小倾角LEO网络对地静止卫星定轨

Q4 Physics and Astronomy
Shao Rui , Song Ye-zhi , Ye Zhao , Zeng Chun-ping , Hu Xiao-gong
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引用次数: 0

摘要

针对地面跟踪遥测与指挥(TT&C)系统在空间和时间上覆盖对地静止卫星的局限性,提出了利用轨道倾角小的近地轨道多星网络确定对地静止卫星轨道的方法。根据空间环境和光学观测条件,对仿真数据进行筛选,模拟真实观测场景。利用光学角度测量数据和数值方法计算了地球静止卫星的精确定轨(POD)。与参考轨道相比,在平台轨道精度为5 m、测量精度为5角秒、观测时间为12小时的条件下,2颗LEO卫星对地静止卫星的POD精度可达公里数量级,4颗LEO卫星对地静止卫星的POD精度可达100米数量级。因此,随着近地轨道卫星数量的增加,POD精度得到了很大的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geostationary Satellite Orbit Determination by LEO Networks with Small Inclination

In view of the limitation of ground-based Tracking Telemetry and Command (TT&C) system in covering the geostationary satellite in space and time, the method of determining the orbit of the geostationary satellite by the LEO (Low Earth Orbit) multi-satellites network with small orbit inclination was proposed. According to the space environment and optical viewing conditions, the simulation data were screened to simulate the real observation scene. The precise orbit determination (POD) of geostationary satellite was calculated by using the optical angle measurement data and the numerical method. By comparing with the reference orbit, under the condition of platform’s orbit accuracy of 5 m, measurement accuracy of 5-arcsecond, and 12 hours of observation, the POD accuracy of geostationary satellite by two LEO satellites can reach the order of kilometers, while the POD accuracy by four LEO satellites can reach the order of 100 meters. Therefore, the POD accuracy has been greatly improved with the increase of the number of LEO satellites.

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来源期刊
Chinese Astronomy and Astrophysics
Chinese Astronomy and Astrophysics Physics and Astronomy-Astronomy and Astrophysics
CiteScore
0.70
自引率
0.00%
发文量
20
期刊介绍: The vigorous growth of astronomical and astrophysical science in China led to an increase in papers on astrophysics which Acta Astronomica Sinica could no longer absorb. Translations of papers from two new journals the Chinese Journal of Space Science and Acta Astrophysica Sinica are added to the translation of Acta Astronomica Sinica to form the new journal Chinese Astronomy and Astrophysics. Chinese Astronomy and Astrophysics brings English translations of notable articles to astronomers and astrophysicists outside China.
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