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2nd International ICST Conference on Broadband Networks

Research Article

Throughput of MC-CDMA multi-cell wireless networks using interference-based sub-carrier group assignment

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  • @INPROCEEDINGS{10.1109/ICBN.2005.1589658,
        author={Tallal Elshabrawy and Tho Le-Ngoc },
        title={Throughput of MC-CDMA multi-cell wireless networks using interference-based sub-carrier group assignment},
        proceedings={2nd International ICST Conference on Broadband Networks},
        publisher={IEEE},
        proceedings_a={BROADNETS},
        year={2006},
        month={2},
        keywords={},
        doi={10.1109/ICBN.2005.1589658}
    }
    
  • Tallal Elshabrawy
    Tho Le-Ngoc
    Year: 2006
    Throughput of MC-CDMA multi-cell wireless networks using interference-based sub-carrier group assignment
    BROADNETS
    IEEE
    DOI: 10.1109/ICBN.2005.1589658
Tallal Elshabrawy1,*, Tho Le-Ngoc 1,*
  • 1: Department of ECE, McGill University, 3480 University, Montréal, Québec, Canada, H3A 2A7
*Contact email: telsha@po-box.mcgill.ca, tho@ece.mcgill.ca

Abstract

Two interference-based sub-carrier group assignment strategies in dynamic resource allocation are proposed for MC-CDMA wireless systems to achieve high throughput in a multi-cell environment. Least interfered group assignment (LIGA) selects for each session the sub-carrier group on which the user receives the minimum interference, while best channel ratio group assignment (BCRGA) chooses the sub-carrier group with the largest channel response-to-interference ratio. Both analytical framework and simulation model are developed for evaluation of throughput distribution of the proposed LIGA and BCRGA schemes. An iterative approach is devised to handle the complex interdependency between multi-cell interference profiles in the throughput analysis. Illustrative results show significant throughput improvement offered by the proposed interference-based assignment schemes for MC-CDMA multi-cell wireless systems. In particular, under low loading conditions, LIGA renders the best performance. However, as the load increases BCRGA tends to offer superior performance.

Published
2006-02-13
Publisher
IEEE
http://dx.doi.org/10.1109/ICBN.2005.1589658
Copyright © 2005–2025 IEEE
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