Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels

Single carrier block transmission (SCBT) system has become one of the most popular modulation systems due to its low peak-to-average power ratio (PAPR), and it is gradually considered to be used for uplink wireless communication systems. In this paper, a low complexity partial parallel interference...

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Main Authors: Juinn-Horng Deng, Sheng-Yang Huang
Format: Article
Language:English
Published: Hindawi Limited 2012-01-01
Series:International Journal of Antennas and Propagation
Online Access:http://dx.doi.org/10.1155/2012/910824
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spelling doaj-54121cf7c6ba4f9e8e95659994742b622020-11-24T22:56:11ZengHindawi LimitedInternational Journal of Antennas and Propagation1687-58691687-58772012-01-01201210.1155/2012/910824910824Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading ChannelsJuinn-Horng Deng0Sheng-Yang Huang1Communication Research Center and Department of Communication Engineering, Yuan Ze University, Chungli, Taoyuan 32003, TaiwanCommunication Research Center and Department of Communication Engineering, Yuan Ze University, Chungli, Taoyuan 32003, TaiwanSingle carrier block transmission (SCBT) system has become one of the most popular modulation systems due to its low peak-to-average power ratio (PAPR), and it is gradually considered to be used for uplink wireless communication systems. In this paper, a low complexity partial parallel interference cancellation (PIC) with maximum ratio combining (MRC) technology is proposed to use for receiver to combat the intersymbol interference (ISI) problem over multipath fading channel. With the aid of MRC scheme, the proposed partial PIC technique can effectively perform the interference cancellation and acquire the benefit of time diversity gain. Finally, the proposed system can be extended to use for multiple antenna systems to provide excellent performance. Simulation results reveal that the proposed low complexity partial PIC-MRC SIMO system can provide robust performance and outperform the conventional PIC and the iterative frequency domain decision feedback equalizer (FD-DFE) systems over multipath fading channel environment.http://dx.doi.org/10.1155/2012/910824
collection DOAJ
language English
format Article
sources DOAJ
author Juinn-Horng Deng
Sheng-Yang Huang
spellingShingle Juinn-Horng Deng
Sheng-Yang Huang
Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
International Journal of Antennas and Propagation
author_facet Juinn-Horng Deng
Sheng-Yang Huang
author_sort Juinn-Horng Deng
title Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
title_short Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
title_full Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
title_fullStr Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
title_full_unstemmed Partial PIC-MRC Receiver Design for Single Carrier Block Transmission System over Multipath Fading Channels
title_sort partial pic-mrc receiver design for single carrier block transmission system over multipath fading channels
publisher Hindawi Limited
series International Journal of Antennas and Propagation
issn 1687-5869
1687-5877
publishDate 2012-01-01
description Single carrier block transmission (SCBT) system has become one of the most popular modulation systems due to its low peak-to-average power ratio (PAPR), and it is gradually considered to be used for uplink wireless communication systems. In this paper, a low complexity partial parallel interference cancellation (PIC) with maximum ratio combining (MRC) technology is proposed to use for receiver to combat the intersymbol interference (ISI) problem over multipath fading channel. With the aid of MRC scheme, the proposed partial PIC technique can effectively perform the interference cancellation and acquire the benefit of time diversity gain. Finally, the proposed system can be extended to use for multiple antenna systems to provide excellent performance. Simulation results reveal that the proposed low complexity partial PIC-MRC SIMO system can provide robust performance and outperform the conventional PIC and the iterative frequency domain decision feedback equalizer (FD-DFE) systems over multipath fading channel environment.
url http://dx.doi.org/10.1155/2012/910824
work_keys_str_mv AT juinnhorngdeng partialpicmrcreceiverdesignforsinglecarrierblocktransmissionsystemovermultipathfadingchannels
AT shengyanghuang partialpicmrcreceiverdesignforsinglecarrierblocktransmissionsystemovermultipathfadingchannels
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