Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel

In this paper, a cooperative algorithm to improve the orthogonal space-timefrequency block codes (OSTFBC) in frequency selective channels for 2*1, 2*2, 4*1, 4*2 MIMO-OFDM systems, is presented. The algorithm of three node, a source node, a relay node and a destination node is formed, and is implemen...

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Main Authors: M. Rezaei, A. Falahati
Format: Article
Language:English
Published: Iran University of Science and Technology 2016-03-01
Series:Iranian Journal of Electrical and Electronic Engineering
Subjects:
BER
Online Access:http://ijeee.iust.ac.ir/browse.php?a_code=A-10-568-1&slc_lang=en&sid=1
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spelling doaj-3400a0b239734a62906f99eb86be6aec2020-11-24T20:56:01ZengIran University of Science and TechnologyIranian Journal of Electrical and Electronic Engineering1735-28272383-38902016-03-0112118Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective ChannelM. Rezaei0A. Falahati1 Department of Electrical Engineering, Iran University Science and Technology, Tehran, Iran Department of Electrical Engineering, Iran University Science and Technology, Tehran, Iran In this paper, a cooperative algorithm to improve the orthogonal space-timefrequency block codes (OSTFBC) in frequency selective channels for 2*1, 2*2, 4*1, 4*2 MIMO-OFDM systems, is presented. The algorithm of three node, a source node, a relay node and a destination node is formed, and is implemented in two stages. During the first stage, the destination and the relay antennas receive the symbols sent by the source antennas. The destination node and the relay node obtain the decision variables employing time-space-frequency decoding process by the received signals. During the second stage, the relay node transmits decision variables to the destination node. Due to the increasing diversity in the proposed algorithm, decision variables in the destination node are increased to improve system performance. The bit error rate of the proposed algorithm at high SNR is estimated by considering the BPSK modulation. The simulation results show that cooperative orthogonal space-time-frequency block coding, improves system performance and reduces the BER in a frequency selective channel.http://ijeee.iust.ac.ir/browse.php?a_code=A-10-568-1&slc_lang=en&sid=1BER Cooperative Frequency-Selective Channel MIMO-OFDM Multipath Diversity OSTFBC Relay Spatial Diversity
collection DOAJ
language English
format Article
sources DOAJ
author M. Rezaei
A. Falahati
spellingShingle M. Rezaei
A. Falahati
Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
Iranian Journal of Electrical and Electronic Engineering
BER
Cooperative
Frequency-Selective Channel
MIMO-OFDM
Multipath Diversity
OSTFBC
Relay
Spatial Diversity
author_facet M. Rezaei
A. Falahati
author_sort M. Rezaei
title Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
title_short Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
title_full Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
title_fullStr Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
title_full_unstemmed Cooperative Orthogonal Space-Time-Frequency Block Codes over a MIMO-OFDM Frequency Selective Channel
title_sort cooperative orthogonal space-time-frequency block codes over a mimo-ofdm frequency selective channel
publisher Iran University of Science and Technology
series Iranian Journal of Electrical and Electronic Engineering
issn 1735-2827
2383-3890
publishDate 2016-03-01
description In this paper, a cooperative algorithm to improve the orthogonal space-timefrequency block codes (OSTFBC) in frequency selective channels for 2*1, 2*2, 4*1, 4*2 MIMO-OFDM systems, is presented. The algorithm of three node, a source node, a relay node and a destination node is formed, and is implemented in two stages. During the first stage, the destination and the relay antennas receive the symbols sent by the source antennas. The destination node and the relay node obtain the decision variables employing time-space-frequency decoding process by the received signals. During the second stage, the relay node transmits decision variables to the destination node. Due to the increasing diversity in the proposed algorithm, decision variables in the destination node are increased to improve system performance. The bit error rate of the proposed algorithm at high SNR is estimated by considering the BPSK modulation. The simulation results show that cooperative orthogonal space-time-frequency block coding, improves system performance and reduces the BER in a frequency selective channel.
topic BER
Cooperative
Frequency-Selective Channel
MIMO-OFDM
Multipath Diversity
OSTFBC
Relay
Spatial Diversity
url http://ijeee.iust.ac.ir/browse.php?a_code=A-10-568-1&slc_lang=en&sid=1
work_keys_str_mv AT mrezaei cooperativeorthogonalspacetimefrequencyblockcodesoveramimoofdmfrequencyselectivechannel
AT afalahati cooperativeorthogonalspacetimefrequencyblockcodesoveramimoofdmfrequencyselectivechannel
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