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Machine Learning and Intelligent Communications. Second International Conference, MLICOM 2017, Weihai, China, August 5-6, 2017, Proceedings, Part I

Research Article

A Modified AODV Protocol Based on Nodes Velocity

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  • @INPROCEEDINGS{10.1007/978-3-319-73564-1_54,
        author={Tong Liu and Zhimou Xia and Shuo Shi and Xuemai Gu},
        title={A Modified AODV Protocol Based on Nodes Velocity},
        proceedings={Machine Learning and Intelligent Communications. Second International Conference, MLICOM 2017, Weihai, China, August 5-6, 2017, Proceedings, Part I},
        proceedings_a={MLICOM},
        year={2018},
        month={2},
        keywords={Ad hoc network High dynamic network topology Node velocity AODV NS2},
        doi={10.1007/978-3-319-73564-1_54}
    }
    
  • Tong Liu
    Zhimou Xia
    Shuo Shi
    Xuemai Gu
    Year: 2018
    A Modified AODV Protocol Based on Nodes Velocity
    MLICOM
    Springer
    DOI: 10.1007/978-3-319-73564-1_54
Tong Liu1,*, Zhimou Xia1,*, Shuo Shi1,*, Xuemai Gu1,*
  • 1: Harbin Institute of Technology
*Contact email: 89376016@qq.com, 826744903@qq.com, crcss@hit.edu.cn, guxuemai@hit.edu.cn

Abstract

MANET has been widely used in many fields with the development of wireless communication technology. The AODV routing protocol which is known as a well-designed protocol of MANET has received widespread attention. However, high node velocity and frequent changes of network topology pose a challenge to the classic AODV protocol. Considering the stability of link, this paper proposes an algorithm to quantify the change frequency of network topology at first. Then a modified AODV protocol based on node velocity which is named RAODV is introduced in detail for high dynamic network topology. RAODV can build a more stable link according to the node velocity and reduce the normalized overhead of routing and average end-to-end delay by prolonging routing’s survival time.

Keywords
Ad hoc network High dynamic network topology Node velocity AODV NS2
Published
2018-02-09
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-319-73564-1_54
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