Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels

This paper proposes the interleaving gain in two different distributed turbo-coding schemes: Distributed Turbo Codes (DTC) and Distributed Multiple Turbo Codes (DMTC) for half-duplex relay system as an extension of our previous work on turbo coding interleaver design for direct communication channel...

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Main Authors: Tamer H. M. Soliman, Fengfan Yang, S. Ejaz
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2015-06-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2015/15_02_0481_0488.pdf
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spelling doaj-542440ec6f784993bfca1788b24fb90f2020-11-24T22:29:08ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122015-06-01242481488Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay ChannelsTamer H. M. SolimanFengfan YangS. EjazThis paper proposes the interleaving gain in two different distributed turbo-coding schemes: Distributed Turbo Codes (DTC) and Distributed Multiple Turbo Codes (DMTC) for half-duplex relay system as an extension of our previous work on turbo coding interleaver design for direct communication channel. For these schemes with half-duplex constraint, the source node transmits its information with the parity bit sequence(s) to both the relay and the destination nodes during the first phase. The relay received the data from the source and process it by using decode and forward protocol. For the second transmission period, the decoded systematic data at relay is interleaved and re-encoded by a Recursive Systematic Convolutional (RSC) encoder and forwarded to the destination. At destination node, the signals received from the source and relay are processed by using turbo log-MAP iterative decoding for retrieving the original information bits. We demonstrate via simulations that the interleaving gain has a large effect with DTC scheme when we use only one RSC encoder at both the source and relay with best performance when using Modified Matched S-Random (MMSR) interleaver. Furthermore, by designing a Chaotic Pseudo Random Interleaver (CPRI) as an outer interleaver at the source node instead of classical interleavers, our scheme can add more secure channel conditions.http://www.radioeng.cz/fulltexts/2015/15_02_0481_0488.pdfChaoticinterleaversemi-randomturbo codesrelay channel
collection DOAJ
language English
format Article
sources DOAJ
author Tamer H. M. Soliman
Fengfan Yang
S. Ejaz
spellingShingle Tamer H. M. Soliman
Fengfan Yang
S. Ejaz
Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
Radioengineering
Chaotic
interleaver
semi-random
turbo codes
relay channel
author_facet Tamer H. M. Soliman
Fengfan Yang
S. Ejaz
author_sort Tamer H. M. Soliman
title Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
title_short Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
title_full Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
title_fullStr Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
title_full_unstemmed Interleaving Gains for Receive Diversity Schemes of Distributed Turbo Codes in Wireless Half–Duplex Relay Channels
title_sort interleaving gains for receive diversity schemes of distributed turbo codes in wireless half–duplex relay channels
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2015-06-01
description This paper proposes the interleaving gain in two different distributed turbo-coding schemes: Distributed Turbo Codes (DTC) and Distributed Multiple Turbo Codes (DMTC) for half-duplex relay system as an extension of our previous work on turbo coding interleaver design for direct communication channel. For these schemes with half-duplex constraint, the source node transmits its information with the parity bit sequence(s) to both the relay and the destination nodes during the first phase. The relay received the data from the source and process it by using decode and forward protocol. For the second transmission period, the decoded systematic data at relay is interleaved and re-encoded by a Recursive Systematic Convolutional (RSC) encoder and forwarded to the destination. At destination node, the signals received from the source and relay are processed by using turbo log-MAP iterative decoding for retrieving the original information bits. We demonstrate via simulations that the interleaving gain has a large effect with DTC scheme when we use only one RSC encoder at both the source and relay with best performance when using Modified Matched S-Random (MMSR) interleaver. Furthermore, by designing a Chaotic Pseudo Random Interleaver (CPRI) as an outer interleaver at the source node instead of classical interleavers, our scheme can add more secure channel conditions.
topic Chaotic
interleaver
semi-random
turbo codes
relay channel
url http://www.radioeng.cz/fulltexts/2015/15_02_0481_0488.pdf
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AT fengfanyang interleavinggainsforreceivediversityschemesofdistributedturbocodesinwirelesshalfduplexrelaychannels
AT sejaz interleavinggainsforreceivediversityschemesofdistributedturbocodesinwirelesshalfduplexrelaychannels
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