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6GN for Future Wireless Networks. 5th EAI International Conference, 6GN 2022, Harbin, China, December 17-18, 2022, Proceedings, Part I

Research Article

OLSR Protocol Optimization Based on Node and Link Stability

Cite
BibTeX Plain Text
  • @INPROCEEDINGS{10.1007/978-3-031-36011-4_1,
        author={Xi Wang and Shuo Shi and Meng Wang},
        title={OLSR Protocol Optimization Based on Node and Link Stability},
        proceedings={6GN for Future Wireless Networks. 5th EAI International Conference, 6GN 2022, Harbin, China, December 17-18, 2022, Proceedings, Part I},
        proceedings_a={6GN},
        year={2023},
        month={7},
        keywords={UAV FANETs OLSR MPR},
        doi={10.1007/978-3-031-36011-4_1}
    }
    
  • Xi Wang
    Shuo Shi
    Meng Wang
    Year: 2023
    OLSR Protocol Optimization Based on Node and Link Stability
    6GN
    Springer
    DOI: 10.1007/978-3-031-36011-4_1
Xi Wang1,*, Shuo Shi1, Meng Wang1
  • 1: Harbin Institute of Technology, Harbin
*Contact email: wangxi_chn@foxmail.com

Abstract

As UAV (unmanned aerial vehicle) formation is more and more widely applied in the real environment, how to effectively organize a communication network between UAVs is the main research hotspot and difficulty at present. The characteristics of UAVs, such as flexible movement, limited load and limited communication distance, pose great challenges to the design of communication protocols. After years of development, unmanned aerial vehicle Ad hoc network has gradually become the key technology in this field. This paper focuses on the classical routing protocol in the UAV Ad hoc network, optimizes the Link State routing protocol (OLSR), and further optimizes and tests the advantages and disadvantages of it. The optimized routing protocol is more suitable for the complex environment of UAV, and further improves the network transmission performance.

Keywords
UAV FANETs OLSR MPR
Published
2023-07-08
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-031-36011-4_1
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