6th International ICST Conference on Communications and Networking in China

Research Article

Reseach on Mobile Hidden Station for Weighted Clustering Algorithm in MANET System

  • @INPROCEEDINGS{10.1109/ChinaCom.2011.6158230,
        author={Na Zhang and Ningqing Liu and Meng Wu and Weixiao Meng},
        title={Reseach on Mobile Hidden Station for Weighted Clustering Algorithm in MANET System},
        proceedings={6th International ICST Conference on Communications and Networking in China},
        publisher={IEEE},
        proceedings_a={CHINACOM},
        year={2012},
        month={3},
        keywords={manet mobile hidden station clustering wca},
        doi={10.1109/ChinaCom.2011.6158230}
    }
    
  • Na Zhang
    Ningqing Liu
    Meng Wu
    Weixiao Meng
    Year: 2012
    Reseach on Mobile Hidden Station for Weighted Clustering Algorithm in MANET System
    CHINACOM
    IEEE
    DOI: 10.1109/ChinaCom.2011.6158230
Na Zhang1,*, Ningqing Liu1, Meng Wu1, Weixiao Meng
  • 1: Department of Communication Engineering, Harbin Institute of Technology
*Contact email: pingpongq@163.com

Abstract

A mobile ad hoc network (MANET) is very attractive for next wireless communications, and clustering is one of the most important issues for MANET. Many researchers have done a lot of work on clustering algorithm, i.e., weighted clustering algorithm (WCA) is one of the most popular one. All of these clustering algorithms are based on the assumption that the information of each member node is known to every cluster-head. However, if a mobile station enters a collision free zone and it will become a kind of interference to the MANET system, the cluster-head could not notice this interference. This paper analyses the mobile hidden station problem for WCA in MANET. Computer simulates the network average throughput, load balance factor (LBF) and fairness between traditional WCA with or without mobile hidden station. Simulation results show that the throughput and fairness degrade a lot when mobile hidden station has been considered.