SINR performance analysis of DFT spread generalized multi-carrier system

A signal-to-interference-plus-noise ratio(SINR) performance analysis method of discrete fourier transform spread generalized multi-carrier(DFT-S-GMC) system was proposed.The closed-form SINR expression based on simpli-fied frequency-domain equivalent implementation structure and MMSE equalization fo...

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Main Authors: RUI Yun1, LI Ming-qi1, ZHOU Qin-ying1, ZHANG Xiao-dong1, YI Hui-yue1, HU Hong-lin1
Format: Article
Language:zho
Published: Editorial Department of Journal on Communications 2008-01-01
Series:Tongxin xuebao
Subjects:
Online Access:http://www.joconline.com.cn/zh/article/74656336/
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author RUI Yun1
LI Ming-qi1
ZHOU Qin-ying1
ZHANG Xiao-dong1
YI Hui-yue1
HU Hong-lin1
author_facet RUI Yun1
LI Ming-qi1
ZHOU Qin-ying1
ZHANG Xiao-dong1
YI Hui-yue1
HU Hong-lin1
author_sort RUI Yun1
collection DOAJ
description A signal-to-interference-plus-noise ratio(SINR) performance analysis method of discrete fourier transform spread generalized multi-carrier(DFT-S-GMC) system was proposed.The closed-form SINR expression based on simpli-fied frequency-domain equivalent implementation structure and MMSE equalization for receiver is derived by channel frequency response and noise variance,considering inter-block(IFBT symbol) residual interference multiplexed in time domain.Moreover,it can be easily extended to multi-receive antenna.By simulation results,it is shown that with pro-posed equivalent SINR,the BLock error rate(BLER) performance of DFT-S-GMC over slow fading channel is well matched with that over AWGN channel.
format Article
id doaj-art-b8b4e8c0b8e746d68bae2a986b9d661a
institution Kabale University
issn 1000-436X
language zho
publishDate 2008-01-01
publisher Editorial Department of Journal on Communications
record_format Article
series Tongxin xuebao
spelling doaj-art-b8b4e8c0b8e746d68bae2a986b9d661a2025-01-14T08:32:35ZzhoEditorial Department of Journal on CommunicationsTongxin xuebao1000-436X2008-01-01515674656336SINR performance analysis of DFT spread generalized multi-carrier systemRUI Yun1LI Ming-qi1ZHOU Qin-ying1ZHANG Xiao-dong1YI Hui-yue1HU Hong-lin1A signal-to-interference-plus-noise ratio(SINR) performance analysis method of discrete fourier transform spread generalized multi-carrier(DFT-S-GMC) system was proposed.The closed-form SINR expression based on simpli-fied frequency-domain equivalent implementation structure and MMSE equalization for receiver is derived by channel frequency response and noise variance,considering inter-block(IFBT symbol) residual interference multiplexed in time domain.Moreover,it can be easily extended to multi-receive antenna.By simulation results,it is shown that with pro-posed equivalent SINR,the BLock error rate(BLER) performance of DFT-S-GMC over slow fading channel is well matched with that over AWGN channel.http://www.joconline.com.cn/zh/article/74656336/DFT-S-GMCsignal-to-interference-plus-noise ratiofilter-bankfrequency-domain structure
spellingShingle RUI Yun1
LI Ming-qi1
ZHOU Qin-ying1
ZHANG Xiao-dong1
YI Hui-yue1
HU Hong-lin1
SINR performance analysis of DFT spread generalized multi-carrier system
Tongxin xuebao
DFT-S-GMC
signal-to-interference-plus-noise ratio
filter-bank
frequency-domain structure
title SINR performance analysis of DFT spread generalized multi-carrier system
title_full SINR performance analysis of DFT spread generalized multi-carrier system
title_fullStr SINR performance analysis of DFT spread generalized multi-carrier system
title_full_unstemmed SINR performance analysis of DFT spread generalized multi-carrier system
title_short SINR performance analysis of DFT spread generalized multi-carrier system
title_sort sinr performance analysis of dft spread generalized multi carrier system
topic DFT-S-GMC
signal-to-interference-plus-noise ratio
filter-bank
frequency-domain structure
url http://www.joconline.com.cn/zh/article/74656336/
work_keys_str_mv AT ruiyun1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem
AT limingqi1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem
AT zhouqinying1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem
AT zhangxiaodong1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem
AT yihuiyue1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem
AT huhonglin1 sinrperformanceanalysisofdftspreadgeneralizedmulticarriersystem