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2nd International ICST Conference on Communications and Networking in China

Research Article

Performance Improvement Based on Path Delay Analysis in WiMax Mesh Networks

Cite
BibTeX Plain Text
  • @INPROCEEDINGS{10.1109/CHINACOM.2007.4469543,
        author={Zheng Liu and Min Yang and Jufeng Dai},
        title={Performance Improvement Based on Path Delay Analysis in WiMax Mesh Networks},
        proceedings={2nd International ICST Conference on Communications and Networking in China},
        publisher={IEEE},
        proceedings_a={CHINACOM},
        year={2008},
        month={3},
        keywords={IEEE 802.16  Mesh  WiMax  delay  interference  throughput},
        doi={10.1109/CHINACOM.2007.4469543}
    }
    
  • Zheng Liu
    Min Yang
    Jufeng Dai
    Year: 2008
    Performance Improvement Based on Path Delay Analysis in WiMax Mesh Networks
    CHINACOM
    IEEE
    DOI: 10.1109/CHINACOM.2007.4469543
Zheng Liu1,*, Min Yang1,*, Jufeng Dai1,*
  • 1: School of Electronic and Information Engineering Tianjin University Tianjin, 300072, China
*Contact email: zhengliu@tju.edu.cn, yangmin@tju.edu.cn, jfdai@tju.edu.cn

Abstract

WiMax mesh networks based on IEEE 802.16 standard have promised to deliver high data rates over large areas and to be deployed easily. Optimum routing and scheduling of flows can do favor for capacity enlargement. The objective of this paper is to provide a routing-construction method with larger scale applicability and a concurrent transmission scheduling strategy to improve the performance during wireless resource allocation. Firstly, by using Possion model in queuing theory, the delay time of a given path in Mesh networks is analyzed. Furthermore , we design the greedy routing algorithm and concurrent scheduling strategy based on the path-delay parameter as proposed. At last, simulation results show that not only the throughput is enhanced, but also the delay is reduced in IEEE 802.16 Mesh networks.

Keywords
IEEE 802.16 Mesh WiMax delay interference throughput
Published
2008-03-07
Publisher
IEEE
Modified
2011-07-18
http://dx.doi.org/10.1109/CHINACOM.2007.4469543
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