Two-channel two-transceiver IEEE 802.16 wireless backhaul

An IEEE 802.16 wireless backhaul network is a cost effective, easier to deploy, and readily scalable solution to deliver broadband communication services from gateway nodes located in regional or metropolitan centres to less densely populated remote rural communities. In order to ensure the network...

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Main Authors: Chai, P., Chung, Kah-Seng, Chan, King-Sun
Format: Conference Paper
Published: 2011
Online Access:http://hdl.handle.net/20.500.11937/33622
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author Chai, P.
Chung, Kah-Seng
Chan, King-Sun
author_facet Chai, P.
Chung, Kah-Seng
Chan, King-Sun
author_sort Chai, P.
building Curtin Institutional Repository
collection Online Access
description An IEEE 802.16 wireless backhaul network is a cost effective, easier to deploy, and readily scalable solution to deliver broadband communication services from gateway nodes located in regional or metropolitan centres to less densely populated remote rural communities. In order to ensure the network remains operational even under a node or link failure, extra nodes and links are incorporated to provide alternative paths for rerouting traffic. In addition, nodes located within the interference range are assigned with different frequency channels to allow them to transmit simultaneously without causing transmission collisions. In this paper, a two-channel two-transceiver distributed channel assignment (TTDCA) algorithm is proposed to allocate minislots and frequency channels to the nodes in a failure tolerant IEEE 802.16 wireless backhaul network. Computer simulation results show that the TTDCA algorithm is effective in significantly improving the throughput and delay performance of the network, making it suitable not only to support large amount of data traffic but also for transporting delay-sensitive traffics.
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spelling curtin-20.500.11937-336222017-09-13T15:33:15Z Two-channel two-transceiver IEEE 802.16 wireless backhaul Chai, P. Chung, Kah-Seng Chan, King-Sun An IEEE 802.16 wireless backhaul network is a cost effective, easier to deploy, and readily scalable solution to deliver broadband communication services from gateway nodes located in regional or metropolitan centres to less densely populated remote rural communities. In order to ensure the network remains operational even under a node or link failure, extra nodes and links are incorporated to provide alternative paths for rerouting traffic. In addition, nodes located within the interference range are assigned with different frequency channels to allow them to transmit simultaneously without causing transmission collisions. In this paper, a two-channel two-transceiver distributed channel assignment (TTDCA) algorithm is proposed to allocate minislots and frequency channels to the nodes in a failure tolerant IEEE 802.16 wireless backhaul network. Computer simulation results show that the TTDCA algorithm is effective in significantly improving the throughput and delay performance of the network, making it suitable not only to support large amount of data traffic but also for transporting delay-sensitive traffics. 2011 Conference Paper http://hdl.handle.net/20.500.11937/33622 10.1109/GLOCOMW.2011.6162333 restricted
spellingShingle Chai, P.
Chung, Kah-Seng
Chan, King-Sun
Two-channel two-transceiver IEEE 802.16 wireless backhaul
title Two-channel two-transceiver IEEE 802.16 wireless backhaul
title_full Two-channel two-transceiver IEEE 802.16 wireless backhaul
title_fullStr Two-channel two-transceiver IEEE 802.16 wireless backhaul
title_full_unstemmed Two-channel two-transceiver IEEE 802.16 wireless backhaul
title_short Two-channel two-transceiver IEEE 802.16 wireless backhaul
title_sort two-channel two-transceiver ieee 802.16 wireless backhaul
url http://hdl.handle.net/20.500.11937/33622