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Wireless and Satellite Systems. 11th EAI International Conference, WiSATS 2020, Nanjing, China, September 17-18, 2020, Proceedings, Part II

Research Article

A Method for Performance Evaluation of the Low Earth Orbit Satellite Networks

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  • @INPROCEEDINGS{10.1007/978-3-030-69072-4_23,
        author={Xuan Li and Quan Chen and Lei Yang and Xianfeng Liu and Lihu Chen},
        title={A Method for Performance Evaluation of the Low Earth Orbit Satellite Networks},
        proceedings={Wireless and Satellite Systems. 11th EAI International Conference, WiSATS 2020, Nanjing, China, September 17-18, 2020, Proceedings, Part II},
        proceedings_a={WISATS PART 2},
        year={2021},
        month={2},
        keywords={Low earth orbit satellite network Delay and capacity Minimum delay maximum capacity},
        doi={10.1007/978-3-030-69072-4_23}
    }
    
  • Xuan Li
    Quan Chen
    Lei Yang
    Xianfeng Liu
    Lihu Chen
    Year: 2021
    A Method for Performance Evaluation of the Low Earth Orbit Satellite Networks
    WISATS PART 2
    Springer
    DOI: 10.1007/978-3-030-69072-4_23
Xuan Li1,*, Quan Chen1, Lei Yang1, Xianfeng Liu1, Lihu Chen1
  • 1: College of Aerospace Science and Engineering, National University of Defense Technology
*Contact email: lixuan366@163.com

Abstract

Low Earth Orbit satellite communication system has the characteristics of low latency and wide coverage, and is widely used in the non-terrestrial communication systems. But at the same time, the characteristic of its fast-changing topology also brings the complex problem of network performance evaluation. In this paper, we propose a Minimum Delay Maximum Capacity algorithm based on Minimum Cost Maximum Flow algorithm to evaluate the performance of the LEO satellite networks. We analyze the performance of several different constellation configurations based on the proposed algorithm.

Keywords
Low earth orbit satellite network Delay and capacity Minimum delay maximum capacity
Published
2021-02-28
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-69072-4_23
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