Mapping spatial distribution of comm‐satellite's beam based on ground omni‐antennas

Author:

Ren Zixuan12ORCID,Jin Jin1,Li Wei3,Zhan Yafeng1

Affiliation:

1. Beijing National Research Center for Information Science and Technology Tsinghua University Beijing China

2. School of Aerospace Engineering Tsinghua University Beijing China

3. Satellite Frequency & Orbit Resource Research Center the State Radio Monitoring Center Beijing China

Abstract

SummaryThe current satellite communications (SatComs) systems are composed of a large number of satellites, beams and terrestrial devices. Due to their multinode dynamic nature, the usage of frequency resources is variable, complex and difficult to characterize. In particular, with the development of satellite‐borne phased array antenna technology, SatCom beams carrying different frequencies are directionally and dynamically distributed in global scale. Mapping and locating the spatial beam distributions of communication satellite (comm‐satellite) are the bases of intersystem cofrequency interference mitigation and spatial frequency reuse. In this paper, we design a data selection–multiparameter fitting iteration (DS‐MFI) algorithm on the basis of ground‐based omnidirectional antennas. The proposed approach can effectively map the spatial distribution of comm‐satellite's beam, including satellite transmitter position, equal‐gain off‐axis angle, and beam pointing in azimuth and elevation. Simulation results verify the effectiveness of the proposed approach for satellites with fixed or steerable beams at different altitudes. Furthermore, the results become increasingly accurate as the dense of ground omni‐antenna increases.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Media Technology

Reference34 articles.

1. BarnettR.OneWeb non‐geostationary satellite system: Attachment A—technical information to supplement Schedule S FCC;2014.https://licensing.fcc.gov/myibfs/download.do?attachment_key=1134939

2. DortchM.FCC authorizes SpaceX to provide broadband satellite services FCC;2018.https://www.fcc.gov/document/fcc-authorizes-spacex-provide-broadband-satellite-services

3. Occurrence probability of co‐frequency interference and system availability of non‐geostationary satellite system in global dynamic scene;Jin J;J Tsinghua Univ (Sci Technol),2018

4. Spectral coexistence between LEO and GEO satellites by optimizing direction normal of phased array antennas

5. Joint Beamforming and Power Allocation for Satellite-Terrestrial Integrated Networks With Non-Orthogonal Multiple Access

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