Journal of Terahertz Science and Electronic Information Technology , Volume. 20, Issue 5, 414(2022)

Research on angular separation of geostationary and low earth orbit satellites based on EPFD analysis

FU Chunxin1、*, JIANG Yingfu2, and GE Junxiang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    References(12)

    [2] [2] ITU Radiocommunication(ITU-R). Radio regulations articles edition of 2012[S]. Geneva:ITU, 2012:271-289.

    [3] [3] ITU Radiocommunication(ITU-R). Analytical method for estimating interference between non-geostationary mobile-satellite

    [4] [4] XU Pin,WANG C,YUAN Jun,et al. Uplink interference analysis between LEO and GEO systems in Ka band[C]/// 2018 IEEE 4th International Conference on Computer and Communications. Chengdu,China:IEEE, 2018.

    [5] [5] WANG H,WANG C,YUAN J,et al. Coexistence downlink interference analysis between LEO system and GEO system in Ka band[C]//2018 IEEE/CIC International Conference on Communications in China. Beijing,China:IEEE, 2018:465-469.

    [6] [6] LI R,GU P,HUA C. Optimal beam power control for co-existing multibeam GEO and LEO satellite system[C]// 2019 11th International Conference on Wireless Communications and Signal Processing. Xi'an,China:[s.n.], 2019:1-6.

    [7] [7] SHARMA S K, CHATZINOTAS S, OTTERSTEN B. International interference mitigation techniques for spectral coexistence of GEO and NGEO satellites[J]. 34th AIAA International Communications Satellite Systems Conference. Cleveland, OH: AIAA,2016:1-12.

    [8] [8] ITU-R S. 1431. Method to enhance sharing between non-GEO FSS systems(except MSS feeder links)in the frequency bands between 10~30 GHz[S]. Geneva:ITU, 2000.

    [9] [9] ITU-R S. 1325. Simulation methodologies for determining statistics of short-term interference between co-frequency, codirectional non-geostationary-satellite orbit fixed-satellite service systems in circular orbits or geostationary-satellite orbit fixed-satellite service networks[S]. Geneva:ITU, 2003.

    [10] [10] ITU-R S. 1503. Functional description to be used in developing software tools for determining conformity of non-geostationarysatellite orbit fixed-satellite system networks with limits contained in Article 22 of the radio regulation[S]. Geneva:ITU, 2013.

    [12] [12] ITU Radiocommunication(ITR-R). Reference FSS earth-station radiation patterns for use in interference assessment involving non-GSO satellites in frequency bands between 10.7 GHz and 30 GHz[S]. Geneva:ITU, 2001:2-3.

    [13] [13] ITU Radiocommunication(ITR-R). Satellite antenna radiation patterns for non-geostationary orbit satellite antennas operating in the fixed-satellite service below 30 GHz[S]. Geneva:ITU, 2001:2-4.

    [14] [14] ITU Radicommunication(ITR-R). Satellite antenna radiation pattern for use as a design objective in the fixed-satellite service employing geostationary satellites[S]. Geneva:ITU, 1997:2-5.

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    FU Chunxin, JIANG Yingfu, GE Junxiang. Research on angular separation of geostationary and low earth orbit satellites based on EPFD analysis[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(5): 414

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    Paper Information

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    Received: Apr. 1, 2021

    Accepted: --

    Published Online: Aug. 14, 2022

    The Author Email: Chunxin FU (2319539436@qq.com)

    DOI:10.11805/tkyda2021133

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