Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks

<p/> <p>In order to mitigate high cochannel interference resulting from dense channel reuse, the interference management issues are often considered as essential part of scheduling schemes in <it>fixed broadband wireless access</it> (FBWA) networks. To that end, a series of l...

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Main Authors: Ahmed Mohamed H, Rahman Mahmudur, Yanikomeroglu Halim, Mahmoud Samy
Format: Article
Language:English
Published: SpringerOpen 2006-01-01
Series:EURASIP Journal on Wireless Communications and Networking
Online Access:http://jwcn.eurasipjournals.com/content/2006/080493
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spelling doaj-4ed3fec7b10b4127aa32c9c78a8b533d2020-11-25T01:10:53ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14721687-14992006-01-0120061080493Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access NetworksAhmed Mohamed HRahman MahmudurYanikomeroglu HalimMahmoud Samy<p/> <p>In order to mitigate high cochannel interference resulting from dense channel reuse, the interference management issues are often considered as essential part of scheduling schemes in <it>fixed broadband wireless access</it> (FBWA) networks. To that end, a series of literature has been published recently, in which a group of base stations forms an <it>interferer group</it> (downlink transmissions from each base station become dominant interference for the users in other in-group base stations), and the scheduling scheme deployed in the group allows only one base station to transmit at a time. As a result of time orthogonality in transmissions, the dominant cochannel interferers are prevented, and hence the packet error rate can be improved. However, prohibiting concurrent transmissions in these orthogonal schemes introduces throughput penalty as well as higher end-to-end packet delay which might not be desirable for real-time services. In this paper, we utilize <it>opportunistic nonorthogonality</it> among the in-group transmissions whenever possible and propose a novel transmission scheduling scheme for FBWA networks. The proposed scheme, in contrast to the proactive <it>interference avoidance</it> techniques, strives for the improvements in delay and throughput efficiency. To facilitate opportunistic nonorthogonal transmissions in the interferer group, estimation of <it>signal-to-interference-plus-noise ratio</it> (SINR) is required at the scheduler. We have observed from simulations that the proposed scheme outperforms the reference orthogonal scheme in terms of spectral efficiency, mean packet delay, and packet dropping rate.</p> http://jwcn.eurasipjournals.com/content/2006/080493
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed Mohamed H
Rahman Mahmudur
Yanikomeroglu Halim
Mahmoud Samy
spellingShingle Ahmed Mohamed H
Rahman Mahmudur
Yanikomeroglu Halim
Mahmoud Samy
Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
EURASIP Journal on Wireless Communications and Networking
author_facet Ahmed Mohamed H
Rahman Mahmudur
Yanikomeroglu Halim
Mahmoud Samy
author_sort Ahmed Mohamed H
title Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
title_short Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
title_full Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
title_fullStr Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
title_full_unstemmed Opportunistic Nonorthogonal Packet Scheduling in Fixed Broadband Wireless Access Networks
title_sort opportunistic nonorthogonal packet scheduling in fixed broadband wireless access networks
publisher SpringerOpen
series EURASIP Journal on Wireless Communications and Networking
issn 1687-1472
1687-1499
publishDate 2006-01-01
description <p/> <p>In order to mitigate high cochannel interference resulting from dense channel reuse, the interference management issues are often considered as essential part of scheduling schemes in <it>fixed broadband wireless access</it> (FBWA) networks. To that end, a series of literature has been published recently, in which a group of base stations forms an <it>interferer group</it> (downlink transmissions from each base station become dominant interference for the users in other in-group base stations), and the scheduling scheme deployed in the group allows only one base station to transmit at a time. As a result of time orthogonality in transmissions, the dominant cochannel interferers are prevented, and hence the packet error rate can be improved. However, prohibiting concurrent transmissions in these orthogonal schemes introduces throughput penalty as well as higher end-to-end packet delay which might not be desirable for real-time services. In this paper, we utilize <it>opportunistic nonorthogonality</it> among the in-group transmissions whenever possible and propose a novel transmission scheduling scheme for FBWA networks. The proposed scheme, in contrast to the proactive <it>interference avoidance</it> techniques, strives for the improvements in delay and throughput efficiency. To facilitate opportunistic nonorthogonal transmissions in the interferer group, estimation of <it>signal-to-interference-plus-noise ratio</it> (SINR) is required at the scheduler. We have observed from simulations that the proposed scheme outperforms the reference orthogonal scheme in terms of spectral efficiency, mean packet delay, and packet dropping rate.</p>
url http://jwcn.eurasipjournals.com/content/2006/080493
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AT rahmanmahmudur opportunisticnonorthogonalpacketschedulinginfixedbroadbandwirelessaccessnetworks
AT yanikomerogluhalim opportunisticnonorthogonalpacketschedulinginfixedbroadbandwirelessaccessnetworks
AT mahmoudsamy opportunisticnonorthogonalpacketschedulinginfixedbroadbandwirelessaccessnetworks
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