Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective

Physical-layer cooperation has been demonstrated to vastly improve wireless link reliability and end-to-end throughput by exploiting spatial diversity. Nevertheless, its performance in operational networking environments is uncertain. Cooperative link gains can be potentially diminished by factors s...

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Main Author: Bejarano Chavez, Oscar
Other Authors: Edward W. Knightly
Format: Others
Language:English
Published: 2012
Online Access:http://hdl.handle.net/1911/64383
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spelling ndltd-RICE-oai-scholarship.rice.edu-1911-643832013-10-23T04:14:51ZLimits and Capabilities of Cooperative Diversity: A Network and Protocol PerspectiveBejarano Chavez, OscarPhysical-layer cooperation has been demonstrated to vastly improve wireless link reliability and end-to-end throughput by exploiting spatial diversity. Nevertheless, its performance in operational networking environments is uncertain. Cooperative link gains can be potentially diminished by factors such as i) increased transmission footprint due to the activity of the cooperative relay, ii) non-ideal node location due to the structure of a planned network, or iii) the inability of cooperation protocols to recognize the channel's global state, hence leading to increased congestion. In this work, we identify and evaluate these key factors affecting the performance of cooperative techniques in small- and large-scale topologies. Our evaluation reveals that throughput gains from cooperation achieved in atomic, isolated topologies, decrease significantly when implemented at network-scale scenarios. Furthermore, our study provides a deeper understanding of the regimes in which cooperation performs poorly, and can help in the design of effective protocol solutions for such cases.Edward W. Knightly2012-07-03T22:49:09Z2012-07-03T22:49:09Z2011-042011ThesisText65 ppapplication/pdfhttp://hdl.handle.net/1911/64383BejaranoCeng
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description Physical-layer cooperation has been demonstrated to vastly improve wireless link reliability and end-to-end throughput by exploiting spatial diversity. Nevertheless, its performance in operational networking environments is uncertain. Cooperative link gains can be potentially diminished by factors such as i) increased transmission footprint due to the activity of the cooperative relay, ii) non-ideal node location due to the structure of a planned network, or iii) the inability of cooperation protocols to recognize the channel's global state, hence leading to increased congestion. In this work, we identify and evaluate these key factors affecting the performance of cooperative techniques in small- and large-scale topologies. Our evaluation reveals that throughput gains from cooperation achieved in atomic, isolated topologies, decrease significantly when implemented at network-scale scenarios. Furthermore, our study provides a deeper understanding of the regimes in which cooperation performs poorly, and can help in the design of effective protocol solutions for such cases.
author2 Edward W. Knightly
author_facet Edward W. Knightly
Bejarano Chavez, Oscar
author Bejarano Chavez, Oscar
spellingShingle Bejarano Chavez, Oscar
Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
author_sort Bejarano Chavez, Oscar
title Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
title_short Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
title_full Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
title_fullStr Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
title_full_unstemmed Limits and Capabilities of Cooperative Diversity: A Network and Protocol Perspective
title_sort limits and capabilities of cooperative diversity: a network and protocol perspective
publishDate 2012
url http://hdl.handle.net/1911/64383
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