The performance of cooperative-diversity wireless networks using adaptive modulation

Thesis (M.Eng.)--Memorial University of Newfoundland, 2008. Engineering and Applied Science Includes bibliographical references (leaves 110-112) This thesis analyzes the throughput performance of the cooperative diversity wireless network using adaptive modulation over Rayleigh fading channels. Coop...

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Main Author: Chen, Hao, 1982-
Other Authors: Memorial University of Newfoundland. Faculty of Engineering and Applied Science
Format: Thesis
Language:English
Published: 2008
Subjects:
Online Access:http://collections.mun.ca/cdm/ref/collection/theses4/id/167793
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spelling ftmemorialunivdc:oai:collections.mun.ca:theses4/167793 2023-05-15T17:23:34+02:00 The performance of cooperative-diversity wireless networks using adaptive modulation Chen, Hao, 1982- Memorial University of Newfoundland. Faculty of Engineering and Applied Science 2008 xiii, 112 leaves : ill. Image/jpeg; Application/pdf http://collections.mun.ca/cdm/ref/collection/theses4/id/167793 Eng eng Electronic Theses and Dissertations (7.56MB)--http://collections.mun.ca/PDFs/theses/Chen_Hao2.pdf a2695965 http://collections.mun.ca/cdm/ref/collection/theses4/id/167793 The author retains copyright ownership and moral rights in this thesis. Neither the thesis nor substantial extracts from it may be printed or otherwise reproduced without the author's permission. Paper copy kept in the Centre for Newfoundland Studies, Memorial University Libraries Digital modulation Radio--Transmitters and transmission--Fading Wireless communication systems--Mathematical models Text Electronic thesis or dissertation 2008 ftmemorialunivdc 2015-08-06T19:22:43Z Thesis (M.Eng.)--Memorial University of Newfoundland, 2008. Engineering and Applied Science Includes bibliographical references (leaves 110-112) This thesis analyzes the throughput performance of the cooperative diversity wireless network using adaptive modulation over Rayleigh fading channels. Cooperative diversity is achieved by utilizing neighboring terminals as relays. These relays can generate copies of the same signal, which can provide spatial diversity gain and high Signal-to-Noise Ratio (SNR). The main drawback of cooperative diversity is the throughput decrease due to the extra resources needed for relaying. Therefore, throughput is greatly reduced. In this thesis, the adaptive modulation is used to convert the obtained SNR gain to throughput gain to compensate for the throughput reduction. Results show that the cooperative diversity networks with adaptive modulation not only compensate for the throughput loss but also achieve considerable throughput gain compared with the classical system with direct transmission when the Channel State Information (CSI) is perfectly known in advance. Moreover, this thesis investigates the throughput gain of the cooperative diversity networks with adaptive modulation when the CSI is imperfect. Results show that a great throughput loss is caused by the imperfect CSI, but considerable throughput gain still exists. More importantly, this thesis sets up the mathematical models for the simulated systems. Hence, the analytical evaluation of the system performance is presented in both perfect CSI and imperfect CSI case to verify the simulation results. In addition, this thesis also analyzes the relationship between the throughput gain and the number of relays. The optimal number of relays that maximizes the throughput is found to be one, when simultaneous relaying is not considered. It is also found that the throughput increases linearly with the number of relays, if simultaneous relaying is considered. Besides, the BER performance of the cooperative diversity network using fixed modulation is also investigated in simulation and analytical methods based on the analytical results from the cooperative diversity network using adaptive modulation. Results show that the BER performance of the cooperative diversity network under perfect CSI using fixed modulation is much better than that of the classical direct transmission system. In addition, there is significant BER performance degradation of the cooperative diversity network under imperfect CSI compared with that from the cooperative diversity network under perfect CSI. However, the cooperative diversity network under imperfect CSI is still better than the classical direct transmission system in BER performance. Thesis Newfoundland studies University of Newfoundland Memorial University of Newfoundland: Digital Archives Initiative (DAI)
institution Open Polar
collection Memorial University of Newfoundland: Digital Archives Initiative (DAI)
op_collection_id ftmemorialunivdc
language English
topic Digital modulation
Radio--Transmitters and transmission--Fading
Wireless communication systems--Mathematical models
spellingShingle Digital modulation
Radio--Transmitters and transmission--Fading
Wireless communication systems--Mathematical models
Chen, Hao, 1982-
The performance of cooperative-diversity wireless networks using adaptive modulation
topic_facet Digital modulation
Radio--Transmitters and transmission--Fading
Wireless communication systems--Mathematical models
description Thesis (M.Eng.)--Memorial University of Newfoundland, 2008. Engineering and Applied Science Includes bibliographical references (leaves 110-112) This thesis analyzes the throughput performance of the cooperative diversity wireless network using adaptive modulation over Rayleigh fading channels. Cooperative diversity is achieved by utilizing neighboring terminals as relays. These relays can generate copies of the same signal, which can provide spatial diversity gain and high Signal-to-Noise Ratio (SNR). The main drawback of cooperative diversity is the throughput decrease due to the extra resources needed for relaying. Therefore, throughput is greatly reduced. In this thesis, the adaptive modulation is used to convert the obtained SNR gain to throughput gain to compensate for the throughput reduction. Results show that the cooperative diversity networks with adaptive modulation not only compensate for the throughput loss but also achieve considerable throughput gain compared with the classical system with direct transmission when the Channel State Information (CSI) is perfectly known in advance. Moreover, this thesis investigates the throughput gain of the cooperative diversity networks with adaptive modulation when the CSI is imperfect. Results show that a great throughput loss is caused by the imperfect CSI, but considerable throughput gain still exists. More importantly, this thesis sets up the mathematical models for the simulated systems. Hence, the analytical evaluation of the system performance is presented in both perfect CSI and imperfect CSI case to verify the simulation results. In addition, this thesis also analyzes the relationship between the throughput gain and the number of relays. The optimal number of relays that maximizes the throughput is found to be one, when simultaneous relaying is not considered. It is also found that the throughput increases linearly with the number of relays, if simultaneous relaying is considered. Besides, the BER performance of the cooperative diversity network using fixed modulation is also investigated in simulation and analytical methods based on the analytical results from the cooperative diversity network using adaptive modulation. Results show that the BER performance of the cooperative diversity network under perfect CSI using fixed modulation is much better than that of the classical direct transmission system. In addition, there is significant BER performance degradation of the cooperative diversity network under imperfect CSI compared with that from the cooperative diversity network under perfect CSI. However, the cooperative diversity network under imperfect CSI is still better than the classical direct transmission system in BER performance.
author2 Memorial University of Newfoundland. Faculty of Engineering and Applied Science
format Thesis
author Chen, Hao, 1982-
author_facet Chen, Hao, 1982-
author_sort Chen, Hao, 1982-
title The performance of cooperative-diversity wireless networks using adaptive modulation
title_short The performance of cooperative-diversity wireless networks using adaptive modulation
title_full The performance of cooperative-diversity wireless networks using adaptive modulation
title_fullStr The performance of cooperative-diversity wireless networks using adaptive modulation
title_full_unstemmed The performance of cooperative-diversity wireless networks using adaptive modulation
title_sort performance of cooperative-diversity wireless networks using adaptive modulation
publishDate 2008
url http://collections.mun.ca/cdm/ref/collection/theses4/id/167793
genre Newfoundland studies
University of Newfoundland
genre_facet Newfoundland studies
University of Newfoundland
op_source Paper copy kept in the Centre for Newfoundland Studies, Memorial University Libraries
op_relation Electronic Theses and Dissertations
(7.56MB)--http://collections.mun.ca/PDFs/theses/Chen_Hao2.pdf
a2695965
http://collections.mun.ca/cdm/ref/collection/theses4/id/167793
op_rights The author retains copyright ownership and moral rights in this thesis. Neither the thesis nor substantial extracts from it may be printed or otherwise reproduced without the author's permission.
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