and decoding for ftn signaling over frequency selective fading channels |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2017-01-01 |
description |
This paper deals with low-complexity joint channel estimation and decoding for faster-than-Nyquist (FTN) signaling over frequency selective fading channels. The inter-symbol interference (ISI) imposed by FTN signaling and the frequency selective channel are intentionally separated to fully exploit the known structure of the FTN-induced ISI. Colored noise due to the faster sampling rate than that of the Nyquist signaling system is approximated by autoregressive process. A Forney style factor graph representation of the FTN system is developed and Gaussian message passing is performed on the graph. Expectation propagation (EP) is employed to approximate the message from channel decoder to Gaussian distribution. Since the inner product between FTN symbols and channel coefficients is infeasible by belief propagation (BP), we propose to perform variational message passing (VMP) on an equivalent soft node in factor graph to tackle this problem. Simulation results demonstrate that the proposed low-complexity hybrid BP-EP-VMP algorithm outperforms the existing methods in FTN system. Compared with the Nyquist counterpart, FTN signaling with the proposed algorithm is able to increase the transmission rate by over 40%, with only negligible BER performance loss. |
topic |
Faster-than-Nyquist signaling factor graph joint channel estimation and decoding belief propagation variational message passing expectation propagation |
url |
https://ieeexplore.ieee.org/document/7922514/ |
work_keys_str_mv |
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