基于单站伪距的非合作LEO卫星定轨

Ruofan Deng, H. Qin, Guangting Shi
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引用次数: 0

摘要

非合作低地球轨道卫星具有广阔的应用前景,这是获得精确轨道的前提。本文提出了一种单站伪距非合作LEO卫星定轨方法,该方法受干扰、遮挡和天气变化的影响较小,硬件成本低,不受时空参考统一和接收机间信息传输的影响。单站从机会信号(SOPs)中提取伪距观测值,然后对观测值进行批量最小二乘(LS)滤波估计轨道。最后,以铱为例,通过实际实验验证了该方法的可行性。结果表明,确定的轨道精度可与双线元(Two-Line Elements, TLE)相比较,3 d后的俯仰角和多普勒频率偏差预测误差分别在0.15°、2.5°和120 Hz以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-Cooperative LEO Satellite Orbit Determination Using Pseudorange Based on Single Station
Non-cooperative low-Earth-orbit (LEO) satellites have promising applications, the prerequisite of obtaining accurate orbits. In this paper, we propose a non-cooperative LEO satellite orbit determination method using pseudorange with only a single station, which is less affected by interference, occlusion, and weather changes, has low hardware cost, and is free from space-time reference unification and information transmission between receivers. The single station extracts pseudorange observations from signals of opportunity (SOPs), and then the observations are processed by a batch least squares (LS) filter to estimate orbit. Finally, the feasibility of the proposed method is verified by the real experiment, taking Iridium as an example. According to the result, the determined orbit has accuracy comparable to Two-Line Elements (TLE), and the predicted errors of elevation azimuth and Doppler frequency deviation after 3 days are within 0.15°, 2.5°, and 120 Hz, respectively.
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