Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks

The classic spectrum management methods cannot efficiently supply the future multicast traffic demands. Recently, the cognitive radio technology has emerged as a promising solution to enhance the spectrum utilization. However, the potential heterogeneity in channel availability among the network use...

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Main Authors: Fahimeh Aghaei, Avid Avokh
Format: Article
Language:English
Published: Najafabad Branch, Islamic Azad University 2016-10-01
Series:Journal of Intelligent Procedures in Electrical Technology
Subjects:
Online Access:http://jipet.iaun.ac.ir/article_32071_ff1f1b4e1fe09359b7ded5c8a3f4111f.pdf
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spelling doaj-487df77dfbec411587c41c0cb9f4eb602020-11-24T23:20:37ZengNajafabad Branch, Islamic Azad UniversityJournal of Intelligent Procedures in Electrical Technology2322-38712345-55942016-10-017272740Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh NetworksFahimeh Aghaei0Avid Avokh1Najafabad Branch, Islamic Azad UniversityNajafabad Branch, Islamic Azad UniversityThe classic spectrum management methods cannot efficiently supply the future multicast traffic demands. Recently, the cognitive radio technology has emerged as a promising solution to enhance the spectrum utilization. However, the potential heterogeneity in channel availability among the network users leads to send the packets through multiple channels. This significantly decreases the network throughput. The main goal of this paper is to reduce the multicast period in a single-cell and multi-channel wireless mesh cognitive radio network. In this regard, we jointly exploit the multicast scheduling policies, the intra-groups and inter-groups assistance strategies, and the Wireless Broadcast Advantage (WBA). Based on WBA, a single transmission of a node can simultaneously cover multiple neighboring receivers. In addition, by assigning multiple radios to each network user, we allow the nodes to simultaneously transmit/receive the packets on distinct channels. Numerical results of our comprehensive simulations demonstrate the efficiency of the proposed scheme in term of the network throughput.http://jipet.iaun.ac.ir/article_32071_ff1f1b4e1fe09359b7ded5c8a3f4111f.pdfWireless cognitive radio mesh networksmulti radiomulticast periodnetwork coding
collection DOAJ
language English
format Article
sources DOAJ
author Fahimeh Aghaei
Avid Avokh
spellingShingle Fahimeh Aghaei
Avid Avokh
Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
Journal of Intelligent Procedures in Electrical Technology
Wireless cognitive radio mesh networks
multi radio
multicast period
network coding
author_facet Fahimeh Aghaei
Avid Avokh
author_sort Fahimeh Aghaei
title Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
title_short Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
title_full Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
title_fullStr Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
title_full_unstemmed Throughput Improvement in Multi radio Multi channel Wireless Cognitive Radio Mesh Networks
title_sort throughput improvement in multi radio multi channel wireless cognitive radio mesh networks
publisher Najafabad Branch, Islamic Azad University
series Journal of Intelligent Procedures in Electrical Technology
issn 2322-3871
2345-5594
publishDate 2016-10-01
description The classic spectrum management methods cannot efficiently supply the future multicast traffic demands. Recently, the cognitive radio technology has emerged as a promising solution to enhance the spectrum utilization. However, the potential heterogeneity in channel availability among the network users leads to send the packets through multiple channels. This significantly decreases the network throughput. The main goal of this paper is to reduce the multicast period in a single-cell and multi-channel wireless mesh cognitive radio network. In this regard, we jointly exploit the multicast scheduling policies, the intra-groups and inter-groups assistance strategies, and the Wireless Broadcast Advantage (WBA). Based on WBA, a single transmission of a node can simultaneously cover multiple neighboring receivers. In addition, by assigning multiple radios to each network user, we allow the nodes to simultaneously transmit/receive the packets on distinct channels. Numerical results of our comprehensive simulations demonstrate the efficiency of the proposed scheme in term of the network throughput.
topic Wireless cognitive radio mesh networks
multi radio
multicast period
network coding
url http://jipet.iaun.ac.ir/article_32071_ff1f1b4e1fe09359b7ded5c8a3f4111f.pdf
work_keys_str_mv AT fahimehaghaei throughputimprovementinmultiradiomultichannelwirelesscognitiveradiomeshnetworks
AT avidavokh throughputimprovementinmultiradiomultichannelwirelesscognitiveradiomeshnetworks
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