Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks

This paper investigates the interaction between network coding and link-layer transmission rate diversity in multi-hop wireless networks. By appropriately mixing data packets at intermediate nodes, network coding allows a single multicast flow to achieve higher throughput to a set of receivers. Broa...

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Main Authors: VIERA, Luiz Felipe, GERLA, Mario, MISRA, Archan
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Language:English
Published: Institutional Knowledge at Singapore Management University 2013
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Online Access:https://ink.library.smu.edu.sg/sis_research/1957
https://ink.library.smu.edu.sg/context/sis_research/article/2956/viewcontent/FundamentalLimitsEtoEThroughput_2013.pdf
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spelling sg-smu-ink.sis_research-29562020-01-11T15:05:33Z Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks VIERA, Luiz Felipe GERLA, Mario MISRA, Archan This paper investigates the interaction between network coding and link-layer transmission rate diversity in multi-hop wireless networks. By appropriately mixing data packets at intermediate nodes, network coding allows a single multicast flow to achieve higher throughput to a set of receivers. Broadcast applications can also exploit link-layer rate diversity, whereby individual nodes can transmit at faster rates at the expense of corresponding smaller coverage area. We first demonstrate how combining rate-diversity with network coding can provide a larger capacity for data dissemination of a single multicast flow, and how consideration of rate diversity is critical for maximizing system throughput. Next we address the following question: given a specific topology of wireless nodes, what is the maximum rate that can be supported by the resultant network exploiting both network coding and multi-rate? We present a linear programming model to compute the maximal throughput that a multicast application can achieve with network coding in a rate-diverse wireless network. We also present analytical results where we observe noticeably better throughput than traditional routing. This suggests there is opportunity for achieving higher throughput by combining network coding and multi-rate diversity. 2013-12-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/1957 info:doi/10.1016/j.comnet.2013.07.015 https://ink.library.smu.edu.sg/context/sis_research/article/2956/viewcontent/FundamentalLimitsEtoEThroughput_2013.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Network coding Multi-rate Multicast Wireless Performance Bounds Software Engineering
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Network coding
Multi-rate
Multicast
Wireless
Performance
Bounds
Software Engineering
spellingShingle Network coding
Multi-rate
Multicast
Wireless
Performance
Bounds
Software Engineering
VIERA, Luiz Felipe
GERLA, Mario
MISRA, Archan
Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
description This paper investigates the interaction between network coding and link-layer transmission rate diversity in multi-hop wireless networks. By appropriately mixing data packets at intermediate nodes, network coding allows a single multicast flow to achieve higher throughput to a set of receivers. Broadcast applications can also exploit link-layer rate diversity, whereby individual nodes can transmit at faster rates at the expense of corresponding smaller coverage area. We first demonstrate how combining rate-diversity with network coding can provide a larger capacity for data dissemination of a single multicast flow, and how consideration of rate diversity is critical for maximizing system throughput. Next we address the following question: given a specific topology of wireless nodes, what is the maximum rate that can be supported by the resultant network exploiting both network coding and multi-rate? We present a linear programming model to compute the maximal throughput that a multicast application can achieve with network coding in a rate-diverse wireless network. We also present analytical results where we observe noticeably better throughput than traditional routing. This suggests there is opportunity for achieving higher throughput by combining network coding and multi-rate diversity.
format text
author VIERA, Luiz Felipe
GERLA, Mario
MISRA, Archan
author_facet VIERA, Luiz Felipe
GERLA, Mario
MISRA, Archan
author_sort VIERA, Luiz Felipe
title Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
title_short Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
title_full Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
title_fullStr Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
title_full_unstemmed Fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
title_sort fundamental limits on end-to-end throughput of network coding in multi-rate and multicast wireless networks
publisher Institutional Knowledge at Singapore Management University
publishDate 2013
url https://ink.library.smu.edu.sg/sis_research/1957
https://ink.library.smu.edu.sg/context/sis_research/article/2956/viewcontent/FundamentalLimitsEtoEThroughput_2013.pdf
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