Analysis of Advanced Diversity Receivers for Fading Channels
Proliferation of new wireless technologies has rekindled the interest on the design, analysis and implementation of suboptimal receiver structures that provide good error probability performance with reduced power consumption and complexity particularly when the order of diversity is large. This the...
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-96702021-12-18T05:53:06Z Analysis of Advanced Diversity Receivers for Fading Channels Gaur, Sudhanshu Electrical and Computer Engineering Annamalai, Annamalai Jr. Buehrer, R. Michael Reed, Jeffrey H. mm-wave communication uwb egc digital communication techniques rake receivers fading channels Proliferation of new wireless technologies has rekindled the interest on the design, analysis and implementation of suboptimal receiver structures that provide good error probability performance with reduced power consumption and complexity particularly when the order of diversity is large. This thesis presents a unified analytical framework to perform a trade-off study for a class of hybrid generalized selection combining technique for ultra-wideband, spread-spectrum and millimeter-wave communication receiver designs. The thesis also develops an exact mathematical framework to analyze the performance of a dual-diversity equal gain combining (EGC) receiver in correlated Nakagami-m channels, which had defied a simple solution in the past. The framework facilitates efficient evaluation of the mean and variance of coherent EGC output signal-to-noise ratio, outage probability and average symbol error probability for a broad range of digital modulation schemes. A comprehensive study of various dual-diversity techniques with non-independent and non-identical fading statistics is also presented. Finally, the thesis develops some closed-form solutions for a few integrals involving the generalized Marcum Q-function. Integrals of these types often arise in the analysis of multichannel diversity reception of differentially coherent and noncoherent digital communications over Nakagami-m channels. Several other applications are also discussed. Master of Science 2011-08-06T14:44:52Z 2011-08-06T14:44:52Z 2003-09-19 2003-12-24 2004-01-15 2004-01-15 Thesis etd-12242003-183002 http://hdl.handle.net/10919/9670 http://scholar.lib.vt.edu/theses/available/etd-12242003-183002 Gaur-Thesis.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ ETD application/pdf Virginia Tech |
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mm-wave communication uwb egc digital communication techniques rake receivers fading channels |
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mm-wave communication uwb egc digital communication techniques rake receivers fading channels Gaur, Sudhanshu Analysis of Advanced Diversity Receivers for Fading Channels |
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Proliferation of new wireless technologies has rekindled the interest on the design, analysis and implementation of suboptimal receiver structures that provide good error probability performance with reduced power consumption and complexity particularly when the order of diversity is large. This thesis presents a unified analytical framework to perform a trade-off study for a class of hybrid generalized selection combining technique for ultra-wideband, spread-spectrum and millimeter-wave communication receiver designs.
The thesis also develops an exact mathematical framework to analyze the performance of a dual-diversity equal gain combining (EGC) receiver in correlated Nakagami-m channels, which had defied a simple solution in the past. The framework facilitates efficient evaluation of the mean and variance of coherent EGC output signal-to-noise ratio, outage probability and average symbol error probability for a broad range of digital modulation schemes. A comprehensive study of various dual-diversity techniques with non-independent and non-identical fading statistics is also presented.
Finally, the thesis develops some closed-form solutions for a few integrals involving the generalized Marcum Q-function. Integrals of these types often arise in the analysis of multichannel diversity reception of differentially coherent and noncoherent digital communications over Nakagami-m channels. Several other applications are also discussed. === Master of Science |
author2 |
Electrical and Computer Engineering |
author_facet |
Electrical and Computer Engineering Gaur, Sudhanshu |
author |
Gaur, Sudhanshu |
author_sort |
Gaur, Sudhanshu |
title |
Analysis of Advanced Diversity Receivers for Fading Channels |
title_short |
Analysis of Advanced Diversity Receivers for Fading Channels |
title_full |
Analysis of Advanced Diversity Receivers for Fading Channels |
title_fullStr |
Analysis of Advanced Diversity Receivers for Fading Channels |
title_full_unstemmed |
Analysis of Advanced Diversity Receivers for Fading Channels |
title_sort |
analysis of advanced diversity receivers for fading channels |
publisher |
Virginia Tech |
publishDate |
2011 |
url |
http://hdl.handle.net/10919/9670 http://scholar.lib.vt.edu/theses/available/etd-12242003-183002 |
work_keys_str_mv |
AT gaursudhanshu analysisofadvanceddiversityreceiversforfadingchannels |
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